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SUSITNA HYDROELECTRIC PROJECT ENERGY SIMULATION STUDIES TO SELECT PROJECT DRAWDOWN AND # II 1 GAIT I ON FLOWS Acres American Incorporated 1577 C Street Suite 305 AnChorage, Alaska 99501 Telephone (907) 279-9631 b� 5USITNA HYDROELECTRIC PROJECT �, { OFFICE MEMORANDUM ro' John Hayden Oafe: 0etober 4, 1982 FROV, pave Crawford File: P5700.14.53 5U8uECr' HEP - Project Drawdown and Mitigation Plow Case We have conducted studies to re -assess. project drawdown and mitigation flow cases. These have led to the selection of 120 foot maximum drawdown at Watana and 50 foot drawdown at Devil Canyon. Case C (12,000 cfs. in August) has �2en selected as a practical compromise flow scenario for inclusion into license application. A summary paper is attached which details the studies conducted to arrive at the above selections. !I Encl: as 1 DC/kt cc: w/enclosure C. Debelius W. Dyok G. Krishnan I David Crawford I SUSITNA HYDROELECTRIC PROJECT ENERGY SIMULATION STUDIES CONDUCTED TO SELECT PROJECT DRAwUo ANAND MITIGATION FLOW CASE. I. Introduction The objective of this paper is to provide the details behind the recommended project operation, drawdown and downstream mitigation flow. [t is assumed that the reader is familiar with the intention of providing minimum downstream flows, basic project operation procedures and system cost determination. It is also assumed that the reader is familiar with results to date with respect to drawdown and downstream flows. The incentive to redefine the costs associated with providing downstream minimum flows and greater drawdowns is a result of discussions stemming from review of the Feasibility Report and internal critiques of analyses conducted to date. These discussions have resulted in several developments and modifications in the energy simulation procedures which alter the conclusions on the preferred or recommended project drawdown, system costs, and costs associated with environmental mitigation flows. Basically these changes were made `o attempt to relate the ■ historical streamflow record, which had an extreme dry year, with ! more normal design criteria. En addition, further refinements of project drawdowns and operation scenarios were required to assess the latest developments in thost areas. The procedural changes entailed modifying inflow hydrology by introducing a synthetic dry event to the record and in determining a regression relationship between system cost and project energy production. ~� Section 2 of this paper gives the change to inflow hydrology to reflect a more reasonable approach in determining firm energy. This section also contains the redefinitions of the downstream flow cases. Section 3 provides details of the derivation of ' system costs using a regression equation between present worth cost and project energies and includes the results of energy simulations to determine Watana drawdown using both historical and modified inflow hydrology plus simulations used in arriving at the recommended downstream flow case. Section 4 contains miscellaneous simulations to assess the impact on drawdown and flow case selection of lower demand forecasts due to low load growth or the inclusion of small hydroelectric project production. 1 1 1 1 I r, L L I ,1 1 2. Study Input Changes Modifications to basic input data have been made to attain project objectives and reflect the redefinition of inflow hydrology and quantity and timing of mitigation flows downstream. These changes are discussed below. 2.1 Modified Hydrology A frequency plot (Figure 1) of annual average discharge at Gold Creek indicates that the driest year (1969) with an average annual discharge of 5600 cfs has approximately a 1:500 year recurrence interval. This extreme event (which is also followed by another dry year), has an abnormally large influence an project energy production and in particular firm energy production for a given project scenario. This large bias towards lower energy yields results in an annual firm energy production with about a 1:500 year return period. This is accepted as outside the normal limit used in generation and economic planning. It has been proposed [by .1WH and TO that a more reasonable return period for firm energy used in system reliability tests would be 1.30 years. To achieve this goal too approaches can be followed. The first entails acceptance of the energy production with present restraints and submit the 1:30 year energy as the firm energy. The second (adopted here) is to modify the hydro'ogy to reflect a less extreme event by insertion, in place of the extreme event, a 1:30 year event derived from flow statistics. Figure 1 shows the plat of annual average flow at Gold Creek against probability of exceedance. This plot gives the 1:30 year event at about a flow of 7300 cfs. This translates to about 6100 cfs at watana as indicated by Figure 2. ' The monthly distribution of flows is assumed to be the same as that of the average monthly flows for the period of record. Table 1 gives the resultant 1:30 year monthly flows based on the ratio of the annual 1:30 year and average flows times the average monthly flow. This synthetic hydrologic year is assumed to replace 1969 ' (year 20) in the inflow record used for energy simulation. This modified record is only used in assessing the economy of project operation and environmental mitigation. It will not be used in project flood frequency analysis or other analyses requiring inflow records. 2,2 Downstream Flows A further change to project operation constraints is the i 1 I 1 re -definition of summer downstream flow requirements in July and September. This change provides Tess water in July and more in September than has previously been supplied. The downstream flow requirements are given in Table 2 for Case A through Case D. 3. Enerq.y Simulations With the change in inflow hydrology it is required to determine the best Watana and Devil Canyon project operations particularly with respect to drawdowns, and to redefine the relative net benefit between the downstream flow scenarios under consideration. The determination of best economic drawdown and the relative cost between flow cases are based on OGP runs. As time constrain'S prohibit the running of the number of cases required it was necessary to determine a relationship between system present i worth cost and the two key cost parameters of project average annual energy production and annual firm energy. Based on 14 OGP runs made since April, 1982, the following relationship has been determined using a standard multi -linear regression technique: PWC = 0,8154 FA - 0.126OEF + 13275 where: PWC = Present worth cost 082 x 106) EA= Average annual energy (GWH) EF= Annual firm energy (GWH) The standard error of estimate is + $23x106 i 3.1 Drawdown ' In the Feasibility Report the drawdown selected for Watana was 140 feet. This was based on an evaluation of the relative merit between production: of additional firm energy at the expense of losing average energy. It was therefore necessary to further assess reservoir drawdown in terms nF system costs to ensure proper accounting of energy values. The drawdown for Devil Canyon was not re-evaluated due to the nature of Devil Canyon operation and the level of regulation provided at Watana. To reduce the number of simulations it was assumed that Case C flows would, i►s terms of drawdown selection, be representative of all flow cases. However, some deviation is I L to be expected From the "best" Case C drawdown with downstream f lows. Case A would prof ab ly have a lower drawdown and Case 0 ' a higher drawdown. Two drawdown studies were carried out; one with historical inflow record and the other with the modified record described ' in Section 1. The first study consisted of five drawdowns ranging from 140 feet to 220 feet in 20 foot increments. The second study ranged drawdown from 80 to 180 feet in 20 foot increments. 3.I.a Drawdown with Historical Inflow The energies produced for Case C with the historical inflow record are given in Table 3. The intention of using three rule curves for the 140 foot drawdown case ' was to determine the relative merit of producing more or less firm energy at the expense of average energy and vice versa. ' In all drawdowns. except as noted above, are attempt was made to adjust the rule curve until the average annual energy was about 6710 GWH. This requirement provides the value of producing more firm energy as a result of additional drawdown. The variation in firm energy with drawdown is given in Figure 3. 1 OGP analyses. details of which are contained in Attachment A, were made with the above energ simulations. The system costs range from E7225x10 for 140 foot drawdown to 57088x106 for 220 foot drawdown. The net benefit over the base case thermal scenario (assumed $8238x106) is plotted in figure 4. This shows a clear break in net benefits around 180 foot drawdown. In the OGP analyses it has been assumed that construction costs are those giver, in +he Feasibility Report for the WatanalDevil Canyon development with 140 foot drawdown at Watana. Therefore, all benefits for drawdowns greater than 140 feet shouTd be reduced by an amount commensurate with the additional cost for intake construction. Geotechnical considerations have also been reviewed (Attachment B) with a conclusion that rock stability would be questionable and support costs would be excessive for drawdowns greater than 220 feet. This provides an upper limit drawdown. The results of OGP analyses and the above considerations indicates that 180 foot drawdown has the best engineering and economic justification with historical inflow records as input to the energy simulations. LJ 1 3.1.b 0rawdown with Modified Inflow The inclusion of a less extreine event into the hydrology will have the effect of increasing the firm energy obtainable from the project for a given drawdown and operation. As in Section 3.1.a, Case C has been assumed to determine any increase in benefit as a result of increased drawdown. As time has not allowed the running of the OGP model, the regression relationship determined above has been applied to the energy simulations. However, OGP analyses should be performed to verify these results. The range of present worth costs is from $7351 million $7010 million for 80 and 180 foot drawdowns respectively. This translates to a net benefit range of $887 million to $1228 million for these two drawdowns. Energies, costs and benefits for the drawdowns considered are given in Table 4. This table also shows ' the impact on costs of variations in average and firm energy due t❑ modifications to the rule curve. Net benefits for the "best" case rule curve are plotted against drawdown in Figure 5. The benefits from increasing drawdown shows a marked change at approximately 100 foot drawdown, followed by a more gradual rise. The gain assessed to drawdowns above 120 feet are believed to be over -estimated due to an aver -compensation for the value of firm energy. This has been adjusted as shown on Figure 5. To the curve there must also be applied a cost penalty for drawdowns above 140 foot and a cost benefit for drawdowns below 140 foot. These adjustments are to reflect the change in intake costs. I with the above adjustments considered, it appears that the "best" drawdown is between 100 and 140 feet, therefore, with the current level of information it iti recommended that 120 feet be selected as the drawdown at 1 watana. !t is, however, necessary to determine intake construction costs and to perform OGP analyses to verify this drawdown selection. a 3.2 Enerq+ Simulation with Miti ation Flow scenarios The objective of this part of the study is to quantify in dollar terms the impact of the seven downstream flow cases. Generally the higher the requirement for minimum flow quantities downstream of the project the greater the present worth cost. This is simply due to the release of water during the low energy demand summer months instead of storing and releasing during the higher demand winter months. I An analysis of this type was conducted in the Spring of 1982 and concluded that in all cases the project has a net benefit over the thermal alternative. The conclusion then was to select the best power operation case (Case A). The analysis is repeated here to reflect the Change in Watana drawdown and inflow hydrology. Due to time constraints no OGP analysis has been conducted and the present worth co_[ for each flow case is estimated using the regression equation given above. The seven flow Cases are defined by the minimum required ' monthly flow at Gold Creek given in Table 2. Energy simulations have been made with these requirements and sy5tM present worth costs determined. Due to the flexibility built into the simulation program, it is possible to produce a wide range of monthly energy distributions and to give additional or less firm or average energy. The importance of this variation in energies is negligible with respect to present worth cost determined by the regression equation. A subjective selection of the best combination of firm and average annual energy is required. The energies produced for the simualtions undertaken are given in Table 5. The first simulation in each of the flow ' sets is recommended for use in any further OGP runs. The variation in system present worth cost with the required minimum flow in August is given in Figure 6. Also shown in ' Figure 6 is a similar variation assuming 180 foot drawdown at Watana. The impact of adopting Case D flows over Case A flows ►s a loss in net benefit of approximately $535 million. For Case A to Case C the loss in benefit is about $58 million, T.i+� loss in benefit from Case A for all flow cases is given in Table 6. Given the accuracy associated with estimating the system ' present worth cost by a regression equation and the results presented above it is recommended that Case C mitigation flows be selected for inclusion into the license ' application. Detailed energy simulation cutput for Watana more and Watana/Devil Canyon for the selected drawdown and Case C tflows is given in Attachment C. 4. miscellaneous Studies ' 4.1 Firm Energy Return Period The modification made to inflow hydrology will significantly effect the return periods associated with annual energy production. With historical inflow the return period of the 1 i 1.500 This is firm annual energy is of the order of years. generally well outside. the normal return period used in hydroelectric studies. Figure 9 shown as plot of frequency with annual energy production for Case C and 120 foot drawdown at Watana assuming the modified hydrology. The firm annual energy with these conditions has a return period of 1:30 years. 4.2 Low Demand Forecast The energy simulations made above have assummed that the i medium load forecast is applicable as an upper limit to energy production from the project. In all runs the forecast for year 2010 of 7791 GWH has been assurnned. This annual energy has been further broken down to a monthly value which ' is a -_onstraint to energy production. For Case C and the rule curve determined the load forecast of F70 GWH for December is met 20 of the 32 years simulated. Similar results are obtained for other months of the year. Because the project can meet projected demands on a more than ' regular basis the impact of a significant reduction in the forecasted energy demand is substantial. The reduction of forecasted demand would cause less energy production and a subsequent increase in the present worth cost. iTo assess this impact simulation runs were made assuming the low load forecast of 6303 GWH. Case A, Case C and Case 0 flow scenarios were assumed with 120 foot drawdown at Watana and with modified inflow hydrology. The energies prpduc}u for the three flow cases are given in Table 9. The change in annual average energy for Case A under the two load forecasts is 588 GWH. For Case C the change in average annual energy is 582 GWH. The cast impact of this lower forecast can only be accurately assessed by using the 0GP model. ' 4.3 Medium Forecast Reduced by Small Hydroelectric Production The inclusion of small hydroelectric production into the system results in the reduction in energy production from Susitna during those periods when Susitna is able to meet system demands. This has the result of reducing firm and ' average annual yields and wi i 1 reduce the net benefit over the thermal alternative for a given flow case. i 1 1 Annual energy production under Case C and 120 foot drawdown at Watana is reduced from an average of 6773 GWH to 6631 GWH. ' r"ir•m energy is reduced by 98 GWH. The impact on system present worth costs is an increase of $84 million. Details of this simulation are given in Attachment C. ' 4.4 Energy Simulation with Failures An energy simulation assuming the acceptance of both energy demand and mitigation flow failures has been made with the historical inflow record, and with the rule curves, demand failure and operation scenario selected above. This simulation results in four months with energy production below minimum demand energy and two months with flows below target flows. The flow failure months are March and May; hence are not critical. Energy failures, however, are in February, March and April for one year and May of the following year. For this simulation the average annual energy is 6737 GWH, a reduction of 36 GWH, and a firm energy of 5354 GWH, a reduction of 174 GWH. Details of this run are included in Attachment C. I I la II I I II Table 1. Watana Monthly Flaw (average and 1.30 year) Month Flow W S) Average Oct 4510 3450 NOV 2050 1570 Dec 1410 1070 Jan 1160 880 Feb 980 750 Mar 90L 690 Apr 1110 850 May 10400 7940 Jun 22900 17500 Jul 20800 15900 Aug 1$400 14100 Sept 10700 8150 Annual 7990 5100 Monk- 11 ' Table 2. Downstream Flow Requirements at Gold Creek 1 MTH FLOW (cf s ) A Al A2 C C1 C2 0 0 2000 2000 2000 2000 2000 2000 2000 N 1000 1000 1000 1000 1000 1000 WOO 0 1000 1000 1000 1000 1000 1000 1000 1 1000 1000 1000 100+J 1000 1000 1000 F 1000 1000 1000 1000 1000 1000 1000 M 1000 1000 1000 1000 1000 1000 1000 A 1000 1000 1000 1000 1000 1000 1000 ' M 2000 4000 5000 6000 6000 6000 6000 J 2000 4000 5000 6000 6000 6000 6000 J1 2000 4320 5400 6480 6650 6810 7050 A 2000 8000 10000 12000 14000 16000 19000 52 2000 6200 7750 9300 10400 11500 13150 Notes: Derivation of transitional flows. (July = July flow, June = June flow, etc.) 1. July ={ June x 2 6+ 5[ June + August ]) 1 f ' 2. Sept = (August x 14 + 5 [ .Tune + August] + June x 11) 1 2 30 1 1 1 7 Table 3. Energy Production and System Cast - Case C (with historical record) DRAWDOWN ENERGY (GWH) PWC1 BEHEFiT2 (ft) Average Farm ($ x 106) (Ex106) 140 .13 6563 5327 7225 1013 .2 6710 4922 7197 1041 .3 6714 4920 7208 1030 160 6711 5369 7145 1093 180 6710 5654 7094 1144 200 6704 5778 7096 1142 220 6705 5884 7088 1150 Notes: 1. Presert worth cost (PWC) obtained from 0GP analysis 2. Based an thermal alternative with PWC of $8238 x 106 3. Refers to rule curve Tah'.e 4. Energy Productior with drawdown - Case C (with modified record) i DRAWDOWN ENERGY (GWN) PWCI BENEF IT2 (ft) verage Firm (Sx106) (Sx106) 5399 5609 7351 887 .13 .2 6419 5606 7335 903 90 6527 5525 7257 981 1 10D 6748 5664 7059 1179 ' 120 .2 6771 5461 7066 1172 .3 6757 5566 7064 1174 ' 140 .1 6783 5553 7044 1194 .2 6751 5789 7041 1197 1 160. 6773 5776 7025 1213 ' .2 6746 5946 7025 1213 180 .1 6764 5938 7011 1227 ' .2 6738 6121 7010 1228 1 INotes, 1. Present worth Cost (PWC) determined from regression relationship. ' 2. Based an thermal alternative with PWC of SB238 x 106 3. Refers to rule curve. I Table 5. Energy Productionl with Downstream Flow Requirements. 1 ' ENERGY (GWH) pWC2 Case Rule Average Firm (3x146) Curve 0- A M- 5 Annul 0- A M- S Annual I A 1 4548 2263 6811 3622 2043 5665 7007 ■ 2 4422 2377 6799 3682 2101 5783 7003 ■ 3 4514 2292 6806 3582 2113 5695 7007 4 4479 2310 6788 3600 2152 5752 7015 Al 1 4417 2380 6798 3631 2128 5759 7007 A2 1 4459 2340 6799 3455 2119 5574 7029 2 4374 2418 6793 3512 2177 5689 7019 C 1 4466 2307 6773 3375 2153 5528 7056 2 4448 2318 6765 3382 2121 5502 7065 ' 3 4291 2466 6758 3376 2189 5565 7064 4 4402 2361 6763 3435 2128 5563 7060 C1 1 4302 2383 6685 3150 2141 5291 7157 2 4185 2486 6672 3249 2182 5431 7150 C2 1 4169 2369 6538 3022 2099 5121 7298 7293 2 4057 2477 6534 3088 2106 5194 0 1 3874 2378 6252 2966 2074 5041 7542 2 3800 2462 6262 2818 2105 4923 7549 3 3912 2348 6260 2747 2063 4810 7565 1 Notes: ' 1. Assu ming 120' drawdown at Watana and mad ified hydrology. 2. Present worth cost (PWC) determined from regression relationship. 1 1 1 1 i 1 Table 6. Lass Benefit between Case Al and Other Flow Cases. CASE AUGUST FLOW PWC2 NET BENEFIT3 6) LOST BENEFIT4 (efsl {S x 106) ($ x 10 (y x 106) A 6400 7007 1231 0 ' Al 8000 7007 1231 0 A2 10000 7029 1209 22 C 12000 7056 1182 49 C1 14000 7157 1081 150 C2 16000 7298 940 291 0 19000 7542 696 535 Notes- 1. eased on modified hydrology record and 120' drawdown at watana 2. Estimated by regression relationship. 3. Based on thermal alternative Cost of S8238 million. 4. From Case A. .1 i 11 1 ■ ■ Table 7. Energy Production with Drawdown - Case C (with modified hydrology and small hydro production) ■ ■ ENERGY (GWH) PWC1 ■ D/DOWN 0- A Avera a Anraua Firm f Sx1O6) - A M- S Annua M- 5 ■ g0 4005 2257 6262 3328 2225 5553 7469 90 4206 2185 6391 3220 2180 5400 7383 ■ 100 4276 2328 5604 3255 2272 5527 7194 120 4336 2295 6631 3311 2119 5430 7184 ■ 140 4349 2317 6666 3404 2130 5534 7142 ■ 160 4344 2315 6658 3600 2125 5725 7124 180 4327 2320 6646 3715 2171 5886 7114 ■ ■ Notes: ■ 1. Present forth Cast QWC) determined from regression relationship. I ■ I ■ I ■ 1 ■ ■ I ■ I 1 Table A. Energy Production} with Demand Reduced by Small Hydro tProduction. 1 ENERGY (GWH) CASE Average _ arm PWC2 ($x106) A M- S Annual 0- A M- S Annual 0_ ' A 4434 2245 6679 3632 2038 5670 7115 Al 4380 2295 6674 3600 2172 5772 7106 ' A2 4381 2295 6676 3455 2116 5571 7129 C 4336 2295 6631 3311 2119 5430 7184 C1 4258 2282 6540 3153 2037 5190 7289 ' C2 4152 2261 6412 3022 1956 5018 7414 0 3906 2230 6136 2966 1972 4938 7649 Motes: 1. Assuming 120' drawdown at watana and modified hydrology record. 2. Present worth cast (PWC) determined from regression relationship, I Table 9. Energy Production with Low Load Forecast. 1 1 ENERGY (GwH) CASE Average Firm 0_ A M- Annual 0- A M- S Annual A 4058 2165 6223 3736 2106 5843 ' C 4019 2164 6183 3543 2032 5575 D 3792 2115 5907 3002 1952 4954 fl I I 1 1 1 1 1 1 1 1 1 RONNIE 111111 112#11 =zi »ttaes�-rr T 0 �3E=�buG- � '°a i iii iw��i# Krsii r r*■� �r rwr ■■■■�■rrwr■emu■■rr_ rrr� CalCU101ion tiUfiJt;(:i W A,YA ar A i:frFK:kr'r� Mk1+! (alculotom Nrr l7liZAA L-MWZ&4 P" OUGTi Isms-C. rw 3rrsIm ow ZZJD to tC►tSV C # %,L -AeOl apt —' is A Q,o%rr fora G►% .60.84.03. Farm 1488 Cif IClalat 101.."i rIV PC ti SEP $7- 11pop,in Nil r ':llii.3t l:l Ch,+i•hr•el l]col,« S;:iic-ol.efI'll I Nis Faye 1 ref # By C13eckad t.rP.°Ta. •i+. C>0-4, o G a P-e-~%Ll L-T s E13E� Y h��E6 C�4 Z?o Q%iLE W wT" j%wuf*T&te%1s �C7ii: Ar�t�1L� G S G S -3 r- L a VF i a r 7 Uj Ir n qn O S 2 i0co Ir O LL Calculations SURACT• }py vUMBER p5 Jp j • S FILE NUMBER SHEET_ OF f BY W, DATE l5ML App DATA W ^Tat N A ❑2 w Dow+.t L wto0jr-ti a '11-- "' 130 jog RUMMER 1 �} rti �• Calculations FILE NumgER SIIEEi_ OF _ SUBJECT: By oArE Z&13Z ppp once i 4 I IZo r � r ■ X '�3vo 44 L i 'lZoo r ■ O pwc} Fvc Fiovi CASES -1xo0--- ■ C. csTs ao •+arr +LLcLLAvt ItkOo�T+op1A4L CGSY F•E3R �"LT►RIL� A / Al -10010 Af-' a tc, t� t.t It3 tiE, gZ . n O O 1!."1 lr.r� { CIOLfS r � z f��e •, o '� �;ee�.l•�rd �rv� �� Calculations all SUBJECT! 1z00 i M !49 NUMOER ?S11 •' FILE MUM M A _ SHEET OF: g y DAT EZ]%M.?- APP DATE wp.-rwF4A LrM4D.C-le'0 !' ic-p Loc.-+] �d�rtT � 004 Q-��Tc�+51 o A AA,%ft-i s kS Qc" "+t RR5CAS SADA 4?9,fk' �f ,rti.ICriT r � F5.44R.0 +�.tvj r SUI,ti�. l r,� J f � 1 f� f f 13 too •7 mo 140 MO i A J09 NUMBER Calculations PILE NUMBER SHEET OF - IF SuBJECT: er DATE all APP DATE_ -- 1 � � r { tZor A 4 Y I f _ 4 Y i 1 + r y,jti�jy gNlsLi kyd� � �13C� Lto+.■ef d+aw� i I I - W O° r S ISATI-AA, HEp„j� t �a Ftova C AS -En i Al r G eta tip, Icy 22 4 � o m a z Nu3e LL i S % K2" �.Y( .Yt� i s r•a.Y � C�oLn CaR-u momflig moll !!t�lYi{�iir ■ i_�YY__� Yi�_ j!i:i ��iYfii!!�� iui rr iwwiimwi:i41 111r8 rrrlr NM1m m Sim 71 ■ r a IMlllom firlamrrlirr�llam" 11111rr Hrr r11>frr11r1 ll M I01118119I EM■l=I1,Y I I I 1 I I 1 I ATTACHMENT A ■ ■ LNWI OFFICE MEMORANDUM * TO: cave Crawford ■ FROM. Phil Hoover SUBJECT: f ■ Da(,,: September 2, 1982 File-, P 5 700. 14.57 cc: G. Krishnan ■ Attached are the results and GGP summaries as related by phone on ■ September 1. C140 and C200 have some slightly unusual results due to our cut-off dates and methodology• ■ Please call if you have any questions. ■ ■ PMH/Pml ■ -, kachments • ■ Wr . Phil Hoover .. „ ,.J11. ■ ■ 1 1 ' jae NUK*sEn P5700.5� 7 �+ Calculations Fi �� h#uFASE R OF_ susjgCT: Generation Planning Study SHEET` BY PM _ DATE_qJ$2_ Alternative arawdowns APP aATE� Summary Table ' � C C CASE C 180 ��� 140 160 Urawdaam August Flaw L5A7 L5A9 L5B1 L583 ' 10 Available ' Energy (Gwh) 6704 Ave 6714 5369 5654 $778 ' Firm 4920 Usable Energy 6640 6619 Ave 6571 4883 6�58 25 5604 5722 ' Firm in $1 .000 *000 ' Costs $3192.5 $318b.8 $3185.0 1993-2010 $32U7.3 382.2 ' 390.9 386.2 381.8 2010 3952.2 3907.2 3911.28 2010-2051 4000.3 $7094 $7096.3 $7209 $7145 LTC 3x70 203 WO CAP 400 $1144 $1142 $1030 $1093 NB ' Based an $8238 Alternative ' 1 4'+ 0 2 r;f FtEfi(+l. ELECIF iC LUMPANY OfaF'-`GENEF:ftIInri P L A N N I N 0 F'IiOGkr+1w-4Ur C'F:Y E1i_i1F'L+T c- ALAS1.4 kAlL.BELT JC)B NUMBER 2ML547 49/c, B'2 C EuF-f:AT If N SYSTEr7 NuKE COAL AGASGT OIL GI DIESEL CGIICYG TYPES TYPE 1 � OF-Th7ING 0 1973 1993 C. C 1993 # # Ic PET TRIM 0a 1992 KU 0 59 452 141 67 317 155 SUIT= 1140 ###4*01 o *1=#*##ir##�##�#*#*�###�F#�F��f*;#•'•*TOTAL CAPAIf. fP Y E A R L. Y K U A 0 C+ I T I 0 N S + IIEE 1653 93 16�-r g4 1774 ' G gs 1704 96 1630 ' 97 1575 ag 1575 99 1531 0 1531 1 600#' 2078 2 2025 � � 1* 201-6 '*448 ' 3K 79 b 1X 70 1* �0-55 ' 7 101 B 1X 70 -1170 9 IX 70 1* 2171 10 / y y t+ 1• ` r y r y y .: J ': 1 7 •i S 9 1 5 �• Q 4- T ii S• •7 4 �{ 1� t#isi�+i###lail#1:.}a}:t#1##'i�9.;`sarlili}.'•..t#!!'*:i=i�i!": i �4 o lZE4 SUIT= 1rCr i1w AitP 0 0 SUM= r� mW RET a ###,3 4;,(I'1ai#i#T 41i4'1W 44*4" t tII#: 41'�F#'t#' #�#��� #'4,44 � #i�#1� ,439 S��i1= *17: 2010 0 1's 3S6 14.6 ;6.3 SUli=10GT=t 0*6 18.3 0. 0.3 ' F'G7 TOT 0• �+ #c41y�.}�'#�#1'#i4}.I.#.+i4+i 1�-;•{##•#*�#'#�T.1:�##:�#'��$#!�'1�#�4+li'�=t•fi##'+� rquT0 0 Q '8a q, a 0.0 0. 0. Suii= 100 F F'CT TOT 0. 0. 100.0 + C tO M M I T T F-1, m t-i 1 0 I(D 11 I c L=Er�CE.�+! i L CIkIC (.GJiF,r4NY ,{ GGP-5 GENEEA11014 �LAIVIING €,ROGRr�t'-1-UHMARY OUTPUl ic Ic 1c c I c ALASKA RAILBELT ZERO% - 3% JOE, rjumEFER 2ML5A7 09/01/02 1:1l*I 1:*#*4:x* 4.*:**1:#**.$:*t*s*t**1 s t.*t*4 4-***4 YEAR **t* 1993 1994 1995 1996 1997 1998 1499 2000 2001 2002 20fr3 2004 2005 "2006 2007 2008 2009 '?010 LOAD *4.)F** 947 965 9833 1003 1023 1044 1064 1094 1121 1158 1156 1233 1270 1323 1377 1430 1464 1537 10TAL CAPABILITY (INCLUDING TIES) YEAR TIME OF END PEAK X*ttt #**** 1853 1853 IG22 i82? 1774 1774 1704 1704 1630 1630 1575 1:75 1575 1575 1531 1531 1531 1531 2078 '2079 2025 2025 20'26 2026 2008 '?00S 2056 2056 2056 '0 ;6 2101 2101 2170 2170 2171 2171 PCT. FEES. **** 95.7 88.8 so S ?: 9 59 4 ;0.8 48.0 41.2 36.6 79,5 69.3 64.3 58.1 55.4 49.3 46,9 46.2 41.2 LOSS OF LOAD FR10 BABILITY U/Y 41/Y 0.000 0. 0.000 0, 0.000 0. 0.000 0. 0.000 0• 0.004 0, 0.007 0• 0.039 0. 0.074 0. 0.000 0• 0.003 0. 0.008 0. 0.0-"5 0, 0.021 0, 0.060 0• 0.066 0. 0.033 0• 0.076 0• COST IN MILLION � YEARLY Cum. PW COST TOTAL 249.7 180.4 253.4 358.= 256.9 533.1 269.4 711.-' '??4.2 8S1.2 2$0.4 1061.9 1235.2 1408, o 304.7 1582.4 352.6 1777.E 33S4.2 196$,0 354.7 2153.2" s59.0 23335.0 364.2 2514.2 370.3 2691.0 370.3 2862.7 385.9 3036.5 1390.9 3207.3 I 1 t;I:';L'F:I,L FLFGTk1C �UHF'fillY OGF -5 GEUERA11014 F-1_141111ING YF:OGRAM-SUMbARY OUIPLIT ALASKA RAILPELT ZEROZ - 37. JOE! NUH1IER 2MLSA7 09/ 1182 1 PaOL TOTAL TOTAL YEARLY SiMWH PEAK EIIERGY LOAD COSTS # �# *#'#.:1:#,#:#;t'*#:�#'# #:�I•# �•�#:#•*�4 # # # #'�i # * # k YFi (MU) IGWH FACTOR IMTL.Sx INV., FUEL O+h N I. TOTAL #* # # # **#: 14 x #'x:** cl # 4 44 x.# #:#,x:I #'X*** **ttv *#•4:*7. #:#:# tt # A #:# r ! 93 1?47 4736 57.09 250 42-0 5.92 4.74 0. 52.7- 94 965 4829 57.13 253 41.24 6.49 4.75 0. 52.E 95 983 4922 57.16 257 40,46 6.96 4.77 0. 52.2. 96 1003 5031 57.10 269 39.55 9.24 4.73 0. 533.;•- 97 1023 5141 57.37 274 38.74 9.88 4.73 G. 5.3.?5 98 1044 5250 57.40 280 37.94 10.72 4.74 0. ' 99 1064 5360 57.51 2S6 37.16 11.47 4.79 0. 0 1084 5469 57.44 275 a6.42 12.78 4.81 0. 54.01 1 1121 4661 t;7.65 305 35.18 13.82 4.83 0. 53.Es 2 1159 5S52 57.67 353 50.23 4.54 5.47 0. 60.25 3 1196 6044 57.59 354 49.64 4.56 5.38 0. 5S.60 4 1233 6235 57.57 355 47.15 4.44 5.31 0. 5.6- = 5 1270 642S 57.78 559 46.31 4.35 5.19 0. 55.E:5 6 13?3 6701 57.82 364 44.98 4.26 5.11 0. 54.7 7 1377 6973 57.91 .370 43.23 4.84 5.04 0. 8 1430 7246 57.69 370 42.14 4.03 4.94 0. 51.10 9 1484 7518 57.83 386 41.14 5.24 4.96 0. 51.3; 10 1537 7790 57.86 391 39.70 5.56 4.91 0. 50.17 1 1 1 I I I (•EPERAL ELE!' 1 r: IC CON.L'r,NY UGF'-5, CEVERATIDII PLA1041140 ALASKA RAILRELT 7EROZ — 3X JOB NUMBER 3ML5A9 09/01/82 GENERATION SYSTEM FLUKE COAL NGASGT OIL 67 DIESEL COMCYC TYPES TYPE 1 2 7 4 i 6 7-10 0PTFzin G 0 1993 1993 0 C 1993 #** PCT TRIM o 0 0 0 0 0 1'�92 mu 0 59 452 141 67 317 155 SUH= 1170 TOTAL CAPAB. Y R Y€ A B L Y tt w D I T 1 0 N S + T I E S 93 6804' 1853 9y 4 18'? 2 7 J 1774 96 1704 97 1630 98 1575 99 1575 0 1:31 1 1531 -' 6009 2070 3 2025 4 1* 2026 5 1938 $ 1* 1916 7 1X 70 1986 8 Ix 70 1* 2031 9 2030 10 1x 70 1* 2101 4#1 144.4:4:44Fsi#*44-1413I)f*** 444,#;tVrt*..tt•t#4.44'tl 444*4:4Y:4.141.1.1*1141114 :Wrl rl 4 tq4i i;:.Et4fiIs.}R.4.t**4 t.t..t,, �f1.,#i.t#•f'# #t#4#4i4.1#144►t4# dw {Milt 0 0 210 0 0 0 1234 =Um= 14?4 ii61 RET 0 —46 —335 -141 -61 0 0 SUM= -583 4'414:;b4 4:*4:4:** *##.4** *4**t:# 1#444't 4444.44' * *** 4##'t 4411f4,11144 2010 0 13 326 0 6 317 1437 SUM= 2101 PCT TOT 0. 0.6 15.5 0, 0.3 15.1 68.5 SUM= 100 PCT 444144t##tf$$'4:44+#fi14:#*#:4*x#:; i. 4:4.444l # '4'1"C* #' 4.f f ## k4414'ti t#h*4''. V*lt.Ir AUTO 0 0 210 0 0 0 0 SUM= 210 F'CT TOT 0. 0. 100.0 0. 0. 0. 0. SIJK=1!)0 PCT # COMMITTEE, HEM F.AL FLFCIkIG L:Oflf f,fay F-ROGFcf.15-SLIMMARY iDUTF"U7 C OUP-5 -t:!& tk1ION F"LANPIr1G ►;##1+Odd#44#A'MA��##4#M#1##s#+###4#.##�Y##'1'14#'#ta* ALASKA RAILHELT ZEROX - 3% JOB NUMPER 3ML5A9 O9/02/02 ###*#SIT###k.*##4#�{##�i ######�.#•#.##:x##*# TOTAL CAPABILITY LOSS OF LOAD COST Its MILLIONpu (INCLUDING TIES) PR O?AVILITY YEARLY CUM. I YEAR TIME OF PCT. FiES. IriY F4{Y COST TOTAL YEAR YEAR LOAD END PEAK #*3:*.* **** #-#:*1.** ****** #'*249*7 1F*41 #LOAD �*�#� 18 3 95.? 4.044 0• 1x*** 80.4 1993 947 1853 1822 98.8 0.000 0• 253.4 358.1 ' � 1994 965 983 1822 1774 1774 80.5 0.000 0. 256.9 533.1 711.' 1995 1996 1003 1704 1704 59.9 0.000 0.000 0. 2+9.4 .,74.? 587.2 1997 1023 1630 1630 54.4 50.0 0.004 0. 280.4 1061.9 � 1998 1044 1575 1575 1575 4s.o €r.007 0. 286.3 1235.2 1799 1064 1575 41,' �ti.438 0' 295.3 1408.1 `�000 1004 1121 1531 1531 1531 15s1 36.b 0.074 0. 304.7 35.,.6 1582.E 1777.1 ' ?001 2002 1158 i078 �079 79.5 0.000 0•000 0. 0' 354.2 1968.( C 2003 1196 2025 2025 69.3 34 3 0 . 001 0. g5q.7 2153. I 2004 _ 1 f33 2026 21026 1938 , 5-1.6 0.017 354.6 2332• 1 2005 1270 1938 1916 1916 44.8 0•G78 � 356.2 2508, ' 683., C 2'006 '007 1323 1377 1Y66 1986 44.2 0.041 0. 0' 36694 366.6 2853. ' -009 1430 2031 2031 42.0 36.8 0.047 0.039 0. 379.0 3023• c 2009 1494 2030 2030 ^_101 36.7 0•056 396.2 3192. I '010 1537 2101 c I C c ' C I c a L 6E0FF_AL E_ECIF.- IC C0tiF- SITY OGF-; GE1 ERATIfl14 F'U&7' I NG PROGF:1.~-SlJMHARY CIk11F'Lli ' 1'#.1. # # ## ## +t#tt Ytt4 *1 4 1 t4r***It ALASKA RAII_DELT ZEROX - 3% JOB NUMBk 2ML5A9 09/01/02 ' FOOL TOTAL TOTAL YEARLY sMWH PEAK ENERGY LOAD COSTS #:# #:4,1't#'ft* t*t***:r*sttj#4 ft*11 CT6i* *4 YR {MW) (GWH) FACTOR (MIL.f) INV. FUEL O+M H.I. TOTAL ** ***V** #*:F4'**# **r*** *rf::l::14* 410** 4'47*** *$IV* 973*** ****4' 93 947 4736 57.09 250 42.05 5.92 4.74 0. 52.72 A4 965 4829 57.13 253 41.24 6.49 4.75 0. 52.46 ' 95 983 4922 57.16 257 40.46 6.96 4.77 0. 52.20 96 1003 5031 57.10 269 39.59 ?.24 4.73 G. 55.56 97 1023 5141 57.37 274 38.74 9.3B 4.73 0. 53.a5 98 1044 5250 57.40 280 37.94 1G.72 4.74 0. 53.40 ' 99 1064 5360 57.51 2SS 37.16 11.47 4.79 0. 53.4'-) 0 1084 5469 57.44 295 36- 42 12.78 4.81 0. S4.00 1 1121 5661 57.65 305 35.18 13.82 4.83 0. 53-82 2 1158 5852 57.69 353 50.23 4.54 5.47 0. 60.25 3 1196 6044 57.69 354 48.64 4.58 5.38 0. 50.60 4 1233 6235 57.57 355 47.15 4.44 5.31 0. 56.89 5 1270 6428 57.28 155 45.73 4•30 5.14 0. 55.17 6 1323 6701 57.B2 3S6 43.87 4.27 5.02 0. 53.15 7 1377 6973 57.81 366 42- 71 4.B4 4.99 0. 52.54 8 1430 7246 57.68 367 41.64 4.06 4.?0 0. 50.60 9 1484 751E 57.83 379 40.13 5.40 4.89 0. 50.42 10 1537 7791 57.87 326 39.25 5.46 4.86 0. 49.57 1 I I I 1 I i ■ (;`,jEF,AL E1-ELIRIC CfjMF'Aha1' GEtd£F;ATIO##'##1*#**#:#**####X#��`*K�#•#x#####,# ALASKA EAILF+ELT ZERO% — 3% �Q8 Nilh10EF: ?htiL5ti1 0?/Olf82 GENERATION SYSTEM j4GA5GT OIL GT DIESEL COii�YC TYF 14 NUKE COAL 3 4 5 ##.* YF'E 1 2 0 0 1993 T yPE0 1993 1993 0 C. 2[NG 0 0 0 317 155' SUM= 1190 0 PCT TRIM 0 59 452 141 $7 1992 !1W TOTAL # * *# #•T## CA?AE• . A Ii G i T 1 O N S # TIES YR 6803 1853 ■ #* 4t. 182 93 1774 94 1704 ► 95 1630 ■ 96 1575 9; 1575 p c5 1531 qq 1531 4 600* 2078 1 1 2025 2 1 * 2026 3 1938 4 1# 1916 5 1416 1* 1?al y 7 1X 70 4)30 g 1 70 1* 2031 . I11;1}14 .;: 12 4 SUM= ld�ti 0 14G -61 a 0 {A.}k 40 i+i+It 4 -4B _335 -i41 �. is#�i#'#k RE 0 #+i:y#.1 a ff:�k.*. #,#*i-t* SUFI KrJ31 s17 1439 '!rb 0 6 r 70.9 SUhi=100 F'Ci ■ } 'Clt3 0 13 4. 0.3 1'�"�#:a4'4:#.4t TOT 0 . 0.6 1 ` ' .# : #' '3 'i #:.i- # 11'. #. # T 4 f' 1. #" ,T K .t #'. 140 _ F'L' T 0 0 FUtly '!+ ;;ii#.w!'bT##:71;::4#t�l<:## �##� 0 0 TUii=104 PCT � 0 t .# 0 4. 0. 0. U .` -3 0 0. 1^ 3. 0 E' F�T TOT 4. V ■ a s FLLCIF;IC Cfj'iFfilly OGf "I01I F-L;;KNI1JG FRUGRedi-SUMMARY OUIF'UT . :'s1�#;;•',#41f4434144444*44444*1 44:41444444444134* ALASKNA R'AiLPILT JOF- _W- I 1 09/01/82 414r41A449:41.44 4:4A:A414 4444 707AL C,:PABILITY inCLE11iiNG TIES) LOSS OF LOAP COST IN MILL1014 S YEAF; TIME OF PCT. PROVABILITY YEARLY CU11. FV YEAR LOAEi E1111 PEAK RES. 11/y H/Y COST TOTAL i�*IW. *191.** 41:X-101: #1*4'# 4*1* #•# *# #*V4 t 4:44f41*#- #4'14*4'# 19?3 IF4-r' 1653 1853 95.7 0.000 0. 249.7 3E0.4 1594 Fr 65 1€ 22 1822 f}8. 8 0.000 0. 253.4 7.55. 1 1G5 5163 1774 1774 &G.S 0.000 0. 256.9 i'3•- 1996 100 Z 1704 1704 67.9 0.000 G. 269.4 711.2 ■ 1:97 1023 1630 1630 5?.4 0.000 0. 274.2 $$7�- 1998 1575 1575 50.8 0.004 0. 280.4 IUI.: 1?99 y1A044 1064 1 575 1575 48.0 0.007 0• ::-L'6.3 1235.2 ■ 2000 1094 1531 15.31 41.2 010.34 0. 295.3 140 2001 1121 1531 1531 36.6 0.074 0. 3-04.7 2002 1 1IS. 8 20-78 2075 1-9. 5 0.000 0. 3�2. 6 1777. % ■ 2003 11 66 20.145 ,'025 65 . 3 0.000 0. - 54 . `_' 196,131.0 2004 12:3 2026 '?G26 64.3 0.000 0. 354.7 2143.2 ?0.)S 1270 1736 19s8 52,6 1.005 0. 314.6 2332.c 2006 1323 1916 1916 44.8 0.023 0. 356.2 2508.1 2007 1377 1916 1916 39.2 0.064 0. 362.6 2681.3- 2C00 1430 1761 1961 .37.1 0.073 0. 362•4 2349.3 2007 :484 2434 2030 36.8 0.038 01 379.0 019.7 ■ 2010 1 537 2031 2031 2;:! . 1 0.082 0. 381.8 5186 . e ■ ■ 1'tEHEPAL FLECiF:1C CUM PtINY . k)GP,-; GEUENATIOU FLAIIIIING F'F:#JGrf�ti- LJtit'ia�t:!' ourF'U', I4'.1####*ii,1C#1##*144.**1of*#.1-4t**1#44414#1*t'1044* ALASKA RAILPELT * Z E.RDX - 37. JO? NUMPiEP 2ML5Yl 09/01/22 • F UOL TOTAL TOTAL YEARLY S MWH F'EAK ENERGY LOAD COSTS t* *# #:**:# 4 #:1 *14.**#:#';fit#.*#:*# YF; (HU) (GWN) FACTOR tMIL.S) INV. FUEL ***** O+m ****# H.I. *tl: * TOTAL #'*r*** I * .1#'a ir#4, 'A 1:**f ****** *#.*# ** # **#=* 4.74 0. 52.72 93 5147 4736 57.09 250 42.05 5. °2 $4 965 4829 57.13 253 41.24 6.49 4.75 0. 52.48 52.24 95 983 4Q2'? 57.16 257 40.46 6.96 4.77 0. 0. 53.56 ?b 1G03 5U31 57.10 _"c9 39.59 3B.74 9.24 9.88 4.73 4.73 0. 53.35 9? 1023 5141 5750 57.37 57.40 274 280 37.94 10.72 4.74 0. 96 99 1044 1064 S360 57.51 286 37.16 11.47 4.79 0. 53.40 0 1084 5469 57.44 295 36.42 12.79 4.81 0. 54.00 53.B3 * 1 1121 5661 57.65 305 35.18 13.82 4.83 5.47 0. 0. 60.25 2 1158 5852 57.69 353 50.23 4.54 0. 58.60 3 1196 044 57.69 354 48.64 4.58 5.38 0. 56.619 4 1233 6235 57.57 355 47.15 4.44 5.31 5.14 0. 55.17 5 1270 6429 57.79 355 45.73 4.30 5.4? 0. 53.15 6 1323 6701 57.82 356 43.8? 4.27 4.89 4.95 0. 52.01 7 1377 6973 7246 57.81 57.69 Z633 362 42.16 41.11 4.05 4.S`, 0. 50.01 8 9 1430 1484 7518 57.83 379 40.15 5.38 4.88 0. 50.42 10 1537 7791 57.87 392 39-75 5.45 4.82 0. 49.01 ■6 r C) 0 O ■p so O ■ Q r;LNERAL s`'LE+� T F'IC [ UhiF i'iFIY UGF'-� UE[�EF;i1T Iaf�! �'LF1f?f, IlQCi F'F' ?G f�i�-SUfi}'if1F:1' OUTPUT ,�LAEKA RA-ILliELT 'EF 07. - 3% DEi ljoriKEk 2liL5El3 Gif01l82 i''ENEkA T 1011 SYSTEM #-U1.E COAL F1Gtc,GT OIL GT iSIE�EL COl4C'fC TYPES TYPE 1 2 3 4 5 b 7-14 OPThZINS G 1993 i993 0 G 1993 *** PCT TRlh 0 G 0 0 +? 4 1992 HW 159 452 141 67 317 155 SU?f= 1154 #'1-*ftl it Alm*4:#,�F.�I:441: #.w.4 # *:i �f:�:�: A** *# # 1 # #. # #ILIAC CAPAK. YR Y E A R L Y K w A T I U N S + TIES 93 122'_ 94 177A YS 1704 76 1630 97 1575 98 157: 9 1531 0 1531 1 600u 2079 2 2025 3 1t 2026 4 1938 5 1* 1916 8 1916 1961 S IX 70 1960 9 i 1k 2031 10 1Y. s. • .., ., , ; ����$•�•:# i ; I :L :# 3:i1# 4+i�' .�'}$;4�F-".'. i x s� } }�{+f 4#i#!##:i4#W.,444 C 1284 SLIM= 1424 i:a� r GCS 0 0 1 rD 0 0 p +~' SUii- -` = 3 i•i k•1 F: E T 4 � n � -3 3 '� -141 -61 44#### F�#A}# �x i�* 9##'rt# �;##''s �k #*6 t'##317 143? S�Ji',= 2031 2010 0 13 -`r° U SUKtIGOPCT F•CT TOT 0. 0.6 12.b 4. Ci.3 15.6 70. #i#}={;;?',+#:+:{1±4►j,A-,4sills:.' li}l31}4fi#411f*IIit ;#f}{11#f+i1At}k FGT TOT 0- 0• i0 S r11J i s 0 1 �0 0 O 0 3UUfiK - = 10G I T 100,n 0. 0. 0. G. 1 Crsiim I TEE, At' 9 0 I i GEd4F:AL kI-ELI LIC CLf 'ANY UGF T I Fill P;.ANN I" F•F:OGk(AM -SUM1 AKA QU f P tit I•Ag:414A44A4444444144t4fflA4A44*0 414#+A'jAIA-IIV M ALA S1,A RAIL.ELT _E Il iaJ ri =7% lti! 51f 3y 07y /01/22 # rF �. +Y V •: T i ti { i i 1 A l 1*1 yy d� { T TOTAL CAPABILITY LOSS OF LOAD COST IN MILLION I ? ( INCLUDING TIES) OF PCT F•I:OI AD IL 1 TY YEARLY CUM. Pk, YEAR ENII TIME PEAK . RES. GIY H/Y COST TUTAL YEAR + LCAD yy 0y*+ I+ ii ■+ 4` � � 7 1 T y y � 7� � T � u � • � �• T +$ .{ T 1 � I. � T T Y y � � �• �1. �- 4 � 1� i• � � � � T 4 A i R � J M1 1993 S T i 547 1 1853 1853 95.7 0.000 0 • '249.7 53. 4 180.4 3: � • 1 1594 965 1822 1522 89.8 0.000 0• 0. - -56.9 533.1 ' 19ir+ `•'83 1774 1774 50.5 0.000 0.004 0. 2a9.4 71 i .? 711.2 19?6 1003 1704 1704 69.9 59.4 0.000 0• 2174.4 1997 1023 1.s.30 1430 1$0.4 1ii61.2 1958 106 4 1 ;7c 1 575 48 0 0. 007 0. 236.3 1 -,35 , 3 1994 �?C00 1+J64 1084 157.E 1531 l a31 . 41 .'_' 0.4?3$ 0. 295.3 1408.6 1.0582. 4 2001 112.1 1531 1531 36.6 0.074 Q. 304.7 3c'?.6 1771.la 2002 ro 1 I Sa 078 �r �78 � � 7 9 • � Q.00�O Q. 000 0. 0. 354.'_' 1760.0 244}3 1146 2 2 2C125 .2�-+J 69 . 3 0 0.0QQ 0. 354.7 2153.? 2004 1233 �0�5 0_6 1938 0_6 1938 64.3 � 5 2.6 0.00_ 0. 354.E 354.6 "'332.8 '..� 2005 1270 19ib 15`16 .2 0. ''S0S.1 2006 1323 1916 1916 39.2 3 0.0.014 4.03A 0. 362.6 2661-.3 2--107 2008 1377 1430 1961 1761 37.1 0.03' 0' 32.2 3?4.9 2340.2 's018.0 �'D09 :484 1960 1960 32.1 0.06 0' 0. 382.4 318J,C+ 2010 i1�a7 2031 2{,-41 32.1 0.042 1 1, 1� I r;E!IEF:l�L C; El:ll:1( rGr,F��NY cluTf UT LIGlIY ; �1#;di,h#I4441 44A44441�1#T4 4 441A 414a4*#i4#4444t #i#�4j' RAILYELT 7ERQ� - 37 joB Nutii•ik --ML5T'3 09/01l8-� � �;4x#4#x##'iF�%#•###44�#!*:I�x=�4#1#r.*#4�44;#x l FOOL TOTAL TOTAL �:t # x � # YEA LY SIMIJH #.#:t�1-4 4 # # 4 # 4•4 4 � PE AV Et•'EF:GY LOAD 10V. FUEL OTiq .t. T0TA' YE: 01W} 1rl GW FACTOR (MEL.'F} x44*.** 144'*t fix- # #:14#* ##'T'#* *1527 #�:i-k;:4' 1'x##3* 57.04 j50 42.05 5.9'2 4.74 0. . 52.4E 93 g4 $47 965 4r'::6 4829 57.13 25 41.24 40.46 6.49 6.96 4.75 4.77 0. 0* ;2.2C 95 993 4 22 57.16 257 `'Z,9 34.59 9.24 4.73 0. 5'•5_ 06 1003 5031 57.1€� - 274 38.74 9.SS 4.73 0' 53.35 47 1?2a 5141 r.,z 57.37 57.40 `'84 - 37.94 10.72 4.74 0• S3.4� 53.4-1 98 Ti9 1044 1064 .�=.+4 K260 57.51 2 37.42 11.78 4.81 0. 5t.0L. 0 1084 5�i6 57.44 t 305 �cS, is s 13.82 4.83 0. 1 1121 5661 57.65 57.69 353 50- 4.54 5.47 0. 0. 60.s� 5e.60 ? 1158 1k96 5852 6c'44 57,69 354 48.64 4.58 5.38 5.31 0. :6.$ry 3 4 +� 1'' y.i fa. 35 57 • 57 3:i5 ct 47.15 4�.73 4.44 4.30 5 . 14 0. 55. 1 J 5 1-70 5428 57.78 3,,.� 3i6 4.27 5.02 0. �_ 53.1 6 1323 6701 57.82 57.81 363 42.16 4.89 4.95 0. 55'•0'_ 49.?E ] 7 1377 69733 7246 57.69 36., . A111 4.02 5.40 4.8i 4.84 0. 0 . 49.87 e 9 1430 1.24 7518 57.83 375 39.62 5.49 4'82 0' g9.06 10 1537 7791 57.87 382 30.76 1� 1' 1 OFFICE MEMORANDUM ■ ■ TO: Dave Crawford Dare: File: FROM: Phil Hoover cc. susjECT: Results of GP Analysis - 2 Cases 1 r _! August 25, 1482 P5700,14. 57 G. Krishnan Attached is a suimiary sheet and 3 sheet summaries from the OGP analysis of the 2 cases provided last week. Also included are 3 pages from each of the summary OGP printouts. Please call if you have any questions. PHjpml Enclosures r Phil Hoover Calculations 3UnlECT� Operation Alternatives CASE Run 10 August Flow Available Energy are firm Usable Energy are firm Dumped Energy are firm 1993-2010 2010 (10.2336) 2010-2051 LTC Ga stu rb Cap NB based on ($8238) C 140' prawdown L501 GWh 6710 4922 6668 4896 42 26 $X 1000 3207.6 389.9 3990.1 S7197 4x70MW S1040 ,os Numeetr P5700. 57 FILE NUMBER SHEET 1 or 1 BY DATE APP GATE C 220' Qrawdown L573 6706 5845 6634 5805 72 40 3186.6 381.2 3901.0 7088 2X 70MW 1150 we IWI ul 141 1�01t 41.1 1 %.1 R l.k. 1:1)(111 iut r f11ik `� CAI N1 RA r I IIN PIANO I U-11 11W(il:i' M !A!MMORY (ItI t It I r � � � � �.• Al ASItA RAJ L..>11H. 1 .37. NUKE CoAl tVLi isd l• OIL UT DIESEL COMCYC TYPES 1YFr~ k :S 4 :5 6 7-1.0 I -1: 1 1 1i I m 0 0 +(1 00 , .r92 mw () 5Y 4.F'�' 1.411 67 117 1.5;s SUM= I J.Yo T 01 AL. CA1 14H �N Y F A kti L Y m w l: T T 0 N S + rti,- '! 4 1.82'2 .,6 1704 Y l 1630 • it IW5 r 1l;i�i1 1 1 ` —31 600* 2U711 s 202.-p 1.:+ 2 6 a.vs�r 1�k IY16 IY.16 Ix 70 11961 1.47A0 1 xs 1 K 70 1.* 2031 *4444,*. yh,ik�y!•*y1�Fr*�kk y**y*1yFsky�lkA�yis�k3kl�k#�yk�ykf,#+�xr*iaksikdY'hw*Acy*y*1ryc�KW*�Iy[�.5klwk*kak7�kak*>p%#*�ykyd��yk�yC �+f 5•h` 'f•�-MTTL`•Ph+�.7k+w***�•I;i+1.ik�'1`�.f`41X++M1 •P�T'F9•T�f'T+{L #•k•"�A{ f TT�T�/iMT*TT+RTTT�TRi �: r N�fi�T4. h.R r11J �11101 {} i} 1410 0 0 0 1.2134 st.M1424 �r4•s I{1. 1 i} •1c, :3:i'--, L 31 --10,1 {} 0 SUh- •- B3 ► �.Lfi ** 1#* 4' h .k4 *A* 41k sA ****** **** ****:R****4* 4; I„ 0 ! A A 317 1439 SUMu 2031 +11:4 lift {), ['r.F, .3 15.6 70.9 9L.M;=JU0 PCT "• #• ,1.4 1 �.�** 4 �� ** � �*k A�>K+kA Jr *� �****�K*%r�k**�k�k�r*#:1�:4�.k>t:�•*�k**11i3k711*r%�Cik+ll.k***�f >K�ic*�1c7k7k*�k 1e 1 1 �1 SS U 1 •i() t} {} 0 0 SUl•i•= 140 ICI I•1 MMM � MEW # mm a w � I1f til.�i?I�f�I11. I:I I f:l'Fkll: I'fIP11'i�t�Y (lWy-:.r hL• N1-140 I tIN PIANN I.n'l; lritil.}iil{1)h •';111-itlA'tiY fl[fTFUT ,'%I i i !A-. r'r -1011 NUMBER ;'lil :+73 1111 (11 11 1 1-Y { 1 NCI 111, r�1, r I i L. ) l_f.1'35 iw!'f' I iWilt C:[l n' IN MIL -LION '! Yl<f+i► 1 1111 111 F.C.1-. PRAll:+r pri-1 lY YL+1ft1_Y CON. I'lli II (IN I_i;1A[I Fi4b a'1 AK RES It/y fIJY rL.1::i'T TOJ'AL ' "r`�.: ti•}! 11!',+', ! 1I',.i G 0 r 000 •''r:t ' fi:i 1. 774 1 ! 4 Em ".r 0 r 00,01 0 25i6. 9 r33. I 100A ! /04 1 PH f+`i 9 0. 000 0. 269,4 711 r ' 1 {}-r.S 1 630 C 630 :.t9 . +1 0 . {}(}{1 0. 2`/ 4 . ? B87 t 2 1 04A 'L i7:.i L`r%:7 `;O. fi 010011 0. 2BO. -1 1.06:1 1 9 `.?`? 1064 1.S7 tj 1575 4li.0 ti.O(1`I 0. 12E:6 3 1235.2 'tIM ? 1:i.i.l •? 1 .:r tiy,0.3 f? C,. 29 a. i 14of,*, A ritrl 1 1..'1 I:r.il [.'1..5! .36 el 0.0/4 ►}. 304.7 1..1 24A .':i.. :'��:':. :+i�;'�r d, f ..S {) r (1{1{', �i r ;5::'+4 . 7 •t•r�;, 1 :_+!{} 1'r.iu L`l.f1{ `.'i:' . Er {), f}Lil. ii r 3:a5i.'7 2333. •tirtit: !,;'r+ 1'71;� IYL:r 4'.ti t).Ol4 0. 3:,7.5 2t.oil.3 9.1 1 v I h tri+.:.'. 0.030 0. 363.1 26132 El `lfr l I Ir, 1 13l . 1 01027 U. 36:3 . 4 '.Alai 1 2 .�•r{:+� ? 4114 19,60 I960 32 1 0.054 0 374 . R 3020.0 '+ 1 it 1 :d;i f :'{A;; 1 :1031 'in, 1 0 . 0,29 00 Ml l .2 .i + HIS, 6 lit Ni Nord. FA $.(:11{.}l.; C:I1MI&ANY NA' '+ GI Ill. J:1 i i I I IN i'1 ANN I NG, riilhiliAli-StIlIi9ARY 01.1,Mi.] i 4•**.A**4fi+.4,4k***4*.A*+I4***4.>l,**44*AA: **3.#***+fah: Id-.hIA�Al I 1 I I;rN1t: 1:11M1,1114Y 17[31=- A G1.N1 I C A I TON FLAP!+ I NG 1='IitWOO M-SIIJ'1MARY ClII l'F'IJ I' Al -ASKS 12A1L>rIELT 11: 1?{17.. •_ 3% JOB PJI+JJbCR ?MI...573 Oft/24lFI:.1 F'tl[JI_ TOTAL TOTAL YEARLY ` /MWH 1 1.AX NNERGY 1.UAD Ct3s-15i Y1- tMW) 6WI1) I k,1t:-1LIN tPiIL ,Si 11gv. F1JhL U+P1 N.X. 'IUTAL k **Cr** ****4*# f*YA*fit 4*4**4 *T4A* ***** ****fit 1k+kAW* ****** �03 `!4 7 4 /l ir. •! . OY `:.IW 42.05 5.92 4.74 0. ti 12 . 7:F 40•1 965 +1k1:"j? I:; 253 41.24 6.49 4.�7.,i G. �52,4H1 `/,f Y133 A1l2"r'. ;.l . 1.6 2!�7 40 * 46 �1. Y6 4 , f % 0. !+2 9 20 `+ 6 1003 031 ::.l . 10 269 39,59 9.24 4.73 . 5J-3 . awl6 'f ,f 102.3 .1 ".4.1 oi.31 274 38,74 9.HO 4.73 10 ■! . 53,35 .I 1044 1l.40 280 37.94 10-72 4,74 0. 5nt►+{0 ! 10611 11360 1.11 b 1. 286 37.16 JJ * 47 4.79 {1. Jj'i 42 :f 10114 .J46y .J7.•1 2?5 36.412 12.76 4.171 o. 0-i.00 I 1121 ::661 6tf 30i 13.L12 4.I,$3 0. 1)31.03 " A I :+I.l :i J3iJ.' n % . to .353 a,St�J..1F.� ..10, 23 4 . 1-1.1 j . 47% 0 . lief- 25 -i 1 196 6044 `i % . [r9 351 48.64 4, 58 .1 . 8 0. J:3. 60 1:13.3 Ati:r 11.1ti 4111.1 5131 [ I N6.+19 t.!!0 114 d :,l./8 :j;,f.. 1I .l.i 4.-19 5.01 i). i;Xs [ .s;1.3 r i} I i . It. 43,147 4. -clt, "i . o `+.1.:.35 J.i!/ f.{1l.4 l.t:ll 163 42.16 A.9e, 4.9A 0 52.0,;o ,1 ! 1.3f1 ew 3 :4 41 . 1. 1. 4.17 4.13;1 01 %1 0..14 + 1 .11=14 l:i l tJ .1/.03 T/t:i 39. u:! :.j - J9 4.84 0. 4•l.136 MI 1. ill, iris :,.336 ►l. U." 0. '1.1.?3 U PSI IcAl I.1 1. 0: 1 fir1: 1.1IMP hIqY 0OF'"i (3k7.111.HAr Until PI.,Ar`l0I1'P+i F*N111.)1{Ai'i`;tIMI1MY IlilFFUT i+t*•*s�*s 4<T4k4c441:***A4**4,4 f4*-*4:�1 4441t*,4f�A*:9**4c*Yi*** 1,1•:MI Iw,'11 !:1 I l' rR 1 l: I",or11'ANY lllaky'`yy:yy� yyliiiI 111 No'l I J.1114 1'1yy. (1(414 1 oil y Pk i tlJJiI{{ it'y1-i:yi411iJ•l11FylNyy yIII I I ly1111, TT TTT 44*tL**l.4* "**Tq.1•.�***.i 14*44- -t*- 4.*�***#**** I-,4.(I*llyfr 1{(,tI.LEI. 1.A ,`I!.Iid r — 3z 1�41i 1+1L1111_�k.ki •.!i'11..�i{).1 {i1.l,x:.'.4I11:' �, �.�.�,+�+���kAs*�•1•�A.AIA•��c��Y�CtIA:+��kd�#*�k�k�k�lsAl�k�kAcA:**.k 61 HL,KA 1 RIN (SYSTEM NIWI—' COAL Nf;Fi561- OIL o, i+rrsI=:1.... (-,ijmcyL; rY1,Es I I•L•' 1 i 4 6 '/-10 IYy ., MW 0 59 4W 1 .1 �i! 31,7 J.`,J SUhi== J-!.' i) •k�k *N *-4(******)K**k *********** •rDTAL Y L A k I. Y M W ri D D I T 1 O N S + TILS + *plc** CSC AC C,} tkti:�k:k k h i•k* **U*4 * ***'*W** *a:*** **)K*** **** 1922 1 774 16,30 :I S-715 ' l i.;p1 J I 1.J S1 ''1025 •1 I* 2026 I x 10 20ou .I.x 70 1* 2056 2051, �I Ix 1* 12101, ! ty 1. 2.1 71 i;-,.��hy.Wyk*y�c:��.;�.*I.�.■�y�c�*p�yaati*+.*y�,�..y�ay��+�*�y��cy�.-�*,>x}�c+yr.�'*,:yk>I•>��.a�Ny:*..*4*y*y*y>{tier:.y��y'*ys�,�yc*y**y�..�yk�y�.y*yc** . ..'7.i.il.rT+«iA�+�.F•FT�•a�.F�•+FM4���:�A�T+l�+�I�T�MT•,�H, R�Tfd 7..T�-1k�•*RTTTTT7�TT•T t�H�A�TM��M1MF�� 21:10 (} {} 0 1.211.1 SLIM= 1564 MW �SS:ET yyy y 0 y yy { -y y46 yy-yy-3.351l y.y.. 1.. 41 yy Y -,61 yyy.jy 0 yy« yy0 SlimyM yy .yy yy-5El :{y{ ry..�#�p,ry A, T�TT�•T II•#�F'R� �TT*�7• ���9, R.T +A**rF�R, T*ACTT* �9,R� T•�T.F T+pM*.P�T 2010 0 13 3W, 0 6 317 1439 9014- 2173. 11 1' 'I`DT U, 0.6 10.3 0, 013 14,6 66,3 'aUM=100 P'CT 1 �I 0 t� :_'tlii t) {) U {} 511JIM= 21:10 I',' 1 III) o. 41. 1 [Sf1 . f1 fl . fl ►1 1% ins_.+ nn nM•r 1>� mom Iwr.�__ ..�� , � _... Itttttt#� - iiii%��"�� ... _ ��'-��s.vow---'-fir. `"""mm ^'► ..vm- -----ter h' L:LIMMITIF1.1 MW l.iEi+1E1tiAL N1.11,0FRIC COMPANY I1UF'--ti Li1-.OF RA T lI IN PLAT 141.146 F'Ttil:1l,iltiAWi-SUMMARY 1.1U T P11 1- ;AA',i"%KA F{F11LI..1iu..-f r>" kox - 3x .11111 P11.1libEF{ 'i l�..lt, LIJfll,1 983 L003 I ••'+rr I 1 5)113 1 'lyii 1 044 •10R,6 1 L OL14 :'i 1i1 1 121 'S �1•,• 11:1t1 1 Y6 1 .123 .'1+iirJ 1430 { II�CI I2U.CNli 'i JCL•:ti F L09S OF LOAD [dial' IN MILLION $ "iCAR I I.hil: all- PC'[ , 1'liMIA lILI7Y YEARLY CUH. I W ENFj I-'l. AN RES. 11/Y I-1/Y COST ***4t* X*A* **** ****** ****** ******* ***>k*** 1fib3 1HS3 hlti,7 o.000 E), 249,7 180.4 1 H22 1022 EIEl . El 0.000 (} ! 25 3 , 4 35 t3.1 1'17+1 1774 80.5 ().000 {), 9256.9 533, 1. 1.630 11630 5V.4 0.000 L). 274,2 (387.2 157 1.575 50 a El 0.004 (} . 200,4 106119 1.;1/5 1.575 41H.0 0.007 {}, 2136,3 1235,2 1:531 1533 At-2 ().03l3 Q. 295,3 J.4UEI.6 153.1 3 532 36.6 0.07.1 (). :304.7 1`.--itl2. at :10/It ;+()r✓EI -"1.4 {).000 0. 34Y94 .Lf1.74V 20211I 110.1ti 69.3 ()1003 c}. 35!j.10 1967.2 10M 1102i; 64.3 0.000 {}. 352.3 2151.1 2000 ;.10011 SL1 . 1 0 .0'?6 ti . 35?. Y 12333. +1 20*,-$6 :_'{ ,J6 ti15 . •l o Oil 1 0. 363. 4 512,, 2 I01 2J.€11 469Y 0.06,`i 0. :36Y.:3 2 fUS2,5 .! I Y0 .!1 70 46 1 2 0. (1,33 {} ! .3k18. ] 303711 2J.7.1 2 171 41.2 0, 07ti 0. 389.9 3207.6 lir Mt_ RAL_ EI .l-C TRI C COMPANY 1.161'-'_'1 l+I_H(I:.I{A I -ION PLANNING 1=FAllikd11'1- SlIMMMY OUTPUT A I%l', LI_lIl 1. 1' c}C � L � �r � � �. � �. �• I F�! Y i � i i i i i i i l: LW-;5 GENL NA l fON I'=I_,'1" 1 1E"1 PROGRAM-Fil1MMMRY OUTPUT .�1 ,-t'zlNA I(AiI_NF_L-1 kuz 37 I PL-01, TOT r1I.- rnl'AL YEARI Y $/MWI I PEAK F-WERGY I IIno 4:1;1ti I'S h111.. xRV FUEL. U-1-14 N. C. rt11r11 * A11�•� �k%c�.�kkt #+k#*1k *11x A 111 # A k** k��k>ksk%�':,r 4 A11 :,l.1r'! 2!:P ti 42. Oto S. Y2 4.74 411.,y :,I I. 3 251 41.24 6.49 4 . 7`o () � `.::� . 4u y H 3 :,/, lei 2tO 40.46 5.96 4,7Y il, 10013 1-r'0:SI It 10 269 39.59 9.:14 ■1.73 0. :•3! 5.1 1023 t,1.4I :;l..SI '.'74 311,74 9,Be88 4.7:3 U! ; J 044 :a;�' ki] .1f ..10 2110 37►94 i0.7 4.74 0. :':3 1.4{) 1 060 :ri 21F , 37, J.6 11.47 4.79 0. 53.42 l�ti14 `a+! ►' 57.44 29b 36.42 112.78 4.81 00 5A.00 `1f,61 1-07. 65 :305 35. 1 FI 13,02 4083 0. :i:.4 .11:3 `11:1.1.F :0. &Y 349 50.24 4.03 J. •15 0. 'f ! /] 1196 f1514 4 , 7. ea y 356 48.64 4 .05 3 . 39 0, tAl 1 U 6:.1:3:, 352 47. i5 4 #06 51 i4 0. t,6 .5 1 %A711 ."/. /#.I 360 46.31 4.49 5.2Q 0. 'a:� 19Y 1 A/! Yo/A :a,/., 4.+._"'k :r5.-1,, 5.UI i (1, /fj hr;i.t, SO } 0. 1.11.1.1 f`1.1>t ,l.aR;S Mild 41 , 1 4 :`i 49 4.9'7 U. 51,62 11.-,3% 7IfU :,l.l.lf► :3yo 39. 0 :i.42 4,I (). :A105 (;I.-.f4F'kAL ELECTRIC {:OMFIANY 41CIP-5 GI. FII 1;1)r J.(1N PI._FSN1 ING F'I CMI{AM--SlJI1d" ANY c1111 Pu l' ATTACHMENT B f yy •,.� ..T".. Tr ! . I''�r'.r:..i,�^ '�S i r•r I'ITrti';;. .iTY'u':Tirr':: "+" 221' "r'.,Vr 'It"I _`T I. ;^$" T ..?ly"r'.ir::! "'ri°T•'1:. .:.'�� •-' r5-� ri S T7rr�r .,� �+7' ..1 nn•-•r �..,�:xn*+ .} •' L r. a. i I a I T1. � .a a. LJ r: 1 7N.' T._+ I11 Tf:.. ii'i. P`T'` Ff !sS I FT P7 I S nS ''I L L I F4 PL"S. T!!15 e.5S nuTL;..T S TPA sC TU''.- .,LL'7 T'l ._ L nUE1'Z-P. I r' MUT-r T S T!�IUC TU?E I # # ::::PT . -.T S,.* rZ Li:,r:;L sw I °? P rP. I'!r PL.i5 L I'! ^, tS T IS a 2 2. Crf?r::r1T 'L--.17T�XII :t'1.sLY5I3 SEE"S Tr' IlJn- II;:,TL T.I,LT r.LLr'lVsrtr^•:. Irt T Pc` r:'P" SUPPr7'.T3 ..5 .3L^rP!JE ^+sTT::n SWIULT` n,-- :rT LL.:L]T +j r !1�firi Lr.:! •fir Hr Rl Zt"TT,,L T^ t''rr•rr'k'IS QI 51f r.r. r' I ��"1sf�f {T'f' •.} TPTI -Tr. rIn rir ter" Ti n " :r i r 1.i .rai•-.. siI L:J i.. I T.I. L } # TxILL 7I:"s'JS5 "ETr:IL3 ^ PrSSI DLE' ALT4T'"1,.T.'x 3UPPF'OT5. it nr'r •� r,. r. rI -PL n•_ '"TLY vl",:T1 -Ifl '*�.^.Isr+'+"+. !JL -. ._w,iZ3T -'ILL Tr' ,iLL LX"IC-` ;'hur,!f;.04 Vvt% nEe ! n.`rEILl. �rn••nr_rrr • ULT:'! TH.L. P?';ISI ."i SP $rfST E5TI--tTFT'- .3. i"TZR-l:.RZ'TCa ^c VL'Rl5Z`3 ",N jarrZIT 4`.r"".1tiLlr:31 nT I',;Ts%Kr- rOM SPI LLW%Y nU'r Ttl Sr w:iF��.Tn * '':: {]iX„•?'"! Ft ,.'' 4. :iITH TUR-1111—E vH:g9ACT47tISTLl,'5 u!)hLTU PED Fri?" Psr,. "ti IVIItf" i • C,%P-p+i' I Li TY U Ut-VI T I'! TIiG d:'}":.i+ (IF FIR'! YE-1-1? { CF?VSS H.±::*r 5:85 TT) 15 1 5'J .'r:J t%S C'?::Pr.'?t Ir Tr 174 `?l! I" PFT'. S. r-rr .T C7 L[+r =? ;---7im'+S If? rr 22.3' PC' "TnT ;,r^E^,T rLTPUT V-1 THE =`I?" YF.r,r'. THIS 15 r`„5 '^ ('!I I'r' S r'J,Tr, r+TT H&J'S W37) N SL.FiekRO-75 CI' LPI Tr'' MC. 7'L:.,5E Li:T jS T:'Tr'i:. dr a W6 !fit I 1 OFFICE MEMORANDUM ro: J, W. Hayden Dale: August 27, 1982 FROM: D. W. Lamb File: P5700.14.05 su &JEc r: SUSITNA HYDROELECTRIC PROJECT Watana Intake Structure & Drawdown 1. In consideration of the geotechnical consequences of lowering the intake sill level, the following considerations have been identified: a. Increased intake structure height which, in conjunction with increased adjacent rock face height, may magnify earthquake loadings; h. Increased intake structure rock wail height, which represents a significant increase in rock support to maintain a stable face against which to anchor the intake structure; c. Increased channel rock cut heights, requiring flatter slopes and increased support; and d. Increased channel cut depths and backslope distances, with consequential increase in, total channel widths which may create interference Ibetween various civil features and with adverse geologic features. The first problem identified cannot be accurately quantified without specific site response data which we do not have, but can be approximated by Civil Department using UBC and ACI codes. The other three are addressed below in a bi". more detail. I 2. The increased heights of the rock faces abutting the intake structure would present significant additional costs in support. The attached calculation sheets (pgs. 1 and 2 of 3) show the locations of concern (D on page 1, including back ends of structure) and four alternatives for the extreme height of the faces (pg. 2). Five alternative designs are possible in conceptual form: I(i) Free-standing vertical intake structure; (ii) Vertical intake, cut -back slopes backfilled with concrete (either solid or with several diaphragm walls) shown as (A) on pg• 2: (iii) Vertical intake, strongly reinforced tied -back rock faces ("B"); (iv) Vertical intake, supported by post -tensioned or steel struts and bracing to a stable rock face ("C"); (v) An inclined intake against a stable rock face ("0") FrDm the geotechnical point of view, the coice of a free-standing tower is best but, likewise, is the least desirable with respect to earthquake loading. 1 Of the four alternatives (i) through {iv), the most secure, ( but not necessarily the cheapest), order of preference is choices (D), (A),(C), and (B) in that order. t{jwever, in recognition of the short lead time and restricted scope of this exercise, we have included as page 3 of the I calculations, our estimate of support requirements for case (B) which reflects the current design in the feasibility report. I 3. The increased heights of intakp and spillway channel cuts is a critical factor for slope stability. With significant extent of faces in excess of 150 feet in height, we recommend use of overall slopes of 4 V to 1 H for all faces below 150 feet, and 1.7V to 1 H (600) for all faces higher than that. while in actuality there may be gradational change in stable slope with increasing height, we feel these numbers represent a good basis for the necessary estimate, 4. The problem with increased channel cut depths causing possible conflict with arrangements is detailed below, keyed to the slopes marked on Page 1 of the clacualtion. SLOPE a. (A) - Sackslope Encroaches on Heel of Dam b. (B) - Backslopes Entail Extensive Cutting to Daylight, Cut into Support for Rock Abutting Slope "D" c. (C) - Excess Cutting Involves Large Volumes of Excavation, Interferes with Arrangements and Inlet Flow of Spillways, May Encounter Shear Zon,s and Adverse Rock Conditions d. (D) - Support of High Backslopes Becomes Critical to Cost of Intake Tower e. (E) - Additional Depth of Power Intake Channel may Encroach on Emergency Spillway Location. Lateral Shift Restricted by Proximity of Relict Channel at "E" I This sort of problem could be alleviated by introducing as additionnl "pilot" channel at the greater depth cut into the existing inlet channel, with a "drop cut" foresay. 5. In summary there are an absolute geotechnical constraints and lowering the power intake by RG feet, but these will be substantize additional costs resulting from the for flattering slopes and/or rock anchor systems. OWL/dw IAttachments (3) D. W. Lamb W. . E POO NUMBER Calculations FILE NUMBER ZY-0-K SUBJECY:U.°if��llf� 'c7/frxrr� SI�EET�_ pF• EF EGT rl/"'- By .: z PATE APP DATE V ffI C VI J/ ■ y f■f a�1 .r V Q C i T G F. +; al D j a ,a .j L+ 4F r a n C; C 41 E V7 ¢i I A }- d 01 E: t -C r V q +a n+ �. }C Gl C >•�,� D N Q E •r d •r• C u b d vN w Gl u Y ch r N T d N 1 a-i C71 7...r. t S- • O 41 1 4- '— J Calculations FILE NUMBER/`--I�vGI1�"- rW !$ jj' r� iflr"!!.(�E ro r��R SHE E r _ �--?_ OF su���cr: BY �C T UA7hill Ei• AP DATE, ...� & % = rop c o.vaccr Tff- RMG,C C#CA'fiG fa i' iI l s• r' ci III a • J b ' 1{i be 6 e.Wa �.•c�ie if r ,.,tc esA" -_.---------- - -- - _-. ._.-. -- jU(I rauAilfER Calculations FILE NUMBE14 l `� 1•: f !� i•.�e .,h.4 .•. 1, 1 ^ y SUBJECT: �gn{SHEETOF �ear r:•/ —�-• a BY GATE���: �iCIIL, TAP �i,a �,_f i•�.i - � ri.�-• --•- - ' yr ie 4u . i F1 f'-'•'= APP BATE `�{ �.�'c tiw-. e[I �r!e.%� �r,. 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' 11 . r•F f '. i� I..r iSCi I/I rcfly t t to r r ATTACHMENT C �rI7 l I. LPL'TtA�1F4RD.rNkhC+Y.1i€��+ii4]eJ12�� •l1U 311SiTiA HEF UATANA ?1 q5 CASE C 120 =-*6&h.kh2 _ €L StORAGE 1900.0 2550800.0 p' W.rr..;.. 1Sv<i.0 333n004,8 00.0 4250000.0 tip ' o l aowk r 2e"Do.0 5340000.0 6650000.0,',ee► ?1J0.0 818"99.5 7.200.0 10020000.0 - 221rj4.0 12210000.0 s- A10TAUM STORAGE= 5733000.0 HANIHUM ISTMUISF 964P.040.0 MAXIMUM R. H.0 = 19371.0 START QSFI = 71BS.0 TI+FI = 3455.0 R11r.Y-- .107f",)r+07 iKGRI NL,Y HASk.I-Ek.M 4EKAND 0.247469E+86 0.337749E+06 0.3R2500F+6A 0.349604E+0d 0-3,006,0' .- +%)i. %I+;{ 0,262395E+06 0.244419F+Oi% 0.2;?95aor+06 0.22AS23E+06 0.23R299F+06 6.25+75?7E+.lAl � ML1iQI�u,Y IyxSi,FIS1Rf+E. RF.4'�1LR�MFNi ' 2000.0 1Q00.0 2000.0 1000.0 1000.11 11)00,0 ](1t) k "'), .0 ,5:+0!1.i1 64R - 1?{}0i3.G MONIHI.Y L'ATFR LEVEE 2184.0 2171.4 2154.0 2137.0 712?,8 2107.0 20993.0 2100.0 7135.0 2165.0 2190.0 2190-0 ARNINLY FLN DISTRT$UTiON 1.0 1.0 1.0 1.0 1.0 1.0 1.0 0.9 019 O.!t 0.0 0,7 NO, YEARS OF SIMOLATIPM = 3"' SAM im vies 0 rISEc= 318 NDEF= 66 HUFF1= 0 NGSFL- 0 YEAk TPTE i Ttl rsEC TnTIJEF 0,33717E+10 0.87162E409 0.24103F+46 ? 0.27679Ft1,0 0.269S9Ei09 0.314ii +07 3 d,34132Ef14. 0.91294E+09 0.72797E+p; 4 0.36156F,.+10 0,11J;±3f.+10 0.00A4ovlo0 0.31830F+1�0 0.66311E+09 0.77MF+fi6 E 0,36494F+1,0 0.11511E+1{1 0.19579E+07 7 0.19Wir'_OO 4.144.17E+1a 0.00400F100 H 0.3A573E+10 0.11570E+10 0.00080E+40 ' 9 R.3h417F�14 0.11944F:+10 0.00000FI00 10 0.31765E+54 0.67861E+09 0.24329F+07 11 11. R; 64R +i0 0,10ACI *10 0.00000HOO 12 0.37044010 ' 0.12041E+10 0.00001,400 1 ?• 0. 11955E+10 Ii A6954E+10 0. n1;41?4F F 00 14 0.41354F+10 0,16351E+10 0.00000E+00 is 0.35732r+#0 • 0, 0729F:+14 0.2iRR9F105 16 0.32976E+ 0 b.1490or:+49 0,17246F+07 17 0.31W + 0 0.9A'1'l R09 0.136h?F+07 10 0.3F669 + 0 0.1f893E+10 0,27825E+07 14 0.38591+10 011.)593F+10 0.0000aF100 24 0.302441+10 0.52784E*09 0,37512F+07 21 0.27114+10 0.212, AF109 Q.7.13355E+07 ?2 0.27529 +10 0,25595E+09 0.31947F+07 23 0.4'170..+iO 0.1570OF.+10 0.10004E100 24 0.33210t+i0 O.F►2235P+09 0.16606F+07 25 0mUz'*to 0,31841N09 4.39291E+07 ?6 0.29076610 0.40927E409 0.9A166F+06 �17 0.34785r�iO 0.?7P2OF+49 0,40000E+00 28 0.41772k.�10 f1.67973f,109 0.3n01RF+417 29 0:35395 t10 0.10 82E+10 0,04400E+00 31 1) 2978IEi14 1). iop)f.AE4 H 0.2803IF107 T•1 0.37669g+10 0.12666E+10 0.00060r+00 3' A,zit'i4F.+iG r I '},16128F+10 4.C40000 00 AVERAGE hONfHLY FNERGY AND POWER MONTH TOTAL PfIIJER MW OCT NE1;J LIE JAN FFR MAR APR MAY JUN JI'l ADS 5EP 352,793 35' 417,42.7) 41 522-002 52 465,451 46 420,701 42 383.747 38 346.BO5 34 346.974 34 315.152 31 716.Q51 27 501.703 50 380.197 36 OFFPFAK TOTAL OFFPF41K PEAK 3 F06FR F:1#kROY k:NFRGY k.11F.RGY AFFICIT I hw 6WH GWH G11H lit! 4311.352.793 262.470 262.4.78 2 }' l 147.425 An,290 322.290 02 . 522-002 308.11,9 388.369 51 _ 445.451 346.296 346.296 5 170,105 7112.71.3 2H2.713 7 383.747 285.507 7H 5. 507 5 346.805 249.700 249,700 4 34.974 750.149 258.149 315.152 226.910 176-910 ;A i ?lls,9:i4 203,3H4 205.M 501.703 373.267 373,267 -.`W - 197 273.742 273,742 AVFRAC-F, VON I Hi,Y S I AND HEAD MONTH IHFLaw P,H bW' •' PEAK OFFPFAV, Qcf 4522.81 6764.0� t';676b.07 6746.07 NOV 2059.051 866 .f 7 1 8667.67 8667,67 JAN 116S.`5 939 .10 9399.18 9399.19 FEB 983.27 B68 .35 8685.35 0-685,31, MAR 84A.33 009 .,13 � liom,;43 .31 ;APT+ 1099.71 747?.OB 747R.018 7478.08 K17 14{51,69 751?,61. 7!0..9.61 7519.6S JUN 23023.72 4620.34 6629,34 662B.34 JUL 20010.12 5549.61 5!;49.63 5549.63 4l;� ,Alh"`R. 51 977P,17 V/`/8.11 Y178.I1 SEP L0791.?? 7310,72 7310.72 7310.72 AVt.i[noF nN lll. 1. f HERGY = 0.117 ih EW KWH HEMP 71 *, . aA 710.01 101.89 606.70 �►71.40 643.20 6Al?. 76 659.07 6R9.041 it3.,24 721.58 REC "W 0.000 0.3E+0 550 RA 0.000 O.A04 110.681 0,0 0 0.017 139. 1? 0.000 0,015 115.P61 0.000 q.009 120,068 0.0011) 0.009 79.66A 0.000 0,007 M .r17 0.00D 0.237 102.7R8 0.000 0.00 A5.652 0000 0.000 19.232 0.000 0.000 263,406 0,00D 0.000 129.660 SPII.I HLOSS 0.00 0,01) 0,00 0.DO 0.00 0.00 0.00 0. DO 0.04 0.00 0.00 0.00 0.00 0.00 0,00 0.00 0,00 0.00 0.01 0.00 0.44 0.00 0.00 0.00 n klEL"A55 = 0.1824872.S +06 8" 11• 31• � � 1113�133i �■�■ .� � � '■■I 1! - t. 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V 1 S!J 7s■r I 1 3*Il 1155 .0 14575,0 1!{ a5.s; 14;J2. n 1105.0 14J5,0 143:;60 1455.0 1453.0 1,155.0 145L.•.l' J4.fJ.V 1'1,13.2 145a.0 14.l.5.r; 19.1.J.0 14J5.v 1415.0 11J5.0 1 Ill,0 1 i11.6 14Z;.0 1455.0 1455.0 1453.0 143n-0 1.155.0 1:3J.V 1428-2 1453.0 14JJ.V 14J75.0 1455.0 1450.0 1405.0 1405.0 1434.9 1455.4 1S.l.l.V L 'L.0 1455,. 141540 14 3-R 11^J.0 ir14-V 145J.0 14JJ.H 14JJ.0 1434.7 1454.7 14.:;.1 7'1;r4.i 1128.2 14 ZWERVI iR1111 RESERVOIR �I (GWR', 1JL I NOV 3 1 214.i 337,E JJJJJJf 'IV//'' .7 37,J+4 3 Z05.7 321.0 46,6.3 376.6 4 .; 41 [7. 7 3J1 .4 o •! . A �31 .j.7 J 21V.3 221 r7 ii1 39�.2 364.6 6 G11.7 124.1 -`i /..J 317.J 217.3 315.7 4 .$; 37;1.2 8 '266.5 357.0 4�34.4 376,4 7 .131.0 3CU..1 •1l(t.4- 37I.1 10 2 08.6 222.2 f .$ 317.7 11 273.3 35663 4 .4 377.8 12 20:..? 32?.8 '.4" .6 3"n2.7 13 �V7.1 .711 .•. 'iV •1 "i7;.2 i4 30143 2. J 4.i iw11}�i 37d,u 13 271.3 30.1r 11 14VFJrGi 37J,3 16 JTi.i 20717 146s.4, •]I'.J.L i7 3307.4 54?.4 186,6 376.8 is GVJ.O 27".7 � . 3V1r•7 17 245.4 3J3.7 1 ,iI .]/ I%r0 20 205.0 221.5 12 ..41 262.3 21 207.2 224.2 2 'r y ; 244.6 2: 21668 232.`a 2 ,V 24-.7 ii6.3 35.0 6 a" ' 443 N 2030.9 343.1 4 314.7 �J cV4,c Li1.l L .Q t37,6 20 2�5."0 22'a+5 i .a' 244.2 27 246.7 .347.77 4 .11 366.6 218 2207,7 227.8 ,.11 244.4 23 1-10ta 344.0 377,7 1 I 242.7 30 2ii.i1 c2d.7 ; .v 31 207.? 2,73.1 ."oi 376.0 32 2:0.6 306,i 14 .i. 37q,V AVE 232,3 276,5 DEVIL Cp1.i.a�}p,.a FEB MAR APR KAY juN JUL AUV .1[ F A;4N 317.0 280.1 L32.4 M .O i74r3 34Z.7- 257.3 337.7.Z M.6 r.1.7,► 22,^o.3 .:-Jp.7 170.3 1.K.'1 3i1").%1 1.;2.5 27It7.4 320.3 310,1 254.8 187.0 7.3.0 206./ 337.7 246.1 3401.1 7121].,7 71T2, 1 255 171 .116,'1 313.3 186.6 333,1 c31.7 716'434i 317.6 287.7 24L11 330.3 2-70.-5 173.0 316.4 236.4 331J.J 327.7 337.3 242.0 2yl .n 763.1 744.9 336.3 312.2 3:;0613 31e.5 2?116 231,7 ScL -J. •316.4 2?8 377,5 132.0 376:.15 327.2 336.2 274.4 736.1 .03.6 172■4 3.12,7 3676.J J, iLT M1 1 7 .3325.6 J 3727.1 326,7 2?2.5 242.4 280.2 706,4 70:-.6 1330.8 40"M 33306.7 327.2 330.? 275.4 300.2 180.7 ii:'.' 330.0 '226.8 3606.2 330.8 3336.4 2?9. 7 3ii1. 4 .3211? 231.E 352.7 244.7 3757.3 .324.6 373.0 275.7 7:21.7 •32.].I 265.1 i6.11 132.0 3711611 327.2 374,6 261.0 310.7 307.3 301.7 Tji . 7 3•1..0 3?a0. 7 325.7 265,5 227.1 1PP.V 33066 770.6 3-N.1 27i.8 A'7 Cyh.7 .719.9 2.72.1 218,5 228.1 237 .A 2M6 .i3?.1 273. 1 731715.2 327,6 317.0 M.1 201.3 3326.3 176.: 328.3 2 5.2 36421:1 327.5 /.77.5 2.40.3 2?2,1 302.6 26•3,.1 •1111.7 1•]l.,V -7•JI.7r•I 327.J 337.0 295.1 7,06.7 13136 M ,4 341,5 '752,3 38 4Q.4, 317.5 28?.3 237.4 1?1.2 i8n.i 18412 347.7 1J.k.2 2777.7 172.0 217.0 203.6 M- .7 202.4 205.1 335.3 MoD 274 .i 172.5 r'.1A.7 1$3.n" 201.2 211.? 186,2 33=J, Li 328.6 337.7 2?.,.J 3333,0 323.7 272.7 3A0,:1 2t.0..I .773J.G 326.5 307.6 238.2 194.3 215.7 101.7 347.1 s.,7.8 3.3S;-- 168.3 261.7 237.0 506.1 3na,7 156oO 344.7 243.6 s`o63.3 172,4 217.0 1D3.7 26J.1 311.2 t66.7 346.3 24:.6 :?ss-0 318.0 230.3 246.8 213.3 202.3 187.6 356.E 255.E 34-10.6 17146 271.4 2:4.6 217.8 321,1 775.7 3354.5 M .4 3112.1 32$.1 337.1 274,7 213.3 115.1 lnl.i+ 3417,0 J4/0.7 190.5 '1i.1 771.7 257.4 2.38.7 278.5 )37.7 �277.J4.2 6 .15.8 2911 r1.3 3326.: 3335.0 270.7 282.3 2?7.6 2i8.0 35?.4 253.8 3631.? a25.6 330.1 275.3 211.1 11'J,5 2A4,7 14664 100,6 3624,6 '4V.1 M,7 273.5 201.2 2466.2 205.6 230.1 303.0 293.6 3;i5 .7 'k gg TOTAL iNERUI PRCDOUCHD1 ipWH.; u% i ;;Gv of o k jAN FEt If FIR APR OAY jUil' .JUL AUG 1 431.7 I28.4 87P.I 77S.0 666,7 J98.: 471.4 33J.J 324.6 331.7 475.6 i M.7 411.7 Jrlra :iN.L 372,0 43M 444.0 4/1.3 310.1 326.8 471.6 3 J61.V 607.6 DIVrr 176.J 632.3 6J6.1 417.7 3J4.0 340.P 340.J 030.2 4 JIr:.J 167.1 M -4 776.7 682.4 6664.3 517.4 055.1 7,25.8 331.5 '+I6.6 J QJ7.0 •}71.J 17.1 772,1 647.3 572,H 190-3 J35.71 352-8 i31. T 40.1 6 610.2 473.3 o71.i 776.6 682.6 678.6 407.6 33J4.7 13n.0 43-.0 627.1 i J25.4 1.50-7, t . .6la.6 796.2 664■7 J76.R 47, .I 554.3 JCJ.O 51/.1 I0,0.3 6 348.6 166.9 $ 0.7 777.1 633.0 672.4 006.2 404.7 J26.0 3.1,7 53M 7 676.7 7767.3 $75 4 796.5 602.4 673.4 JTO.c 463.7 -40.1 3331.7 3,,J.7 10 6J8.4 472.3 J*2 .0 672.6 677.4 J79.6 489.1 ,45." 324.6 331.6 543.7 ;1 613.0 766.6 67G.b 177.0 665.0 672.3 556.1 504.1 334.2 AJd.V 467.1 -06.6 ciii.$ B0218 686.i 6"T%.o J7n.i 55::ly 6i.7.4 i3 37M n74.n 776.8 6812,8 4i2.3 5:7.7 -ray..; 575.7 117.� 7%17. i 14 636.:J r6Q.v 4%V.{. I 171.0 OSS.V 672sB J.3c.7 535,2 J J.6 JAC,1 67c•.8 1J :•i;.e :6�.s D►',lfl 116,V 660,8 )u6.J 46J.O 3,1r",6 5 J.7 :Iii.i 624.V 16 222.0 611.; %V P I71.7 603.4 4;i5,2 JVJ.G 422.7 400.3 ••i3.1 r't6.J 17 �.3 +53•3.0 l!V 7 176rs: 692.1 9JA.7 JiC./ 3JJ.V J1J.6 ^ 331.2 465.6 IS 659.3 472.E 52 N .50*6 684,E 613.' 4Q4•7 Jai.J M,; 4i3.4 7,-2.4 17 J20.1 766.7 . 0 1 796.7 6$3.0 67t,o 57110 J-..4. 576.J J17.3 A7Jro 20 757.7 472.2 '.aP1 J76.2 A67, .771* n81,7 XrS.l. 321.7 •73f.1 :;08 3 ci 650.1 471,7 531 3 504.1 371.7 438.3 366.33 401,1 31-4.3 331.7 478.3 77 647,7 472.3 a i is J04,3 371.7 4_'F) 1 764, i '5:,%3.7 73-A Ji8r7 "c3 JOa./ ICJ ■V I 6h%4 j]A /76.3 662.4 673.4 78.3 JJ4.6 526.5 518.3 036.6 24 503.6 745.6 :011 7j6.1 682.1 634.5 484.7 3JJ.0 362.0 342,C J12,7 23 60J.1 472.1 51.: 004,2 372.0 037.6 482.3 .'.1S•1 314.4 331.3 5�jV.1 26 652.0 471r6 51.6 J04.3 M.L 438.6 366.6 46i.5 JL6.J JAFIJ .10e.z Ll J68.8 /53.4 70.J 160.7 663.0 577.7 474.3 355.5 3l.-.V 342-i 57,4-J LG 654.0 472.2 'P1.1 .,V 4. J 372.2 601.0 :i!G.8 •755.=! 126.1 517.6 623.1 27 607, 134.J 6701.6 177.0 663.V 072.6 J77.5 -130.3 32.4.7 3.1.7 17J.0 30 6J3.1 472.1 J51.6 J114.3 372.1 439.1 466.E 476.7 .57.7 JJ1.4 032-3 ai 004.V 574.3 670.6 7?6.7 602.7 692.4 363.4 371.6 J "c.4 J17.J 6A4.d 37 6i.[.V /67.73 570.8 /77131 6Q•7.', •77<., 1 56rt-'1 38••1.4 7)4 442.6 MIR SE J.O.J 474.1 464.4 3 0.1 37L, •! 73:•, �c J71 .J a7J.o 774.5 377,6 !.ii+.3 7 i i'7. i 4Ji1. ] 7J3.4 Jil.11 •J �:3.7 ti67.i J[11 . Mlir4 J.:S.J JA3.1 ti43.0 J�V.7 ANN 6J77./ 3566.7 6772.1 71JV,1 r p. Pi 2. J 7263.10 73i4.0 7314.0 7307.3 iyiq,4 748'.: , + 4.S J6 . 4 60'24 .' I.,!.J7 .4 I lf1L.� i33i.3 1.•4V.0 n'J74 •' J37"o.3 .•4 r, / IS JI IO.G J760.4 6007.F 6 ,91.E I I•GV.3 J7[V.7 7 ; 16. iJ 9II;J.G AVE Q10.1 634.1 /67.7 Il1.0 61J.6 ..13.1 JV/.V '145.1 427.J 404.8 581.1 J77,3 4704.1 TOTAL USABLE ENERGYt i;) P OCT NOVL7V r} I � .T ,yAN FEB MAR APR iWIT JUN JUL AUG 7Cf ARK 1 431.7 7266,4 •.J 776,0 668.7 J88.J 471.4 .1.•r•- 374.6 3.71.7 47:1.0 036,5 6J77.d 2 653.7 471.7 r4 304,1 372.V 438.J 441.0 471.J 1J 3.1 328.8 471.6 474,1 :r:►66.7 3 061.0 . 6676 .J 74.1 682.1 656.1 4/717 •7Jl1.'! 310.a'i 34t.5 .17+1■f_ lie,.4 6771.0 4 =.3 !'66."6 �{{ .J 776;.1 682.1 664.3 ; 17,4 J !'S.J Jf.1.C+ 3751.J 476.6 370.1 7147.7 J 657.6 •172.5 i .1 77L.•3 96/.3 572.8 9T►.3 ,i.1.7.1 .'.32.4 S31.1 .40.7 J76. f QJVt.J 6 610.2 47J►3 I .J /76r1 662.1 671.7 487.6 334.7 438.0 -34,V ;43.1 368.6 07J1.'1 I �17J.►, I.rw.7 r 7 ►73 I70.i 664.7 77808 174,7 154.3 525.6 11791 liJ►1 JCL}. 7.147il10 O J48.6 766.E .0 .I 77b1 682.1 671.7 J06.1 404.7 .723.6 331.7 J37.1 J68.8 7t01.3 7 G76.7 76b.6 - .5 796,1 6882.1 671.7 J77.c 463.7 440.1 331.7 J03.7 475.6 It78.0 10 6Z6.4 472.5 ►Y` O,/.JJ.t.c 6►'7,4 077,6 488.. 44J.2 374.6 331►s 543.1 :L9.a 6.33J.7 11 Oii.tr 766►rJ .J' I?'1►i 11is2►1 ATL.7 531P 7 05i.1 12•1-2 332.'7 -1147.1 .377,E 7i136.0 It 611.1 706.6 y '{ j i.j� 77 �Q.1 682.1 671.7 7 ►6 J-l4.3 712.l.6 38397 5'13.1 47, 0.3 7-73.1 1S Jl6.3 6►�'J.O + ..! ►7,�7�.1, 002.1 071.7 7.7 ;jWt Jf J.O J17.1 J4.t.i J.7 C.O 7 :J'i. i l4 6=6.5 766►+] 776�1 682.1 IT7ii.7 .1.74.7 i21.•7 J2,i.r} ,11.I.i 1r1.7.1 16n.n innJ.n 1J 6ills 766."0 776.V 660.8 JOQ.r1 ti60.0 JJ►.O 025.6 017►i J4.3,1 431,2 7175.0 16 622.0 611.1 V .J{. 70.1� 683.4 651.7.2 :103.6 .122.7 40; ,3 413,7 043.1 063.8 I020.4 17 627.3 733.8 7 .7 77,6.L 662.i 6J3.7 518.7 3-55.0 525.6 331.2 .16..c 43V.d 7012.3 18 658.72 472.2 .0 40-6 682.1 6L•7.7 401.7 531.•7 525.6 147.•t 75413.1 7,A;.0 6i.3i.6 17 520.11 766.7 .J' 796•.1 681►1 671.7 077.6 354.7 --75.6 511.1 47J.6 J11.v IJLO.J tV 6:7.7 472.2 7' 576.2 663.J 076.1 481.7 35S.2 .1' .7 3.-14.3 J5+8.7 023.7 2,1 6:0-1 4i71.7 �' .�3I ;n04.1 391.7 439.3 366.3 401.1 33-4.7, 1311.i i7$.i3 467, i 77i7;.33 G[ 447.7 472.3 ( .O' 15, Jv.4.3 371.7 430.4 360.4 302.7 3.1s.7 325.5 043.1 J68.6 J527.6 23 JDH.7 ►00.0 i I /76.1 682.1 671.7 .777.6 5j 4-a J2:;,6 517.1 543.1 JOQ.p 7702.J :4 503.6 74J.s % ►.5 776.1 682.1 634.J 484.7 35J.0 3A2.0 3.2.6 312.7 :l67.- 6a:17. � LS 6OJJ.1 472.1 ..~i ..� Z04.2 372.0 J37,6 ;62.3 5J•Z.1 7.14.4 371.3 471.4 5773.2 "t6 01G. V y7i.7 ✓ql . 04.3 372.2 4t39.6 366.4 i,61.! JZJ.4 517,1 -543. L 173. J 074;. V 7 27 JSC.a 7534 J 780.7 663.6 J77.7 478.3 3Z .J 320.0 .42- 1 J43.1 J..7.3 6P76.3 28 65,160 472:2 47 J574■ 7 372 6-l1.4 510.8 35.l+? 51J.6 J17.L •1id.1 4:1f .1 27 607.7 734.;, .j 776.1 652.1 671►7 077,0 430.3 3w14,7 331.7 ti7J.V % 3.1 7077.6 30 6:13.= 4l2.1 wl1 4 J44.3 372.1 438.7 4A6.8 476.7 407.7 J01.4 J32,3 443.8 57i0.7 31 662.0 r74.5 .�J � . 1w7Q►1 631.1 071.7 J07.4 3/1.6 J22■4 Ji7.1 543.1 JG0.7 1361.0 32 621.0 766."o I 1 .i;r I 776.1 662.1 671.7 04.0 356.4 3.Z.0 44F+.6 543.1 066.6 7274..3 AVE 610.1 6334,E I i .3 i 716.4 60.3 613.2 507.0 '4J.V 427.'1, '104►7 .o17,7 509.0 6772.7 OCT NOV, 677 .0 166. i I'. JAN FEB HAR AFR MAY Jun JUL AUG SEEP 776:1 o32.1 671.7 n77.6 151.1 520,6 517.L 1133.1 756�,"6 7770.7 mumftwm.�-j a� all ..a .wire mr. al...,.ac ap-- opmov !i MF� MOM MF� W� AW� mmpw wry � PRE-FRGJECT FLOW AT GGL$ CREEK (Cra) OCT NOV D- C JAN FEB MAR APR MAY jUN .IUL AUG SE y r ww ./. ww..� w+.. i 6•].s]J-V 2J83.V 1 t*4 .�, SVI/.V 7,9.4 728.'I A►',.V 11-J1V.V 17GVV.V 22600,0 1788'I-V 8301.V 2 3846.0 1a40i.V 110 .0. 70V►►7 620.0 140r0 1611.0 111l7V►V 2V7757►V itr17V.V 17a/V►V 21240.0 .] JJI1-V tli4►V 17V -V 10V.7.0 1V5lV.V G40►0 7tt�.V 5417.0 3hc370,1 26.70,-V 20728-01 14480-0 3202,0 3477 -V i27rt2L 1100-0 •320.0 820 -V lan1rJw .V 17270 *0 27340 .1 LVLVV.0 LV61V.V 1J270.0 .5604.0 2100.0 15w 1300.0 1000.0 160.0 1233.0 17?60.0 2Z250.0 20360.0 26100-0 12 7 10.0 Q 5770.0 2760.0 1444 .V 1174.4 14r0-t 11on, .4 Vm 7317.0 2?a64 n+W-V wJ+.Aw.14t74.V 3V■V780.V 7/1.V74V.V 7JV.V 1/660.V3334 I 4751-Y 1700-0 10.0 71470►1 24530.0 18730.0 a JCVQ.V ]VJV.V 214 v .1700iV 1500►0 1200►0 1--,o 17JV.0 30160.0 23310.0 M40.0 17400-0 7 3112.0 3?5.0 326►0 176J►V 1307.0 1146.0 1J.7►0 12701►0 2^.l700.0 22880.0 2 2r40.0 IJJV.V 26 ili: '144.1 5+�►.-17pw.'i4V 1J7VG, L+3LWV LJV14.V71180.0 167710r0 LV 49t1.V 2100-0 IV i64JoO 1452.0 1177.4 1300.0 1.•IQV.V 1.,JJV-V tt7[V-L- LJJ7V.V I05iV.V65;8.0 2550-0 12 1774.V 3000-0 IV 24J2.0 1754.0 181060 LbV-V 17760-0 27'JV.V 24570.V 22100-0 13370.V 13 .7716.V 2700.0 0 VV►V !23w0.0 43270.0 20830-0 23J50.0 1J870-0 A 1'f 6723.0 280I010 top fu 'ioiliJ.v 1J00 .V AV VS!-V OaY-V 17030.0 26000.0 34400-0 2.7010a0 12320a0 .. I AJ O■•'17.V 22aV.V 1'9 j'w iV`1G.N 786.V %1.7.V l4d.'1 '13V/-•1 JV1OV--1 L%7J-I-V 16ft1'la it 7J11.V 11 +... w 16 6271.0 2777.0 12 jV 764.0 660.0 700.0 1360.0 12-770.0 75720.0 27S4V-N t7i20-0 173J0-0 17 ILVJ.-V 2076Ito V 1400iV 1300.0 1300.0 17IJ.V 764J.V 327J0.0 17060.0 21830-0 111JJ-0 16 ;163.0 1600:0► V '1J00.0 1400.0 1200.0 1167.0 1:1460.0 t7510.0 2680040 32i2V.V i6870.0 17 4700.0 2303.0 ^4y V 1381.0 17oo.V 1700I.0 1710.0 1616V.0 31JJV.V 26420.0 11170.0 8616.0 20 1272.iJ 1706.0 15 G Iona.', 7-2.', F733-'i 1022.0 7852.0 20523.4 1$373.0 16372.0 7776.0 h 21 3124.i, i21.J►i! pv wawc4.+� 768.0 770.8 1i,$4.v i1-soi►-v ion+a4-i► 22660.4 17780.0 7i: i.0 22 J268-0 34VI.V i.0 1442-0 #036.0 7 0,0 10612.0 3714J.0 32730.0 2.3750.0 31710.0 14440-0 23 :J64►.V 3093.V V. LLJ71V 4028.0 1923.0 1110.0 21670.0 3443040 22770.0 17270.0 12400 V 24 4826.V 22J3-V 14' �V 120000 1200.0 1000►0 1V27-V 8233.0 27900.0 1C2.IV,0 20270.0 7074.0 w.+ iJ 3►.7.7.V 1JLJ►V 1V J�V +714.0 117-1 It`l ..l 772-0 7L41?V.4 119I0.4► 16704.0 1622'I.0 122.r5-0 26 3737.0 1700-0 i{yy1i1 !4V 1016.0 14/1.0 1400.0 1J73.0 1,-dJV.0 32310.0 27120.0 180?0,0 16310-0 27 7737.0 i773.0 l �i.V 714.0 7.AV►V 700►0 1373*0 12620.0 24360,0 16740 -0 17600-0 6601-0 28 3Q74.0 2650►0 L 10 1627.0 i614.V 1JVV.V 1680.0 12600.0 37770.0 22070-0 17240.0 12640 .0 27 75 t.V -7J2J.V 21 Y4 2zl27.4 16618.0 taOJ.V t702►V lt7.l'1.i, ;7-J34.0 21020,0 16370-'1 ;Au7-0 30 4907.0 2330.0 W V '1.7>74 1226.0 1200.0 14J0.0 13370.0 246?0.0 23FrV.1 20460.0 10II0.0 31 7.711.0 4!72.0 A V '1748.0 146n.0 1400-0 16;0-4 l2VGt1-N r7'Ig4.0 32660.0 207a4►0 132S-3.0 32 772i.0 3766.0 1 •140.,6 1230.6 1114.3 047..J 13316.7 161433.0 32346.0 3853$.8 13171-1 i AVE 5770.6 2J11.1 2 i14'74.1 1247.1 11233.7 1361.7 13240.0 27814.7 24445.1 22228.1 13320-7 ij i a u f VJ I -f fLOj EC i F- LUS 07 F G1-0 CREEK 1 US) ) ` I r • _ GO IN, 0v , L.� , J11H FEB HAR APR liA �I JVtr JUL HVu SE 1 7177.2 10734.4 l.d .. 116JV■3 11,650.3 10737.3 886:.3 7.172.6 7324■3 7178.7 7206.1 12000,0 7300►0 L 67'1;.-1 7141.1 O it ', ,•7471n� .6 C.1r .r4.0 t17:71.7 M-9.6 n78'1.5 4503.1 6703.4 t2W.0 300.0 3 6637.E i045i.i i , 1:c6.7 1,1687.6'11211.6 11160.6 M7.6 7522.8 6173.0 777:F.3 :7i'I.:r 12,000.0 7300.0 4 73V7.1 116ZO.3 1 '. 7763.0 6217.6 1 M3,3 12067.7 6776.1 12000,0 7300.0 r J 7!J1.1 7241.7 1 Y p3 1J31J.4 10777.0 0717.3 7"037.6 11070.4 7Vn:,.4 r• 71Jo.4 12000.0 7300.0 O 7206.5 1372.2 1 �4 #17k-4 11311.0 1VJ36.0 7602.E 7151.2 10161.0 6674.3 12000.0 10444.4 7 7732.7 ii1233.a 1 1 ii11620i, 1L949.p 7H17.,1 ►1Z2.9 1L.1171..J it/.7 I!OaioC !3.7 61i.t 163.374.V + 3 0767.7 11673.8 1 1 �1 11731.7 11278.3 10458.6 8833.8 0.•..F6.0 1141J,3 7132.1 120�,V.v 10172.q 7 10765.0 11648.6 1 I 1 11%7►..] 413V1.7 1038266 7y6J.4 7009.2 7227.2 6782.1 12000.0 73V0.V 10 7116.3 7230.1 .6 I.7713■1 11286.6 7117.3 M-Z .O 10727.E S422.7 7747.4 11763.3 14603.0 11 7J37.7 11077*0 i% +!■% #7 1ipV4■7 11L6V.1 10437.3 9^06.2 10230.7 6W6.J 264.7 1:000.0 7300.0 12 7203.6 10147.3 13 204Z,E 11452,3 106044,2 7707.3 10900.2 1LC. J.r S;76,1 !2000.0 7500,0 0 ■Y73.6 10062.7 li �7 1701.4 11679-j 11234.2 10432.7 717J.0 7353.5 12778.0 7031.7 177l.J 1591C..0 14 7704.7 11332.6 12 .0 11281.0 10356.3 83332,7 10911.1 11714■1 11377.6 MOM 11JJ0.7 ^ ��- 15 7430■7 U 473,0 l2 .I }11171,3 3802.3 7347.6 6000.0 1330r1■2 736,6.2 12000.0 7300.0 16 715,7 7175.6 12 11638.7 01 L0977. Q 7V-37.7 124V'1.0 106 11.J 17 10106.7 11321,6 it 7747.7 6371.E 7117.0 12977►5 %,]0 .J 1200.0 730V.V 19 6731,1 7212,7 O 1,0 7677.4 113l7■6 7337.3 7767.0" 10066.6 113J4.1 784193 13171.E 16670,0 17 76s01,7 114L3.0 16 .1 11lJ1.6 '1300.7 10510.0 7018,6 10652.1 12076.0 10471.8 17000.0 7300.0 i 70 4667,E 7178.6 6 i3O 6777.6 10701,3 D7/1:a3 7624,6 OiS•i"•6•.• 70'73.7 6464,0 122000.0 3300.0 21 67214l 7212.3 7 . ► ' 7607 . 1 A613, 7 674.7+•1 65777,8 6746. V 7 760.+I 70 1L, } '1 734V ■0 LE 7515.1 7724.7 0 .L 7677i1 E6JJ.7 6747.7 J7J3.4 6561.? 867J.Z 67-50,4 12000.0 10VJ2.6 ■ L.7 8629,7 11464.7 121 11867,7 11406■1 1N,]60.7 7JJO,O 12300.0 ww.w a1tP17■R 7'iOL►0 LLVVV.O 7300.0 24 O4J.7.d 1103091 11.4 1-4 .1 116174 11214.1 7027.3 7627,9 6020.7 OLIO.► 6464■0 SLVVVn000 .O 73V0sV 23 6820.4 7103,7 qf•V. 7423.7 64J7,3 6101.6 7.174.E 1411.5 7111.1 6306.7 12000.0 7300.0 7 226 74.17.7 7200 1 9 3.1 7634.7 6677.7 661L1. 1 d7h7.,1 i•1n7,'1 117Li,•1 i0'i•77.6 U 17uy.0 t► M ,6 11216.8 12 Li14'fV.V t+�727 V7t7.6 7VS7..i %7►j.4 7867.7 6011.2 �1'*O'1.0 12000.01.7VV.V 66 7001.4 7Ji.i, 6 6 ;3 77 V7.6 _ 6667. 1 7L14 • O '""'� 6tflt+6 6143.J •• 1tJ7i.0 7626,J lc"0V0.V 7300.0 I 17 13J6.■ 11;77,.�7 12 R A pi.; 1161006 11340,4 10.11J.J 7473.J 0711E.'1 [aL 11,► 666i:.3 1 AAA itVVV.O 7300 .0 3V ■ F7V.0 ►437■1 7082.1 4486.6 4iMi 7365.5 i1.122.2 82-13. J 1VV113.2 11:'30i►..► 73'1'I.0 .^71 7V76.2 7128,6 122. 111687.6 11120.6 14430.E 73J7,J 6721.7 12.V0.7 11846.2 12000.0 7300.0 ■ 32 6334.0 ii632.7 12 7:4 11►.17.71 11269.2 1-14119,1 8774.4 91:0.2 ►7aC0*0/ 67 r,V.7 2t1 H1.[ 13171.1 � is AVE 7764,7 7630.E 11; 0' 100?6.7 10170-7 7265.E SIC'u.4 6706.3 7862.7 8387.3 12633,5 10310.3 •t}'..: '1�. yr. VATS-J*. CASE C 12i�' : r.,tt: ". �h • It .91j0.0 333CJ C10 "1570000.0 1C'SO.. -.ter •,�,,; 050.13 240000.0 ! 1` , .0 ��:•_,r 20 ,._ rr��0•f. ?ir ei �._. r-000.,1 t i�.r -.r. s�( 4 -l.titi _lr'CC510.7 „GO.ti :�=.��.is -1000000.0 H 118Gr` -11" -1.0 -1000000.-. '34000.:+ MAX. S f OF :AGE = 9654000,0 1092000 . ci AiN. LTOf':,GC - 5733000.0 :41 DC 29 SEQ 62 . L ASE C 120 ' Dltsowa 4p WkTA,%L ►• "aa1 q.ed 114dr=la9"i R2 a-Uli e-o-a► c • ❑esAa►..d tow. less sw►o11 1•ydre>. �raduC�loA MAXIMUM P.H.9 = V191 ,0 START 1JSEL=:135• C' NEL=1455.0 P"AX% .10.00E EA' w.X1:,U1 r'.I:.0 - 1-3'S3.2 START USE_ =1,55.E ,JEL- JS• -0 PMA0.60000Ei:=1- MONTHLY ;LATER LEVEL 2183 5 2165.5 :14C5.A0 '125.0 ?106,A0A 2071.0 _,0 8.G=O'ry2.0 2120.0 2150.101 21G80./0{ 2i?C00.0 1455.0 :455.: 14515.0 .'�555-0 14 5-0 11vt-13 14-5-Q .455.0 14C5.0 Ia55.0 ihSJ.� 14JJ.i i1ON NLY FLOW I TRITPI;TIQU 1.0 1.o 1.0 1.) 1.0 ;.^ l.C, 9 t19 0.7 1.] 1.0 1.0 1.0 1.0 1.:' 1.0 I.i1 1.3 1.0 1.0 9.0 0.0 0.0 MONTHLY FLC+J ':EOD 2^40.0 1000.0 :t:00.0 1000.0 1D00.0 1000.0 1000.0 6000.0 600.0 E484." 12000.0 0300•^ # (EARS OF SIMULf+TICS? = 712 TER - 0.r 100 101P* F?-.0 1'OR 0. 44C riC114 T H ti POIJER It! hAN,r, !.� J�iitt �: 'f•1:Ei J{s0-5;�. } `��r: '���'•!!i�l�} � �.,r�j'•'i�sl ;•. :t�,.,�L�r IN'EfG / t 3 7}, i NNW i i i i i 4 i 1• i �.. J• i i J' 1, 1! wATww4A mLoV6 CXK"OHI UPPER F•ES'ERVOIR 1GLER RESERVOIR r' ;- . r;. FLOW HEAD POWER ENERGY F.H,FLOU HEAL' F'OUER ENERGY TOTAL E';EFtvY (OWli' CFS FT mu r'.JH CFS FT mu GJH PM USED nT r r 123.0 � 499.4 c 371.., 751$.7 r 7 0 .5 372 .._�.h _ 239 . tJr:• '035.9 713.7 466.0 335.5 9368.3 605.0 408.4 194.1 629. 61d_9.9 10611.0' 699.9 536.4 399.1 10860,5 605.0 473.5 35".3 751.4 750.9 683.5 -8L.5 362.0 10055.1 605,0 438.4 1-6.1 698.1 63?.S Y4_-ll., 567.3 456.8 307.0 9653.4 605.0 420.9 283•S 589.E• 589.1 11.1-F SS"77.5 651 -'_ 41801 311.1 9041.6 605.0 394.) 29Z-3 604.7 603.6 AFT '832.11 635.L 359.2 258.6 8093.9 04.7 352.2 253..5 512.3 51!16 5S28.2 633.4 266.3 198.1 7693.4 604.2 335.0 24?.2 447.'. 447.0 54{-:•_. 656.1 255.6 184.0 8345.1 a44,6 363.6 261.E 445. 445.E L;O.r 247." 184.4 7349.7 6^4.5' 770.4 5'72.7 4S3.i 3``".. �1t 4'ry.7 �J rO° r L sc t.ry °'G. ` 33v.7 ?37.f ra•• ..,_-' �rL �qp 4. .4 4 9065.14 r•�,." � �. ^n�.c r �'fi5.> r • 91.1.4 6676.2 Aft E Bal R GWH 1 OCT -eiw MAY-SEP ANNUAL E,Z_A' 4322.5 :293 .: 6676.2 33510.9 2131.3 94e21 ENERGY (GWH) OC7 Nov DEC JAN FEI' MAR APR MAY Jun JUL '"Uri S`F. 687.5 589.1 403.6 511.E 447.0 445.6 422.3 4=6.9 Rr 62a.. 4 72, 551.0 504.7 391.9 4_£.4 1La.4 354.0 439. •_8S W�� !ll COS? E::�:.Ell ON REGRESSION R}IRLYS!S _ - 7 • ° I5 +L�`r�: F:2 0.1259790 R3 = 13274 . T rZESEI:T WORTh CrS1 {1t10 45) = 7140.4 AiRlUlA1 6v76.: .4a7,-, 1'1Ft-00 :iF , f1C'T floe DEC .IAN FEP HAR OR MA't Jul .`t;L Aug 5FF i 4?l3.9 .6 1168.9 215,1 641.7 5t".: 63?.1 365`..^ 1647.2.1 19193.4 2613,E :. i_v9.1 110�'.3 ?U ,2 806.0 673,0 G14.8 43'5?.. ;1647.0 1351'�•4 .' 1"736.5 f7E.' +,�?nc,5 9 2170.1 1501.0 1274.5 841.0 71t•r' 8033.9 4216.5 '.-„'i ;'lih.g ]" i 2'35. 7 2756.8 1281 , 2 M.9 611. 7 670.7 13$�! , 0 '' 50'31, 2 ?! 449 , P 1735`.. 3 i i -.3 -... 9 i5'?"i.6 1193'i 1087.3 p A,'In � 1. ti _ 6 3859.2 2051.1 1549.5 1388.3 1050.c 9E6.1 SW-.8 671°.1 24M.4 237V.r ?_1 7 ,- - 7 4 3 !71 .1 1038.6 216.9 754.2 $"3.4 718.3 1295? 3 1,7171,'_ 2T331.31707.0 13 w.0 1189.0 9 2,,. 101. 3 v. `?IS,*• 2259.5 141041. 973.5 1265.4 -M57.8 :'��. _. � 1052.I ',-4-. 5c-a 949. ]:.7 ?:r, 1^1!i•t ,[}�n],r ^{i4o 7-r1' - _1 _ 2213.: E�'2.': !,,+t.; 11s•? ,61.. 1:��:. 3:;7.� �. :^`0L.1 ..�•- . 1%7C?. C• 13e35., ..71 1?5•10% 111677 •�� '� -C i. .y•�3��q er,• " it 4�3 .•C, 2263.4 ;760.4 16.00.9 1257.4 1t76.9 14r.4 1111.5 36'-17. • 2344',7 1 s•' f7_4:' ..L0 i =IS%V: 170.9 1303.? 1104.7 88:.h 776,t• :5211S'._' f�5�,3.4 20,,•'1_.7.; 21�i1;,•! '+ C 5-5 p a A 6 _ :l'��,7 852,0 181,; J.J. .',i.� 3J?V .'�' •�'.$4f .n '00e�.$ !•"•'+'ri,-:r24,2 4757.. 236$.2 10?0.3 863.0 2 772.7 e07 e 5 1,. - . .3 1�.4 1 t�i=, til_13.t _3�:1,,.9 i7: , .{ryyc 3 1 3.6 1060.4 924, 1??8.3 704,1 2-9'9.b 16153. .'770 4 a•1 ] �' ?� __ `1•Q 1:'?'.2 1121,E 1102.2 1031.3 389.0 V49.7 !'c55„ 2]?1'1. 2i91J7.3 6^.� 19 4019.'; '?2t.3 1704.2 1617,6 15G0.4 1540.4 1576.7 1=6 p `5 ,;4.: 2'Dr.8 14147.i 7153.6 �f �447.0 15!7,0 1Q73.0 884.0 748.0 636.0 350.0 7942.0 1" 09,f3 1,371.0 ]a ' .G -'ri.0 24ON.1 1020.9 709.3 636.2 602.1 624.1 986,4 9536.4 14399.E 18410.1 1:•:!._,.F '�24.1 :? P68.0 2496.4 168'.4 1097.1 777.4 717.1 013,7 Z857.2 '701�.` 21126.4 ?744E,3 12188.9 258.'.0 195:•4 1670,9 1491.4 1366.0 1305.4 15973.1 _7429".'1 19920.3 1': c 5 ir•a:g.-, -4 43%-2 1971.? 124E-5 1031.5 1000.2 513.9 914-1 72K.0 23859.3 16351.1 71056.5 1354.7 931.6 786.4 689.9 6' 27, 3 871.? 12389.0 147130.6 15971. 9 20 Ti131i.Q 14-1 .4 1276.7 1215.8 1110.3 1041.4 1211.2 11672.2 26,689..'. 23430.4 f5,26,6 13C•75.3 2." 5579.1 164].1 876.2 757,8 743.2 .IM? 1359.8 8938.8 19994.r 17015.3 t83a's•5 5711.5 28 '_''i.73.5 1924.7 1697.5 1348.7 1202.9 1110.1 1203.4 U69.4 31352.8 !M".3 ] 5n7.3 1'':•:3.1 44_5,3 1979.7 1577.9 1267.? 1254-7 1408.4 11231.5 f7.:'.: 18?35.2 's'73 :714.9 1312.6 1136.8 1055.4 10112 1317.9 13369.3 2:904.'' S•39I1.' 't :.:':•.' 9i 95.? _1 5150.0 '_'525.4) 2032.0 1470.0 1233.0 1177.0 1404.0 17140,0 2?40)., `674C.0 IS,'- .4 11000.^ !- 64M:, 3257.0 1385.0 1147.3 971.0 339.0 1153.0 10406.0 17017.C. 2183 40.0 .435.1i 12C2A.0 _ .•:�, •��22._ _,;«•.1 1a1e.8 ]t65,° 983.3 vi.. 1099.7 1n3rd.7 �'3C2's.' '.r,rt,0.1 if ,n 5 3�'7�'z.G un+,v F-PHCUSE FLOU ' CFS ) OCT i OI., b E C, JAN FEE MAP APR MAI J;3il JUL :',1Cs rec I :`.; 11450.1 105?5.6 10115.3 9421.5 8497.3 444.q' 1;Of.`_", .3105.9 1.,-,741 }.`.'9).6 7928.5 i c 7333.6 3 7 1 2 y c T n c-" 1 .ti 5r 7*i,4 1::�3k.3 .. �:. S.a : �.i.r.a 7-t6. 4,�0.4 0.4.c a��4.; it .:; ZJi4.4 .. ,.:i ., ro ` .r.1p 7 c? . •7 .4A n •s r c,r� "G r•. T a _ . .kl 1.6 ',14.7 1C'_ 4.0 '10120.6 S, J� 6524.4 499f:.3 .•31n./ J1. .1�. • -'a•• 4 10910.9 10148.3 11449.9 10615.3 10113.: 443?. E49'.`3 ST?7.' S'"y c,7i.'7 11" , . I1.8 5 11032.7 73M0 11490.6 10645.1 10152,4 9445.2 7676.8 5415.0 5384.: 3791.7 724,3.z= 41-J1.5 1021'&,9 7371.5 114,17.3 10533,1 10074.3 �414.. 9484.7 45:.2 . t S808- ",03.3 . ' '17 3 2_.M C 02.2 ? N87 414r 9 r7, 1,� 5087." 1`--° = 11:--' O. td _ � 1�467. lOt�17,9 141 3,$.'s v �. 8 1016:.0 :1404.5 10549.3 10045,C 1333,5 84c�9.9 64u''.i' w'3;. ; 5701.1 sC"w2-C, E_•-'1.9 ? $0'74,6 10013.2 11167.2 10461.9 14008,3 9Y": 3 1083.5 6E53-1 55-:3•3 5711.3 5■[E5A7.1 4711.8 11467.5 10609.1 10110.1 940J..9 r•575.4 4079. 43ti3,1 5015.E 4621.E 0-5 .1 1136?,5 10506.3 1003644133 4.11 32 3.3 _.132 3.4 6737 : 435 5.; 3:.r$.. 'fir 2 t4 mac. �12^ • v 7 S 25 z C 27 u 2 i 4[ 2 l�. la. 1 .� ■1 0 ^�rcJs r c•i :�•1 $�.7 •� 60 4i4 J •.•� ..� -= 1� 1,� _. 13 1 10224.4 11431,7 10557.9 100462.4 13.41.2 8421,8 200 _ 4999.s. a870.t 16-1 �.5 ,..46.2 14 :35°1n,2300.0 1'433.6 10547.3 10030,9 ':�3666.'' 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Ir1310 I=.4$.d 1307.^ G0 .n n q � ,r• � + `._.{' _ r�:r• r• '2Or) ,0 1945.0 1452." 1197.0 130+5.4A 1`_-3fi0.C. :°5?..:' 3?ge0.r:' 237C.3.1, _=510 1 in[f,R 264410 2452.0 17.r.4.0 i2n1ti h 2__`_.0 �73ya%.r'=C.�=.. ^4570.0 .1500.0 fa:":.: �['r. 2:•::1 r .{`+'31:,. _ `3ti.': ~3^ _ 7 C. .'� 5•--•. .::1"..� 3Si0 tt'::.[' iriVnl'_ -.. S.•.;y (. 1`630.0 2z01s:.. 31-100' :7.'..' r. : ...•.ti• ,._..i•,i� !•1• a,., 1'4i ] 9S,•i '= .7 .+. 43.. +; _ 90,..=2954. !; -_.... '''°?00.0 131-10.. 140 27940.0 21120.1 1?3't �-. •`c '_,,IG_{3 1400.0 1T..00.f1 1 30. n 1775.0 4 6ac .32Cf .! 1? .j _IC- ,. :c_ :qOr=.0 1=00.0 1400•] '.2�:'=•0 1167.0 151?'7,:• 2951000 ?�'G0 32c'.4.'] 1:e70.4 •a: n - rr stiu 1'4,1.0 .sr 001►a '.'�VL�.4 1910.{+ 1al8+J.{' 315'_O.t� _c. �24.0 1. 3,7fj.G 9?lE•.t• 19&It'.`r !330.0 t[.86,0 9221+:p 333.0 1022.0 9552.: . '523.0 1a093.':' 16:12.0 z- _ A. .';24.0 1217 £66.0 824.0 768.0 776,0 1090.0 1138fi,• 1800.0 22660.0 1°9°G,': ?1:1.. ?� 0''.0 2290.0 1442.4 1036.0 950.0 1082." 3745.6 3-2930.C' 23950.0 319'10.1 14440.6' +3 5,+47.i} 3093.0 2510.4 2239.0 2028.0 1823.0 1710.0 21W4.0.34430.0 22770.0 JF2°0.., 12400.0 24 1126,. 2251-t 146S.0 1200.0 1200.0 1000.0 027.0 8235.0 27800-0 18250.0 2^2i4.:' ?0?4.0 2` ;v3.r, t5_•3.0 1034.0 874.0 777.0 724.0 ?'?2.0 16180.0 178?0•18800.0 1 524.0 122510.0 'c 39." 1700,C 1603.0 1516.0 1471,0 1400.0 1593.0 15350.0 32310.0 27720.0 19490.0 167;"1.0 2, ";°. 1993.0 148I.0 974.0 950 0 900.0 1373.0 12620.0 2435'?.r- 18740.0 19C r,C 081. :8 3-174. 2650.0 2403.0 1829.0 1619.0 1500.0 1590.0 1:'d64.0 37'7:. 22874.0 15z4+:. :?v�0.0 7r71.Q 2525.0 2589.0 2029,0 1668.0 11.05.0 1702.0 11910.0 19450.0 21020.0 1t,90 ,0 3tV.4 0 4 ry'.:' 25354 1591.3--1397,0 12e6,0 1200,0 1450.0 13870.A 28880.1 1-0.60.0 1077t -'^ 7'-•1:.C= 410 2416.4 t'48,0 1466.0 14'JU.t= 1670.0 12060.0 2.90°4." 32660-0 2496�-O !3140,L ' 7 t r q T 7 i 1 .7 32 .,7311 4..3.6 1�35.6 1t1•�,v laL7.5 13316. $ a .J 000.0 '2_4 13.7..1 tee • 8e10n 2 1474.1 ti 1, S l 7 C 1 "24 a A_ 24 C '72221[[.. _ j _2• ■�l'7.r 1L��. 1. _3. 134+./ 1J'R^•s� _''81 .• s.444�11 L«�G•1 ��� • I :`I_�i "o"JECT FLOWS AT GOLD CREEK (4F^2) 1101i IsEC JAN FEB MAR APR MAY JUN JUL IXIG SEF 7 1 1 11128, : 10807 - S 10261 - S 723 - 4 W7. 2 7325.5 71'74. rl 720; .5 12rjoo.0 71 Z4 6122 3 485.6 7371.2 757S, .5 7339.4 7764. 6?7t*,. 4 7t. 5 11976." I n899. 5 10219. 6 w. `5?5, 0 8640.5 6199.4 1 M9. 7 9736.9 0 o 5 11SLS.? 108?1.4 10324,c 95e.S.9 8730.8 10530.5 3 4 9 . 7 p16.4 12 :19-5.1 11900.3 10857.3 10349.3 9587.0 7977.9 1o99e.2 12 -3 0 I 8f-80.4 I I 926 - 3 15998.8 10423.8 " i -2 2" . 6 E743.9 -150.! ' F IAIPAI.8 7,1S 7 C,57 C- 4 1 7 1-1726.6 10781.0 1031714 9611.' Vl.4 102-52. 1 "34, .1939.5 I0E7e.-3 10356.8 7S 2i 4.p !DS6-7 0" ' .4 5 2. 2 1 1 6 8_98.i 10941.3 102 7 3 - wl NQ6.8 35511.1 .5 105V. 6 1046e.{ Nw�7 7929, 9324- 4 16.0 17 1 13 9.7 2 1 C ? cq'C% 7 1034T." "70-3 2-13.1 ?47:.2 1042 1 1713 :47.6 11 1- S 4 . 724 - - I _2 74 k 6-r�rn2 S '1725 :L34L I C - - I '021r 6-.z i!: - 3 P�6ml'm .9 '795 6. 7 1 t 4 10 8? Z 030.9 I_42,3 8S45.7 7341.-1 1_'146,P_ 7711.1 4- _H S' C2 5 107TIA 919r.7 P!T7.z 1j58z.3 I 11, "1 Sl 4 . 7 109 -,k 5 10377.4 0645.9 972C? 901.6 7 10336,5 '402,6 S .-' 9,11 7 1 A0.7 .4 3202.7 7613,4 6619.9 67150.7 7280.7 S301," 790.2 785!,! ?340.0 6 851 " - 5 7708.8 6666,3 67S2.6 596t7 7.1 J so-,; eell.4 6165.4 1 t. -A A 3TAr, ti S' - 1 '..'037,1 IOVO. 3 9715.2 V63,8 11617. S' I `!-5 1. -ZL73.6 135511.E 1241'-15.0 7 1L,73.410777.4 -,0296.2 53. e e626.9 I C1210 r Z4e4.0 12:,*0. 5 K 420, 9 7.234.6 SL 2% A714.4 2 6 8 '631.2 o694.4 "I 1 9 ?-AA 055". c' 11676.3 10907.1 14I00.0 I J 87VS BeS0.1 15 A4S4.0 1 ' 8505-1 " 72C.6 8253.7 'U-338.6 74C2.4 3190,2 115712.- 3i07. 0 1 "ll 0 Dm!oC,,e ;.4 9 4 cl' 7 11956,0 109S3,6 10405.9 ?642.2 8470,3 Soso. ssn' E. 6177.9 noo.0 w. 24�1.7' 203 �ci . A %7'4 7�0-, 3 S' c 5 rY 22 A 7 '1 . 4 C, - I - . I I- . 6507.7 12600.. 0 14SI5'1 1C'854'9 10315.9 Q w-p 10, 0729, 6 8?24.1 11626.- 11053. 1 12 0 . v'- U8, 4 1006j.6 ! P,315.5 7875.' 775': - ?306,0 2IH5.1 !T' 8108,6 8747�(, 0642.6 12131.7 10581r.8 5U5ITHA REP YATAHA 119t) 1)1: 1455 CASE C 120 : R?I EL STOR66L 1900.0 255000040 1950.0 3330000.0 2000.0 4250000.0 2050.0 5340000. 0 2100.0 6650000.0 21:30.0 H18?999.5 2200.0 1002000040 2250.0 12210000.0 -1,0 -100000010 -1.0 -104)0000.0 -1.0 -100000010 MAX, STORAOF = 9.5:i4()00.0 MIR, STORAGE == 5733000.0 F.i_ 5TBRASF 925.0 0,0 1000.0 7501).0 1050t() 25000,0 1150.0 35040.0 1200.0 132'000.0 1250.0 k9i400.0 J300.0 29 000,0 1350.0 4,56 )00.0 1400.0 7P7000.0 1450.0 1 <)401)00.0 1500.0 1484000, 0 1072000.0 74100(1,0 C&%i-m c uSr,4 t+ k I b..) , �- (t M-i a tit eTA,GuQE A cc eoTM.1 CE,) pC. 5 x3 $z- MAXIMUM P.M.(? 19391,0 START VSF I.r"1185. 0 TNE1.:-1455. 0 I rill)::= , .10) 00` +07 MAXIMUM P.14,F) _= 13763.2 START WSi:l-::1455,I) Moo) PMA,(::.60001)F+06 HORTHLY WATER LEVEL 2185.0 2170.0 2150.0 2130.0 2112.0 2095.0 208(1,0 20YMi 2125.0 2160.0 2180,0 21 14'i'.i,+) 14'.i5,i) ?.4'i'i.0 1455.1) 115:i,1) 141i5,1) 14, i'i,�) 14'.i5,)] 11'5 14sl,o 1455,0 14 MOPTHLY FLOW DISTRIBUTION 1.0 1.0 1.0 1.0 1.0 1.0 1,{) 0.T 0.9 0.8 0.8 Ito 1.0 1.0 1.0 1.D 1.0 110 1.0 1.0 0.0 0.0 MONTHLY FLOW REDD 2000.0 1000.0 1000,0 1[100.0 1000.0 1000,0 1(Poo.0 000.0 000.0 6484�0 12000.0 93 4 PEARS OF STMULATION = 32 TER = 0.0100 DEMAND FACTOR 0.460 MOHTr11_)' PONF'R DEMAND 0.580511F.+06 0.6;8012v+06 0.74;)200E+06 0,6H1113)"406 0.5R'i12YFf06 0.'i9?4.14E+06 0,:i1121)/E,fo6 1).47613;11:I1)!: 1).A471'4.1,19t)4r:A-06 0,4,S-l-A')' •},)6 0,4:40106F+06 FLOW PEMAND FATIJIRF : iF•-lk 14lOTH 6 � ti• � � 1•- --r•--�- 1• r LOW Dt11AND FAILURE i YEAR 22 MONTH I Fi 7:i'i7,2 [l,[} 342.7.9 {},[l 3127.9 y6132.9 2253.0 UPPFR RESFRVDIR LOWER RFS;ERI[[)IR li TH P- H . FLOW CFS HEAD FT POWEk ENERGY P. H, F LOW H1F All POWER I.N RriY TOTAL FHFRGY i fiWH l 14W OWN CFS FT HW 1,WH > � li[1Jl it ,FD ; OCT NOV 9868-2 722,1 512.1 381,0 7261.1 'i9D.2 309,4 230.2 61112 DEC Y046. 9 J 0891, R 711 , 7 697, 6 465,3 549. 3 -13:i, ! 408,7 9:37R, 0 605.0 4(►A, 0 2^4.4 629.6 .511. 619, ri JA?l [�119'i,1 68�1.4 'ir11.5 373,1 111:36. 1 1[)5:37.4 6ir5, 4 4E::i.:i :36I .2 769.9 769.7 ' FEB 663. , 467,6 314, 2 9948.1 604,4 60:3.6 0a.7 341.3 714.4 713.7 MAR9739.6 RH74. 8 647.: 415.0 3(18, tf 9019.3 6i[3, :i 433.5 393.1 291 , 3 l�4'i,'i 6(s5. 4 APR aP:2 7'i74,3 631.7 :-145,4 2411,7 7918,5 02.7 345.1 292.5 248,4 60113 600.8 MAY JUH 5876,1 `:�38. 8 629.6 6a2.6 266.7 251.1 198.4 7573.8 402,5 329.4 24540 497.1 443.:3 497.1 44:4.48141 Jill. 4747,9 635-6 235.2 1Fi(►, 8 175,0 .1 7107.6 6(14.0 354 , 4 255,2 436, D 135.0 AUG 59-70.0 711.5 305.2 227.1 11141.5 604,11 591,1 10,8 130.5 4011;.5 4(15,3 SEP 7752.0 724.5 405.3 291.0 9410,4 574.4 474.9 3y2,6 2 282,7 5R0.3 y 19, 574,; 611 03 ANN 7986. ;3 679.8 393,3 2R6,9 9048,1 599,4 391,3 2H'i.5 686817 �736, 5 Ei FROY (GWH) OCT-APR MAY-SEP ANNUAL AVERAGE 4426,5 2,110.0 67:16.5 FIRM 3333,0 2021.4 5354.4 (YEAR 22 ) ENERGY OCT NOV IIEC JAH FFR MAR APR (iiWH) MAY JUfd JUL AUi; SFE' ANHUAL AVER 611.2 629.5 769.2 713.7 A05.0 600,8 477,1 443,4 435.8 405.3 51?.2 FIRM 647►1 472.3 551.8 5D4.1 :391,7 438,3 327.8 506.3 67,16,5 YR 22 195-4 . 522,6 "P.H3 41J7.486.Y 7 3:i4,4 PRESENT WORT14 COST BASED AN REfikESSIDR ANAI.YI5 kl =: -0 , 815 i[l54 R2 4: - 0, 1259794 R3 13274.9 PRCCCIJT unwr1 ,+l..tv .�.. R �■ i 43� � 1• #� � i s• � t• i 1• i i i i i i RESERVOIR I INFLOW (CFS) OCT NOV DEC JAN FFR MAR APR MAY JUR J411. Us 5ER 1 4717.7 7083.6 1168.7 1115,1 641.7 569.1 681).1. 186,55,'1 IS432. 1 170 3.4 16713 A 7371).4 2 3299.1 110743 906.2 008.0 6730 619.6 1302.2 11649, 8 18517.9 197H6.6 1647Ft, O 17205,5 3 4 92.9 2170-1 1501.0 1274.5 841.0 735.0 H03.9 4216.13 25773,4 2211[F,9 173156.3 11571.0 4 6285.7 27564B 1281.2 818.9 611.7 67047 131120 15037.2 21469,8 173:i5,:t 16681.6 5 4218.9 1;)99.6 JIB3.B 10137.0 803.1 638.2 942,6 11696,Et 19476-7 16983.6 20420,E 9IA5.5 6 3H59.2 2():iI,1 1549.5 1388.3 050,5 13HA,1 941),11 67IR,1 248111.4 237117,9 23537.0 1.3447,8 7 4)02,3 1588.1 1038-A 816.9 754.8 6,94,4 718.3 12953,3 ?7171,H 215B31.3 19153,4 13194,4 8 4208.0 2276.6 1707.0 1373.0 1189,0 935►0 945.1 10176,2 25275,0 19948,9 173174i 1484111 9 6034.9 2935.9 2258.5 1480►6 1041.7 973.5 1265.4 5957,8 2209748 19752.7 19843.4 5978.7 10 3669.1) 172915 111511 1011111) 949.0 694.1) 1105.7 11)l4o.A 13329.6 20493.1 7.3941).4 12466.9 11 5165,5 2213.5 3672.3 1400.4 1138.9 961,1 1069,9 13044, 2 13233, 4 19:i[F6.1 19323. A 16085, 6 12 6049.3 2327.8 1973.2 1779.9 1304,1i 1331,0 1965,0 13637,9 22704,1 19039,0 1949042 10146.2 13 4637.E 2263.4 1760.4 1608.9 1257.4 1176.8 1457.4 11333.5 36017.1 23443.7 19887,1 12746.2 14 5560.1 2508.9 1708.9 1308.9 1 1Zi4 .7 BF.3. 6, 776, 6, 152Y9,2 20663.4 28767.4 21011.4 10ii00.0 15 5107,1 173$.1 104,7 8520) 7111,6 575,2 A0-2. 5'!7',1,1 42341.9 2,1)1)11...i 14048 2 7.514,2 16 4759.4 2.468,2 1070.3 863.0 772.7 07,3 1232.4 10Y66,0 21213-0 23235-V 17394,1 A622:i,6, 17 : 221 .2 1565,3 1203.6 3060.4 984.7 784. 7 133844 7094 ,1 25?3V, 6 16153,15 17390.9 9214.1 18 32,i9,8 1202,2 1121-6 1102,2 1*31,3 0119,5 049,7 12555,5 2471l,9 219117.3 7614)4.5 13677.9 19 4019,0 1934,3 1704,2 1617,E 1560.4 1560,4 1576.7 12826,7 25704,0 22OH2.0 14147.5 7163,6 20 3135,0 1354,9 753.9 619,2 607.5 686.1) 1261.6 7313.7 13967,1 14043,5 7771.7 4260.0 21 2403.1 1020.9 709.3 636,2 60241 624.1 981-4 9536,4 14399.0 IR410.1 16163,B 722111 22 3768,0 2476.4 16417,4 1097,1 777.4 717.1 813.7 2057,2 27612,8 21126,4 2744616 121HR-T 21 4979,1 25117,1) L957,4 1670.9 149L,4 1366 , F) 1:305.4 15773.1 '47429 , 3 171120.3 17509 ,:; l.01i5.7 24 4301.2 197719 1246,5 1031,5 1000,2 B73,9 914,1 729740 23859.3 16331.1 18016,7 8099.7 25 30.56,5 1315l,7 931,E 7H6.4 6,4)9,9 677,3 1171,9 1201)90) 147H0),6 0971.9 1,1523,7 97H.5,2 26 3088.8 1474.4 1276,7 1215,8 1110,3 1(141,4 1211,7 1167212 2668942 23430.4 15i46,6 13075-:1 27 5679,1 1601.1 876.2 757.8 743,2 690,7 1059. B 8938.8 19994.0 17015,3 18393 .:i 5711 ,'.) 28 2973.5 1926.7 1667,5 134B67 1202.9 1110,H 1203,4 8569,4 :',1352.8 19707,3 1680713 IGA1341 29 5793,9 2645,3 1979,7 1577,9 1267,7 1156,7 14F)H.4 11731,5 17277,2 18311'5-2 13417,1 7132*6 30 3773.9 1944.9 I31296 1136.8 1055.4 1101,2 1317.9 12369.3 22904.8 24911,7 16670.7 31 6150 , 0 3525.4 2032.0 1470,1) 1233.0 1177.0 141) 4. F) 10140 ,1) 23400.0) 2.5741) , F) 1H,)F)F) ,1) 11000.0 32 6458.0 37.97.0 1385,0 1147,0 971,0 889.0 1103.0 10406,0 17017,0 27040.0 31435.0 12026,0 AVE 451391 2052,4 1404,8 1157,3 97B.9 B?H,3 1112.6 0397,& 22912.9 20778,0 1H431.4 106704 #elf m = M : 133iJ I M IM !M 4! 1= i! Ji POI RI1111hF. RAW WFS) 1 3 4 5 6 7 B 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 27 OCT 5554, 1 11900.0 9061.9 9261.1 11477.9 10208 , 1, 7077.7 7183.4 8805,9 11673.8 ,3144), 9 10336.7 9420,4 11:i:3:3 , F 8162.5 1047"7,4 819606 11738,4 6994.4 11802,19 12059.7 11737,5 10120,7 8631.3 11844.4 11900.1 8A 51465 28 11801,3 29 10178.6 30 117'.i 8 , 4) 31 11642.2 32 9433.4 ROV DEC JAN FEB KAR APR MAY JUH JUL AUG SEP 10435.1) 12314 .6 114311,4 10705.8 3700, 4 72112.9 1474),2 4011.0 3799 , 5 44)114) ,'7 7541, . 7 6948.4 7941,1 7341i.6 6377.0 6511.7 AR23.P 6.144.3 42P,3,0 3T25,0 :3994,0 039,1 9850.5 12276.3 11401,4 31021.6 9708,1 7406.7 4992,5 319A.6 362H.9 5170,1 5760,3 10916.0 12249,2 11408.5 11003.3 9827,2 7984.8 7029.0 67.19.4 V 31.4 3767,8 411l2.5 6740.6 115RD.1 11103►4 10782,9 B777,5 7545,4 6297,2 3312,1 3779,9 3?63,4 4123.9 ,S.SH3,3 12250.4 11376,7 lml,5 10315 6 7541,6 4550.1 5102,4 5120 7 7015o6 124G.5.0 10811►9 12t17.2 1145396 1073496 8033.7 7321,1 61101.3 6114.0 5B29.8 8243.3 13IT4.4 10907.1 12218,1 1)394.9 10967.3 10193,6 8572,1 4S'132.2 6537.0 3771.0 5121.9 8951.7 10830.7 12128,6 11312.9 10y42,6 10208,1 9197,8 6059.5 5625.0 3854,8 4418,0 5853.2 6809.6 7783,9 9626.1 10928.8 8833.3 748845 41178.2 343243 3442..'i 5550.2 10149.9 10947.2 12222.0 1061).3 10967.() L0203.4 (161V.3 7.54)1.A 4173,2 3790.11 3700 400.2 1006844 12172,4 11373.7 11003,E 10125.2 9o74.4 7178.1 590.3 4106.5 689R.7 4i34'4.6 9619.6 12347.8 11410.3 10991.6 10207.5 85,45.7 6097.0 5751.B 6625.6 13968.6 12746. 11040.4 12209,7 11405,4 H966.2 A02.39,9 0272.6 7113.S,t1 .S377,:i 5757,4) 8'i9], 1 IQH4)1).0 11012-9 12305.9 11442.9 10999.7 8714,5 7212.0 5142,5 5707,4 6499,0 697.7,4 5163.5 875H.1) 123'53,0 11497,6 10752.5 .3946,E 71135.2. 5742.0 4736.9 45117,1 'i402..3 104117.7 10789,1 12267.8 11379.3 10978.1 962y,9 7941►2 4566.1 5895,8 3674.0 3673,V 4935.2 6814.9 7793,1 9300.0 11011.) 9028.0 7152.5 7144,1 6562,7 502B.6 8676,3 13672.9 11011.0 12386,3 1138892 10961,3 10170.4 9105.3 7298,8 6230.0 6134,E 4013.0 68HO.4 61160.6 71177.6 7372,6 14)5117,1 81325.3 71164.4 4823.7 Ili 19.H 44711.7 5941,3 H467.0 7203.9 826241 5585,0 602.1 624.1 9116.4 V536.4 5121.2 '36 24. ;2 3742,3 59?n,13 61,4A4.3 7953.7 74o9.5 6431,11 1,599.4 2.351.2. 2057, 2 9500 ; 5 3957, 9) 41116 „ S 619.3.3 9572.4 12222,4 11324,5 10880, 4 1013[), 8 9160.8 647D. B 3fi25. 4 6517.4 7122.4 83{)1 .9 9801.8 12329.7 11451.0 11014►3 9356.7 7516.9 5072,9 4338.0 4230.3 4381.1 8375.7 6935.6 7738.1 7336.3 6370.2 8005-1 7474.7 7327.0 4024.9 3978.8 4195.4 6234,6 6974.5 7942.4 7334.7 633740 6419,8 5607.7 409.1, 630B.3 6148.0 5613.0 7336,6 10824.9 12333.9 11217,3 10723.0 8830►0 7662.4 4200.7 3625.2 4225,4 5226,4 8130,5 6792,3 7775,9 7227.3 627240 8825,4 7806.2 4072►9 5981,5 6465,8 6985.7 5188.5 10412.9 12205.4 11354-S 10940.1 10167.2 9199.9 6261.4 4439.9 4[)27,5 4074.8 7047.3 6349.0 7903 , 9 7321,9 6356.0 6519.3 72.1 3 , 4 7021. 5 64511. 3 6041. 3 5072.9 4971 .9 8455.1 12272.0 11411.6 10?92,6 10207.8 9084.8 5001,7 6626.9 5?:32,7 6652,7 7034.9 10950-5 12289,0 11452.9 11003.6 10223.1 8723.2 5235{,;) 4642,9 5011,1 14043.2 12026.0 AVE 9868.2 9046.9 10891.8 10195.1 9739.E HH74,4, 7574.3 58 76.1 5338,9 4747.9 5930.0 7752.0 SPILLS (CF5) OCT NOV rtF.0 JAN FFR HAR APR HAY JU!! JUL AUG 5FF 1 0.0 0.0 o.0 0.0 +).0 0.0 o.0 0.0 0.0 0.0 0.0 o.0 2 0.0 0.0 0.0 0.0 0.0 0.0 0.D 0.0 0.0 0.0 0.0 0.0 3 0.0 0.0 0.0 0.0 0.0 0.0 O.D 0.0 0.0 D.0 0.0 0.0 4 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 5 0.0 0.0 0.0 0.0 0.0 0.0 O.D 0.0 0.0 0.0 0.0 0.0 6 0.0 0.0 0.0 0.0 0.0 {).0 0.0 0.0 0.0 0.0 d.0 o.0 7 0.0 0.0 0.0 0.0 0.0 0.0 O.D 0.0 0.0 0.0 0.0 0.0 8 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 9 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 10 0.0 0.0 0.0 0.0 0.0 0.D 0.0 0.0 0.0 0.0 0.0 0.0 11 o.0 0.0 0.0 0.0 +l.0 0.0 0.0 ').0 0.0 o.0 0.0 0.0 12 0.0 0.D 0.0 0.0 0.0 0.0 0.1 040 0.0 0.0 0.0 0.0 13 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 14 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 15 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 16 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 010 0.0 0.0 0.0 17 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 18 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 19 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 20 +).0 0.0 0.0 4.0 0.0 0.0 o.0 0.0 0.0 o.0 o.0 0.0 21 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 22 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 23 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 24 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 25 o.0 0.0 0.0 0.0 0.0 41.0 0.0 0.0 o.0 0.0 0.0 0.0 2b 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 27 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 28 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 29 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 30 0.0 o.0 0.0 0.0 0.0 0.0 0.0 0.0 4)a0 +).0 0.0 0.0 31 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 32 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 AVF 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 t sow t� 4, ,r■� �� a a a f HEAR (FT) OCT HDV DEC JAH FEB MAR APR MAY .11lk JUL AUG SEP 1 729.3 721.H 705.E 685,11 666.1 648,5 6;12,S 62V.'1 647,E 675.7 702,2 713,1 2 705.7 6?3.1 680, H 66? .2 655.6 644. 0 631.3 631.2 63148 681.7 707.8 726.7 3 731.2. 721,2 705.9 687.0 667.B 64?.3 632,1 624,1 646.6 6H7.6 715.3 730.3 4 737.5 723.4 707.5 688.0 668,4 649,5 632.5 634.4 658,6 696.4 710.3 727.1 5 726. 9 716.7 703.7 685.0 66640 A48,'i 1,& 2 . S 1,31, :3 1.53, 9 683.1 710.E 729.1 6 717,Y 713,11 706,1) 6117.2 6W5 649.8 632.5 627,5 650,2 6112.1) 719,3 7:14.2 7 732.5 722.5 705.5 685.5 666.0 648.5 632,5 63241 660sO 6h'8.7 7'213,8 7.-15.0 H 732.5 723.0 707.1 688.6 670,0 651.4 633.7 631.1 655.9 684'. H 715.2 730.2 9 732.7 723.9 709,2 691.7 673.5 655.3 f,37,? 632.8 653.9 6H5,7 713.1 725.3 10 718.7 707.9 697,9 683.5 666.0 648.3 632.5 01.2 612,3 6113.8 715.8 733.1 11 7:52.5 722.9 706,9 6118,4 669.9 651.6 633.E 631,5 ,S47, 2 072.1 701.5 72 i.0 12 731.2 721.3 7D6. 4 688.6 670.5 652,9 6:32, . 0 635. S ISY, ii R5'5+. 6 71:5. 9 730. 7 13 731.0 721.D 706.1 687,E 669.3 65143 633.5 631,1 667.0 71(1,8 729,y 73:;.0 14 732.5 723.1 707,7 688.6 670.0 651.6 633.5 634.5 657,9 6913.0 724.6 735.0 15 /32.5 722.5 705.7 695.9 666.2 6484 1,32.5 623.2 65H.8 707.H 725.2 733.1 16 73012 724.2 705,5 685,5 666,1) 6+411.5 632.5 631.1 653.8 697.9 715, S 7;14.3 17 732.3 722.5 705# 7 6B6, 2 667.0 649,0 632.5 628,0 651.4 61;4.1 708,0 7231.0 18 719.4 707.7 65+7.3 683.2 666.0 648.5 632,5 631.4 655 * 8 689.8 720.4 7:315. 0 I 1V 7:32,5 722,6 706 3 697.7 669,7 652,6 635.3 633.1 658,11 697.11 7IS. 1) 714,8 k 20 717.7 706.0 6950 0 681.7 666.0 60.5 632.5 630.3 643. 4 665.5 677,7 675.5 t 21 661.8 645.7 630,5 61i,8 610.0 610.0 61(i,(k 61040 620's 646.9 675.0 AE8.5 + 27 .S111.7 ,S69.5 65?,1) 646,1 633.3 620.4 611.7 610.0 63011 667,4 704,9 734).1 F . 23 730.7 720.7 706.4 688.4 670.5 653.3 635,E 637.5 60.2 701.7 722,0 732.8 24 731.4 721.4 705.7 686.1 666.H 648,9 632.15 627.6 650c2 682.2 705,8 717.2 25 7o9.6 497,5 6115.11 671.3 660,E 64737 632,5 63L,5 649.0 671,9 SY2.6 704.2 26 699.4 686.4 674.5 661,7 650, 9 639.9 629 * 6 1,30. ;5 07,7 693.8 717.7 730.3 27 732.3 722.5 705.4 6H5.4 666,0 648.'5 632,5 630,E 652,6 6111.0 705,7 714.9 28 705. 4 69316 6113.1 671,2 660,7 648.1 632.5 630.3 E63). R 697.8 717, 9 730,6 29 731.3 721,3 706.4 408,3 670.1 652.3 634.15 641.3 650,3 677,6 700.0 708.2 34 701.:i S9(),1) 670.7 666,0 655,0 644,3 631,7 631.3 454,1) 609.2 715,8 720.9 31 727.6 719.0 706.4 688,1 669.7 651,7 6.7, 3.7 631, 0 61,i3.9 6?(i,1 71910 73148 32 732..5 723.8 708.4 689.3 670.4 651.8 633.7 631,1 649.7 684.0 720,4 7:',:i3O AVE 722.1 711.7 697.6 6HO.4 663.5 647,3 631,7 629.6 652,6 6$i,6 711.5 f 724,:i j t i dw wA fE:R SURFACE AT SPAR i OF mni(TH (FT ) OCT NOV DEC JAN FER MAR APR MAY .1UN .10I. RUG SU 1 2185.0 2183.E. 2170.0 2151,3 2130,3 2112,0 -0 2(18(),0 2011W 13 2115.3 2..146.1 2168,3 21A7,9 2153,5 2142,11 21211.8 2115.7 7.105.4 2092,a 2€)81),4 2.09?.5 212.1.1 2152,3 '2173,3 3 2190.0 21 R2.; 2170,0 2151.9 71:12, 0 2113,7 2('5':i. (1 2080, (► 207R, 2 21:2:3, 1 210.1 21HO 1 16 4 2190.0 21115.0 2171.7 2153.3 2137.,8 2114.0 2095.0 2080,0 2098,8 2128,4 2154.4 2176,1 5 2188 ,1) 217,i ,11 2167.5 2151) - 0 2130,1) 2112, E) 21)95.1) 20,01) , () 2092.7 212 S - * 2 151 .2 2180, 0 6 . 188. 2 2177.5 2170.0 2152.0 7132. ,i 2114,E 20Y5. 0 2080.0 20B5. 1 2125.4 216D. F 2188. 4 7 719'),€) 21050 2170.0 2151,0 ?131).€) 2112.€) 2095.1) 7.030.0 2094-3 21.15.11 2171,7 219?0,0 8 2190, D 2185.0 2171.0 2153,3 2133.9 2116.2 2097.3 2080,0 2042.2 2129, 6 2160.0 21F,0, 5 9 2190.D 2185.3 2172,5 2155.9 2137.4 2119.5 2101.1 2083-3 2OV2,4 2125.4 2156.0 21DO. 2 10 2180.4 21670) 215'0,7 2,147,1 2131),4 211?.€) 2i)9;i,1) 2€81),() 20'12,4 2122,3 21,55 3 21136.2 11 2190.0 2185.0 2170.8 2153.1 2133,H 2116,0 2(IY7,2 2080,0 20T3.0 2111.4 2142,8 2170.2 12 2189.11 21112.6 217i),4 2 15 2 ? 2134,7. 2116.7 2099.0 2€)13:',.9 1 2130,11 216*,3 2131.5 13 2.(90.0 2182.0 2370.0 2152*2 2133.1 211545 2097, 0 20140.0 20Y2.3 2151.6 2179. ? 21YO� 0 14 2190.0 21A5.9 2171.1 2153.3 2133,8 2116.2. 2097.0 2080,0 205'9,0 2126.8 2169.1 219N O 15 2190,0 2185.0 2370.0 2151,3 2130.4 2112.0 2095.0 2090.0 2076.3 2151.4 217�,2 2186.2 16 2191).€) 2180,4 217€),1) 2151,1) 2131).1) 2112,€) 2€)95-1) 1OR().1) 2092.3 2125,3 21604 218'),7 17 2190.0 21850 2170.0 2152.4 213110 21130 20 54 20110,o 2(fS5,9 212€5.11 2151.4 2174.6 18 2181.5 2167.3 2158.2 2146* 4 2130.0 2112.0 209S- (% 2080.0 2092.7 212F'„ 9 2160, 7 2190, 0 19 2190.0 2185.0 2170.2 2152.3 2133.2. 211663 20?N,9 2081.6 2094.6 2133-0 2162,5 20 2180.0 4'165, 4 2156.5 2143.5 2130. 0 2112,0 2095.0 20130. 0 2090 - 5 2110.2 21:30.9 213116 21 ,'126-4 2107,1 7094.3 2076.6 7065,0 ?0A5-1) 21)6'. 0 2065,0 2E}!►;i,1) 2+}H6,1 2117,7 2142.3 22 2144.7 2128, 7 2120.3 2107.8 2094.3 2082, 3 2068 5 2065 - 0 2065.0 2105, 2 2139, 5 21H0, 2 23 2190.0 2181.4 2170.0 2152,8 2134,0 2117,1 2099.5 2081.8 2103.3 2145.1 21E8,2 2105,7 24 2190.0 2192..7 2170,0 2151,4 2130,8 2112,8 2073.0 2080,0 2085.2 2125.1 ;2149,3 2172.4 25 217240 2157.2 2147.8 2133.8 2120.7 2110*5 20?5,0 2000,0 2093,1 2114.9 2138.8 2156.3 26 2162,1 71460 2136,1 2172.8 2110,6 211)1,2 201111.E 2078.7 2092,4 21:3?,9 :'.164.7 2180.7 27 2190.0 2185.0 2.170.0 2150,7 213090 2112,0 2095.0 2080.0 2(i91.1 2124.1 2149.6 2171.H 28 2147.9 2153.0 2144.2 2132*0 2120,3 2111,2 205.0 2080,0 7.090,E 2141.0 21f.4.7 21F)112 29 2190.0 2182.6 2170.0 2152,8 2133,14 211694 2078,3 2080.6 20V2,3 2118* 3 2146.9 2163,1 34 2163,2 214V-11 214€),3 212731 2114,8 2LOS 2 2093.4 70'3€).1) 2092.6 212'5,4 2161,1) 2120.5 31 2187.2 2178.0 2170.0 2152,8 2133,5 2115.9 2097.4 20F,,O, 0 2092.1 2125.7 2164.5 2.1831 6 32 2190,0 2185.0 2172.6 215442 2134,4 2116,4 2(1?7.3 2080.0 2092,1 2117.2 216(l.K 2190,D AVE 2181.7 2172.5 2160.R 2144.3 2126.4 2110,6 7.0y4.0 2079.3 20H9,4 2125.3 2155,8 2177.1 ENFROY FROM RESFR OIR 1 (GUH) OCT HOY DEC JAN FEB MAP APR MAY .HUH ,All. AUG 5FP i..FIH 1 217.5 390.9 41,5.9 420.5 347.9 302,8 2X9,0 151,0 134.8 137.6 1153,6 273'.2 240.5 2 450,2 249.7 289.8 262.8 V52.4 224.9 223.5 214,7 144.8 143,4 151,E 261.6 21R19.5 3 355.2 369.6 464.6 419.9 356.4 337.9 243,1 167,0 107,3 133.8 14'8,3 21H.12 3',V0,4 4 363.7 409.7 464,6 42048 356.1 342,2 262.0 239.1 212,5 144.7 14?.5 158.1 3517.0 5 447.3 250,6 436,9 407,8 347,7 305.2 247,E 212,8 112.4 1:58,4 124,3 156.0 307.0 6 398.4 249.2 463.7 419•L 35A.8 359.3 247.,i 15:',.1 174.8 1119.2 2.70-6 474.8 7 77.9 405..3 465.9 421,0 346.2 307.1 240.2 233.2 209.4 210.4 37.0.8 303.1 :3948.5 8 282,1 40,1 464,:3 420,A 355,U 35A,2 281.11 1,53.E 222,4 13Y34 196,4 344),7 :1637,5 9 345.9 406.8 461,1 419.5 356.9 3yH.6 304.1 205,6 190,i3 141.7 16H.9 220.3 31iR0,l 10 449.8 250.1 291.2 352.7 :3:52.4 307. 1 2457 165.1 116.2 126.2 213.0 396.1 :325 ;. A 11 319,7 410.6 463,2 419,3 355,7 356,4 2133,3 254,0 14341 1,3616 13961 150.8 34311:12 12 405,2 :376111 461.1) 419,11 357.3 354,4 21",A 244,5 204,2 157.11) 244,11 1H'.iIli 372 S .0 13 369.2 359.B 467.4 420►6 :35Aa2 356.5 2Y4.i1 206,3 15'9.0 ,2:i2.:i 542.7 4RA,0 h:il0,:i 14 335,2 414.4 466.0 421.0 355.Fi 357.7 211,9 244.5 217.7 213,9 343.9 411.8 043,8 15 320.5 412.8 465,5 420.8 354.8 303,0 236t7 171,8 195,1 246,6 269,3 196.4 3157:31:i 16 410.1 327,2 467.2 422.5 346.8 ;31 1. 0 257,1 194.3 10.7 10.2 207.2 '497.4 :3l, 70. 8 17 321.9 404.4 464.3 419,4 354,6 334,9 21.0.1, 153,7 199,2 134,7 137,5 185.1 3370," 18 452.7 250.2 291.3 340,6 355,1 313.9 244.6 74L,F; 2233 1R6,0 335,1 121.4 377.;i.9 19 274.7 412.8 469.0 419.9 355-5 355.8 302.7 247.7 212,9 227.8 154,0 258.7 3691.6 20 454,1 251.3 793.5 269,15 341,4 306,3 758.1 163.0 151,3 159.11 215.9 296,7 3161.4 21 427.9 241.3 279.3 11i4►4 17.8 20,4 31,2 311.9 164,9 125.7 142,7 214,3 2161,6 22 429.0 23B.4 281.1 256.6 197.9 219.5 74,6 5'3.4 310.8 141,E 138 c 2 234,E ,2635.7 23 396,4 357,9 462,8 417.9 353.3 354.8 302.1 221.1 202.3 245.2 275.7 315.6 35'015.1 24 338,4 36A6B 466,5 421,2 355.6 326.9 746,7 170.7 146,3 154,7 165.8 309.6 3469,4 25 450.6 27)l.0 291.9 264.4 203.8 278,0 245.3 24H.1 135,5 143.3 155.4 227,H 2894.9 26 446.2 248.4 2H7.2 260,2 199,7 221,6 IR2,9 196,4 215,2 228.7 216,0 ''7B4O "rfso.4 27 339.9 405.8 466.4 412►2 345.6 307,0 251,4 142,3 122,7 154,5 15'7.7 3311,5 3447.2 28 446.3 244.4 284,8 260.0 200.7 306.6 256.1 137, 6 20 5, 1 241.9 26H4 9 15'6, 7 :3[Wy. 1 29 399,1 389,7 462.2 419.2 355, 0 353. 6 307, B 212,0 149.8 146.3 152, 5' 258 , y ?,60:3. 4 34 442,2 247,2 287,6 261,4 201.6 225.2 237.1 237,6 219,1 222,9 194,7 183.4) 2(162.6 31 454.1 315.4 464.7 421.0 356►5 356.E 291i.7 169,2 224,8 219,5 256,4 267,1 3804.0 32 370.4 411,2 466.7 423.3 357,2 357,2 2116.8 177.3 15,6.3 18M.8 542.4 458.6 4191.3 AVF 381.0 335,2 408.7 :373.1 314,2 ;30H.8 2411,7 199, 4 1801H 175.0 227.1 291.8 344 , H ! ! ! i i 4)♦ i i i i i ;i:�...i-• ... ��.... •ir.+x '�ew.s 'mow ��s � RESE:tZVf11:R 2 INFLOW (CFS) OCT NOV DEC JAH FFR MAR APR MAY JUN Jul- AUG SEP 1 6602,4 10756,1 12488,2 11574,6 10879.8 B809.3 7405.0 63(15,0 6047,5 5YOV.1,i 5987,9 8177.1 2 12252.9 7071.3 8065.7 7443.3 6471.5 63H9 ,1) 7076,2 7913,1) 5743.E 5714,3 604S.0 9532.7 3 9690. 7 10219.4 12532.8 11610.6 11123. 8 ?601.3 74131, 3 576-5, 5 7439,4 6379.7 746110 7&3U. 4 4 10493.0 113V2.6 12518,4 11589.2 11137.2 9923.2 #3134,6 9750.1 9V80,3 5760.1 6293.2 46(1-/14 5 1236H.3 7062.3 117113,4 11239,11 1090.5 8860s7 7731.4 V117,5,4 7E)2.),S S951),5 6914.4 A'537.s 6 11179.8 7134, 0 1256i,9 11637.5 1118,6. 2 10453,1 7'71(1, a 6222.3 H3112. 9 7553.6 $438. 2 J3007.4 7 7623.3 1L011,4 124[15.2 11560.4 10077.9 11V9I ,S 747().1 9'IE)7,4) 1Of) '79.3 9210.5 11699,7 164115.a 8 R210. 7 11404,3 12527,7 11605.1 11167.2 10364.0 8736.0 72794 6 ?477. 4 5931.7 7193.3 121 m h 9 10205.5 11485.2 12775,0 11624.3 11113.1 30320.3 9369.6 7y50.Y 7Y40.7 5865- 6154.4 696313 10 1240R.4 7079. 9 8039,7 9R62.0 1 1158- 7 9017,2 7722.7 9638,5 6640,4 6339. R 0204.2 1301:2. 6 11 V036,1 11156,4 125AI,2 11646.1 11168,3 11):I55-1 €17,67,2 V260,3 5749.6 6024.1) 6443,? SH'1.5 12 11458.3 10E50D,5 126;35.8 1180,z,8 11292.4 10433.1 T,i14.F; Y570.9 10254,5 "7147.3 HS8,',9 h'1f,7.A 1.3 1.4)242-2 7900-3 L2.556,1 ILSV7,4 1L147,6 1{)3:i:3,1) 911)l,7 .SY04,7 1041+1.4 3172,'.i IQ23,3 1.4710.2 14 (1283.1 11235.5 12472,.8 11592.5 11168-9 10314.7 8306,9 95R5.2 980R,2 7378.0 10506,2 1177i.,, 15 8973.7 11309.2 12498.3 11568,9 11118.3 R803.1 7P99.3 5610-6 10681.9 8:342.2 8145.0 6479.3 16 11462.0 91)34.'1 1244.1.5 1155?,9 1+3011.6 ft)6,1 7Y17,2 7043,1 7A34,2 75A1,.9 7797.5 1'2496.3 17 7471.9 11131.6 1254 2. 6 11617.6 11 I R0. 8 982R.6 82 21 , 4' 6206.0 10402 ") 60,156. 7 1 A77. 1, 4565, 4 18 12312.E 7070.6 8036.4 9555.7 11248.1 7228.4 ?656, 5 9024.1 ?647.2 8122.;i 12964,8 1 :;728. 2 19 7160.7 11280,2 12611.8 11621.8 11179.6 10-39a.7 93Y9.6 9454.5 9908.1 8922.8 5956.0 794.+.7 20 12244.6 2037.5 7960.0 7440,0 10661.6 8?094V 8024.1 59:',9,9 5508,4 52R6.4 6653.0 9002.5 21. 12523 - 1 7323.7 8362,8 5705.7 708.7 72L.3 1046.6 11)721,6 7011.1 635E s 3 6331.3 721H . 2 22 17.714.7 7449,7 8344.1 7630.2 6618,0 6748.1 2523,7 342.7,9 12V26,7 5772.2 7055 .V 7640.4 23 10678.6 9897.7 12577.6 11609■7 11225.4 104W4,6 9420-V J0214.5 10325,9 9413.4 8267.D 9230.4 24 8968.7 9978,7 12470.4 11559.3 11142,7 9477.8 71AF -5 5611r.3 6971,; %451,0 5tI47.:i 895.',0 25 12279.3 7043.8 8003.9 7392.6 642642 8067.3 7551,9 9442.7i 011.0 5796.Y 15S,18.7 7818.5 25 12310,1 7119,'5 8152,2 7527.7 6568.V 6,S90,3 5053,2 .3173,9 9921.7 119Q;i,.S 7;iIa. 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A 10 670R.1 7079,9 8039.7 9862.0 1115R.9 9017,2 7722.7 8638.5 6640.4 63:49,8 l(TIT ,7 :43012.6 11 9042.E 11349.7 12561 .2 11446.1 11168.3 1.035:i. 1 8774.0 9253. P 575A. 3 60,14 , 0 10476.1 7719.9 12 65.S41,5 10507,2 12627.3 11:30'i,U 11292.4 it) 433,1 9514.14 7WO, 9 10254,5 7147,3 1.1064.4 IS148.6 13 6617.2 7907,0 1255V, E 11577.4 11147.6 10353, 0 9108.4 6704 ,7 14407.7 8172, 5 13763,2 133763, 2 14 9289.6 11228.8 12476.8 11592.5 11168.9 10314.7 8311.,6 9578,7 908.2 93/8.0 11030,5 1100R,1 1:i 9981),2 113011,2 12491,8 11568.9 1112.5.5 3H03.1 7299,3 ri739,9 10541,6 14341.2 11145.R 8:569.0 16 6758.9 9041.7 1243740 11564.4 10808.6 9006,2 7Y17.2 7043,1 7634t2 7.540.4 0669,3 ?528.7 17 9478.4 13131.6 I2536.1 11617.6 111HO.8 9835.1 6221,Y 6206,0 A039i,a 6056.7 0414,E 8374.3 18 6611.1 7070,6 140-16.4 9555,7 112411,1 912.It,4 76j6.5 9024.1 9640.5 8112.5 1'1164,0 1)71)3.= 19 7567.2 11273.5 12611-8 11621.8 11179.6 10388,7 9399.6 9454,S 9YH8,1 8922.8 .10910-5 8709,9 20 67144.2 7037.5 7960.0 7440.0 ]0661.6 8908.9 8024,1 5539,9 5508.4 6035.2 111,E+4.6 9002.:i 21 6322.7 7320,7 8362.11 10250.7 1911H , 0 721,10 1046.6 6293.1 652E , 7 .S351, ..1 10672.3 ae)101.7.. 5 22 7014.2 7449.7 83344,1 7630 # 2 6614,0 67A8,1 8414,2 3427, S' 703642 1772.2 104E+:i.9 806,0 23 6494,41 9904.S 12571.1 116119,7 11225,4 10424„A '14241,Y 10274.S 10325.9 13413.E 11364,1 37114.2 24 6303.4 9985,4 12463.9 11559.3 11142.7 9484.3 7589,5 5682.3 6H71.3 5805.8 11188.1 8952.0 25 S.57E3.11 70,13,13 0003.Y 7392,6 6426.2 H067.3 755 1. 9 9436.1 A017,11 579.S,9 110.17.0 8424).1 26 6617.7 7119.5 8152.2 7577.7 00,9 6690- 3 505X.2 8173.9 VY15-(+ 139E+5.6 10941.6 8144.7 27 7791.9 11076.9 12459.1 11362,8 10856,0 064.5 7864.0 657512 6444tR 5796.6 11497.7 8887..3 243 6679.11 7257,3 8235.9 7536,0 6530,11 9075-S 11112,6 A715 4 1022110 1149Y,4) 11131.2 H576,1 29 6722.0 10985,1 12590.6 11649. a 11197,4 10391.1 93118, 6 672.9.8 5579,5 '5721.3 10936.1.5 8773,4 30 67115,9 7223,4 €3141).7 74119.2 65o4,2 65112.11 73111,3 7906.2 7.S0 i,9 135115-9 10646,7 874]2,4 31 6685.2 8891.8 12512.5 11590.6 11142.6 10351.8 9262.5 6238,7 9401.9 9IHN.2 1123610 B36210 32 7855.0 11345.7 12458.0 31592,9 11121,6 10331.1 81364.51 63091,5 55 s, 0 8171,. 9 1376;3, 2 12762.0 AUF 7261.1 9378 0 11136,1 10132.4 9948.1 9019,3 7928,5 757;3, 0 R141. 1 7107, 6 11141 , 5 941(1,4 L SPILLS WFS) OCT NOV DEC JAN FFA MAR APR HAY JUN JLI) INUC 5FP 1 0.0 0.0 0.0 0.0 0.0 0.0 0.i1 0.0 0.0 0.0 0.0 0.0 2 010 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 3 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0,0 0.0 0.0 0.0 4 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0►0 0.0 0.0 0.0 0.0 5 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 6 0.0 0.0 0.0 0.0 060 0.0 0►0 0.0 0.0 0.0 040 0.0 7 0.0 o.0 0.0 0.0 0.0 0.0 Q,0 040 000 0.0 0.4) 2732.6 8 0.0 0.0 0.0 040 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 9 o.0 0.0 0.0 0.0 0.0 0.0 +).0 0.0 0.0 0.0 0.0 o.0 10 0.0 0.0 0.0 D.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 11 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 040 010 0.0 12 0.0 0.0 0.0 0.0 0.0 Q.0 0.0 0.0 010 0.0 0.0 0.0 13 0.0 0.0 000 0.0 0.0 0.0 0.0 0.D 0.0 0.0 2460.1 1004.0 14 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 o.0 0.0 d.0 15 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 010 0.0 0.0 16 0.0 0.0 060 0.0 010 0.0 0.0 000 0.0 0.0 0.0 0.0 17 0.0 0.0 0.0 060 0.0 0.0 0.0 0.0 0.0 D.0 0.0 0.0 18 0.0 0.0 0.0 0.0 0.0 0,0 0.0 0.0 0.0 0.0 0.0 1945.0 19 0.0 0.0 0.0 0.0 0.0 000 060 0.0 0.0 0.0 040 0.0 ?0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 21 0.0 0.0 0.0 04 0.0 0.0 o.0 0.0 0.0 0.0 0.0 t).0 22 0.0 0.0 0.0 0.0 010 0.0 0.0 0.0 060 0.0 4.0 0.0 23 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 24 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 25 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 26 0.0 0.0 0.0 0,0 0.0 0.0 010 0,0 040 0.0 0.0 0.0 27 0.0 0.0 0.0 0.0 0.0 010 0.0 0.0 0.0 r.,o 0.0 0.0 28 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 29 0.0 0.0 O.D 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 30 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0,0 0.0 0.0 0.0 0.0 31 0.0 0.0 0.0 090 i),0 010 0.0 0.0 0.0 0.0 0.0 0.0 32 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 4115,0 0.0 AVE 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 0.0 205.:) 178,2 .r � .. �■ r 4444444>1 4r r ri rr r � r r - �-�--��-�r � 1 HFAA (FT) OCT Nov DEC JAH FFR MAR APR MAY JUN ,111l, AUG SEP 1 60510 60510 60::.0 60590 605.0 605.0 605.0 60510 605,0 605.0 583.4 55R.4 2 5HO,0 60.511) S1)S11) 60500 605) 1) 605.1) 64)510 60511) A1)514) 605. 1) 5114.0 570 3 3 591.3 605.0 605.0 605,0 60!-.0 6(15,0 60.0 605.0 605-0 60510 591,0 574.2 4 588.2 605-0 605►0 605.0 605,0 605.0 605.0 6015.0 605.0 605,0 506,3 561,7 5 590.4 605.0 6054,0 605.0 605.0 605.0 1105.0 605.0 605.0 605.0 SVI -9 572.6 6 SR5.7 605.0 05.0 605.0 603.0 605,0 60u.0 60:94 n 05.0 605.0 593,3 593.3 7 8 60'5,U 605.1) 60511) 605.0 405.t) 605.1) 605.4 A05.0 ,S 5.1) 60510 .S05.0 605.0 60►.0 60r), 0 605.0 605.0 60540 605,0 601,0 641 10 605.0 605, 0 5it?, 3 5F;S', 3 9 605.0 605.0 605 1 0 6(15.0 605.0 60510 6i1:i.0 605, 0 605.0 605.0 5W 2 563 2 10 5Fi0.0 60r,.0 605.0 60:a,0 605.0 60:i3O 601,0 60500 60510 6050 605,0 60:i.0 11 6021;.0 60510 605.0 605.0 605.0 605.0 60.)■0 1,051.0 6015.0 1,05.0 587.5 566.2 12 5H3,H 61):i.o 605,1) W5.0 60.0 605,1) 61)IS 1) AQ511) 6t)'.i.0 605 1) 594,6 57H.9 13 :iR9.4 605.0 605.0 60540 605.0 605 c 0 605.0 1.0540 0 054 0 605 0 605.0 6015.0 14 605.0 605.0 605.0 605.0 6()s,0 605.0 605.0 60'i3O 6(4:i.0 605.0 602,4 602.4 15 S0s.o ,54)s,1) 60.5,4) 6415.t) 60s11) 6015,A 605.0 61)4.5 ,S0416 645.4) 'i93,7 '573.2 16 5B4.5 60510 605.0 6fi5.0 605.0 05.0 60.5.0 1101,4{) 1,05.0 603 0 592,B '.;Y2,8 17 605.0 '.iR1) 605,0 605.0 6(15.(v 60.5, 0 05 605.0 f,0 , 0 110510 01.310 588.0 156310 10 .1) 60510 605 1 A 60510 605.0 605.0 6o , 1) A01i , 4 .51)'i 1 4) .SIl'.i, 0 60510 60.5.0 19 605.0 605.0 605,0 605.0 605,0 605.0 60500 60510 60540 6015.0 `.y83.4 55Fi.:l 20 580.0 60`.0 60!, 605,0 6(1;i3O 605-0 6S)�r.0 f,05i.0 6II;i.O 602.3 "7713 'iS5.0 21 53o,1) 60510 60520 5115,2 560,i 55511) 55s,0 S7511) 600.1) ISO15 1) 'iH6,1 5A1.1 22 23 580.0 605.0 60 5.0 60510 60510 E,05.0 580.0 555.0 58010 601.',. (l WO. f, 57 , 4 5116.9 605.0 60510 605.0 40510 60S 10 605 11) 60s 11) 60510 605 1) :i91 I H 53Q.5 24 543.7 605.0 60R110 60i.0 60.i.0 60:i,D 605.0 605.0 605.0 6(1:i.7 578.7 :i:i5.t► 25 80.0 605.0 605.0 605.0 605.0 f.05,0 605.0 60S.0 605,0 60:i.0 582.6 557.E 26 %RF) .1) A05 11) AWli , 0 605 t 1) 605 1 4) 605.0 605 1() 60:i 1 0 ,S051 () .SI):i , 1) 590.3 5111 27 7)95.8 605.0 605.0 605.0 605.0 605.0 05.0 llo!5 .0 601510 603. F', 57R.8 .1 555, 0 28 SR0.0 405.0 605.0 60!;.p 60500 60,i3O 60..0 60:i10 605.0 60i3O 594, 1 574.1 29 38n-0 607.0 605.0 6np.0 605,0 6(15,() 05.0 605.0 605.0 605 A 503,4 55Ft.r 30 5R014) 605.0 A051 () 605.0 60511) 1S05.1) A1)5 14) 605.4) 61)s .1) 61)5 1) 591 5116.6 31 5R0.0 605.0 60510 605.0 605.0 605,0 605.0 605.0 605 0 015.0 IS 1i91.1.0 59510 32 595.0 605.0 60S.0 60rs,0 6(15,0 605.0 605,0 605.0 04,2 604.2 605.i) 605 c0 AVE 5li1),2 605.rl 605.1) SO4.4 6o3,6 .S1):f.5 602.7 60?.5 S1)4.1) 64410 :i9111 :i16.4 � 4� 1♦ » � � � � 4� � 141i it i♦ i♦ � � � � '�a WATER SURFACE AT START OF MONTH (FT) DCT i.SV DEC JAN FED MAR APR MAY .1LIN JUL AUG SEP 1 14 55.0 1455.0 14550 1455.0 14550 1455.0 1455.0 1455,0 1155.0 14' a .0 14535.0 1411 .7 2 1405.0 1455.0 1455.0 1455.0 1455.0 3455.0 1455.0 145U,0 14S5.0 1455.0 1455.0 1413.0 3 1427,ti 105 1415.1) 145'5.1) 1455 +) 1455.1) 145'i.1) 14515,1) 14'i5,1) 14' 5,+) 14155,() 1427.0 4 1421.3 1455.0 1455.0 14 5*0 1455,0 1455.0 1455.0 14'.i5,0 1455.0 1455.0 1451,0 1417.4 5 3405.8 145f).0 1455►0 1455.0 1.1.55.0 1455.0 1455.0 1455.0 14515,0 14511i.0 1455,0 1428.8 6 141A.4 1455,+) 1455,1) 1455,0 14.55,4 1455.() 1455,1) 14515.1) 14515,() 1455,0 1455.4 14,51.5 7 1455.0 145!; 0 1455.0 1455.0 1455.0 14.55,0 1455,0 1455,0 1455.(1 1455.0 1455.0 147-fi.0 8 1455,1) 1455.1) 1455.() 14'i5,4) 1455, 0 14 51 5 5. 5 5 5 5 9 14a5.0 1455,0 1455.0 1455.0 1455*0 145540 1455,0 145510 14:i s.0 14i:1.0 1455.0 1421,4 10 1405.0 1455.0 1455.0 1455.0 1455.0 1455.0 1455.0 1455.0 14550 1415.0 1455.0 1455.0 11 1455.0 1455.0 1455+.0 1455.0 1455.0 1455,0 14'.35.0 1455.0 1455. t+ 1455.0 1455, 0 1420.0 12 1412.5 14'i5, 0 1455, 0 1455.0 14515, 0 1453.0 14511.0 14151i.0 14155, 0 141.15, 0 1435, 0 1434.1 13 1423.11 1455.0 145.5,0 1455.0 1455,4 1455,0 1455.1) 1455.0 145.5,0 1451i.0 1455,+) 1455.0 14 1455.0 14, i5. 0 1455.0 1455,0 1455, 0 1455, 0 1455.0 1455, 0 1455, D 14135. 0 145" , 0 1444. 7 15 1455.0 1455.0 1455.0 1455.0 1455.0 1455.0 14' 5.0 1455,0 1451.1 1455 a 0 141.35.0 14,42.3 16 1414,0 1455 . 0 1455.0 1455. D 1455.0 14155. 0 1455. 0 1455.0 1455. D 1455. 0 1455.0 14'.40.6 1 r•r• + .Y.Y. 55 .,.],+ 1455.0 r• t a, 155 1 1 .].],) 55 1 1 aa, } 1455,() 55 1) 14.Y.1, 14 51i , 1) 1455. 4) 1455, 4) 1420.9 18 � 0 1 D` , r. 1A.Y.Y.D rr r 14a.• 0 55 14aa.0 1Aa.]. 55 0 1455, ( + 1455.1 ] 145 ] .0 1455.0 14ii.0 14'i'i, t � 1455, 0 19 145540 1455.(V 1 A"5.0 1455.0 1455.0 14;35, 0 14;i3, 0 1455.0 145 ), 0 14'55, 0 1455, 0 1411,7 20 140S.0 1455.0 1455.0 1455.0 145 y.0 1455.0 1455.0 145540 1455.0 1455.0 140.6 1405.0 21 14 05► 0 145a.0 1455.0 1455 1 0 1415.4 1405.0 140,1) 4 0 1405, 0 1444.9 1455.0 14151i. 0 1417,2 22 1405.+) 1455,0 3455.1) 1455.0 145.5,1) 1455,1) 1455,1) 1405.0 1405.1) 1455.0 145S,0 1426.2 23 1418.7 1455.0 1455.0 1455,,0 1455,0 1455,0 1450,P 1455,0 14515,0 1455.0 141515.0 147.9-7) 24 1432.4 1455,+) 1455.() 1455.0 1455.0 14.55.0 111,i'i3O 1455.1) 1455, 4) 1455,1) 1452.5 1445.0 25 1405.0 1455.0 1455.0 1455.0 1455.0 1455.0 1455,0 1455.0 1455.0 1455.0 1455.0 1410.2 _l+ 141}50) 14.I5,s .].1.+) 1 a.1.+; 145.,,(] 14.15.+ 55 , 0 1455.+ .I.Y,+) 1455.1 14.].].1) 14..].8 27 1436.7 34554 0 ) 455.0 1455.0 1455, D 145S. 0 14.55. 0 1455, , 0 145 5. 0 1451i . 0 14 57. A 140:i. 0 2B 1405. 0 1455, 0 14550 1455►0 3455.D 14.55, 0 1455, 0 1451; 0 1455 a 0 1455.0 1455 t 0 1433, 2 29 1.415,() 1455.() 1455,() 1455, .].,,1� 55 55 1 1 .Y.), ,55 4 J.Y, IA55,+) 1455.0 1455,1) 14,i`.i,() 1411.8 30 1405.0 145'54 14,55,0 1453,0 1455.0 1455,0 1455,0 1455.0 1455.0 145560 1455.0 142812 31 1405.0 14:i5.0 1455,0 1455►0 1455-D 1455.0 1455-0 i453 0 1455.0 1455.(1 1455. 0 1434.9 32. 1435.1 1455,0 1455,4) 1455.() 1455,1) 1455.0 1455,() 14.55,1) 1455.+) 1455.4 1455.1) 14'i'i.0 AVE 142`.3 1455.0 1455,0 14530 1453.R 1453,5 1453,5 1451.9 1453,1 1455.0 1454.7 1427.5 !• � � iiiiiiilf 111s � 1� � 1� M4+� � � it » � � ii• iir '� � ' ENERGY FROM RESPR►111IR 7 t WH} OCT NOV DEC JAN FEB MAR APR MAY .111H Jill. A11G SEP A14H 1 214,1 337.6 404.9 375.4 319.0 2Ri.7 232.4 204,5 1139.0 IV4.3 342.2 259.3 33549 2 203.7 2.22.0 261.6 241.4 189.6 213,7 220.5 254.7 180.3 IRS , 3 340.0 232.5 :-1.747. 4 3 205.7 321.0 406.3 376.6 325.9 318.1 234,8 187.0 233.5 2060 339.9 24A.1 3401.7 4 208.9 337.4 406.1 375.9 326.3 322.1 255.3 316.0 313.3 1R61B 333.1 231.9 31,33. 1 5 210.3 221.9 382.2 364.E 319.6 297.7 242.7 320 , :3 220.5 1 T 3. 0 316.4 236.4 331 .5 6 211.9 224.1 407,5 377.5 327,7 339,3 241.4} 201.0 263,1 244,8 :i`ih,5 311.1 r5()8.3 7 247.5 345.7 404.8 375.2 31B,5 291.E 234.5 37.1 ,1 ;316. 4 2911. B 379,5 4:32 .0 3965. 58 7.66-S 357.8 406.4 376.4 327.2 336.2 274.4 236.1 :303.6 192,4 342,7 256.9 3674,:1 9 331.4} 360.5 414.4 377.1 325,6 334.8 294.1 25H,1 249.2 171)f 2 336.,3 1;1 i.3 3727.1 10 208.6 227.2 260.8 31949 326.9 292.5 247.4 2R0.2 20R.A 205.6 330.8 40H.5 3306,7 11 293,3 35S,3 407,4 377.11 .127,2 315,9 275,4 300 2 130,7 1'7".i.4 330,4} 22.6,:3 3606 2 12 205.9 329.R 4[19.6 3H2,91 t30,8 338.4 2911.7 310.4 321.9 731.8 352.7 244.7 3757.9 13 2.09.1 311.0 407.4 376.2 32A.6 3315.8 2135,9 223.9 326t7 265.1 446.4 432,0 3946.1 14 301'.1 352.5 4►}4.7 376,4) 317.2 334.A 161,+} 314,7 307,9 304.2. 35A,9 344.0 390+}.9 15 291.3 355.0 405.2 37563 325.9 285.5 229,1 1116.0 ;3'30.6 270.E 354.7 254,8 366411 16 211.8 283.R 403.4 375,2 316.6 292.1 249,5 228.4 23Y.6 244,6 TW.1 2?3.1 3476,2 17 307.4 349.4 406. 6 376. R 327.6 319.0 25R .1 201,3 326,3 I V6.5 32893 245,2 3641, rf I 20S.6 221,9 26o.7 309,iP 379,5 2V9.3 240o3 292.7 302.E 210,5 417,3 432.1} 3575.4 19 245.4 353■9 4(;9.1 377.0 327*5 337.0 2V5, 1 306.7 313.5 2R9.4 341.5 252.3 3B48.4 20 20,4.5 ?20,9 258.2 241,3 312,3 2.1)9.0 251.9 172,7 172,9 194,9 359,2 259.2 29i5.8 21 212.1 230.0 271.2 321.6 53,9 21,5 30.1 194,0 203.2 201-2 335,4 251,0 ? :30.2 22 218.1 233.R 270.6 247.5 193,9 21R.9 2.13.2 102.0 211.7 197.2 32T.5 252,3 :?7i87 23 244.3 310.9 407.7 379,2 3211.9 330,1 2Y5.7 333,3 324,1 772-9 361},5 264.5 :1N21).3 24 200.6 313.4 404.3 374.9 326.5 307.6 219.2 194.3 215 * 7 187.9 347,1 .157.9 3.7158. 1 25 204.6 221.1 259.R 23948 180.3 261.7 237.0 306.1 188,? 11•,840 344,7 243,6 2lh4 .3 26 205.8 223.5 21,4.4 244.2 192.4 217.0 11i30 265.1 311.2 2RR.9 346,3 245.6 29911.0 27 24R.9 347.7 404.1 368.6 318.0 290.9 246,9 213.3 202.3 187.6 356.8 255.8 3440.6 28 207.7 227. R 267.1 244.4 191 , E 2T4,4 254.6 217. P, 321.1 275.7 35:4.5 255.4 311211 29 210.8 .144.8 408,4 377.9 3211,1 337.1 294.7 210.3 175.1 1115,6 3420} 254.2 347.5.9 30 211.0 2.26.9 264,0 242,T 190-5 213.5 229*7 25i9.0 238-7 278-5 337.7 25r5f.H PY48.3 31 207.9 279.1 405.9 376.0 326-5 335,8 290.7 202,3 29716 29p.0 3158.4 257,.8 3631.9 32 250,6 356,1 404,1 376,1} 325.11 33'5,1 7.711.3 111.1 175o5 264,9 44614 40016 3224.6 AVF 230.2 2. 4.4 361.2 341.3 2.91 .3 292.:i 248.4 245.0 2 t3.2 2 30.:i 35i:3.2 2112.7 :142' ,, . 9 33 w .w om "R 3o w. ma lnm I.. rally .rr .. rr --r !• 1 TOTAL. ENERGY PRI11)l![:E1] (GWH) OCT NOV DEC JAH FER MAR &R MAY Jlli2 Jill. AW; SEP ARN 1 131.7 728.4 870,7 796,0 666*9 5Hf1.5 471.4 355.5 324.6 331.9 49:i.8 53V, 5 6,599.7 2 653-V 471,9 531,4 id4.2 392,0 438.5 4440] 471,3 325,1 3211,11 491.E 474,1 'i'.'i66.9 3 561 .0 6B9.6 f370.9 7V6.5 6H2, 3 65641 477,9 354 , 0 340.8 ?,4h,'i +39.2 464.4 6772. 3 4 'i72.5 767.3 870.7 796.7 692.4 664.3 517, 4 555,1 525, H 3.31 ,'i 476,6 390, 1 7i i0.? 5 Si7,6 472.'i 1119, 1 "7'7r,3 667.3 592.8 491).3 5-,Q, 1 332.0 331.4 444.7 317:!.4 5',i�} .5 6 610.2 473.3 871.1 796.E 602.6 698.6 4HS'.6 354.9 438.0 434.0 6*27,1 7137.1) 7263.0 7 525.4 750.9 870.6 796, 2 664.7 598.8 474,7 n54,3 525.8 517.1 700 o .i V45 . ' 7934.0 8 548.6 766.9 870.7 797.1 683.0 692.4 N56.1 404.7 526.0 331.9 539.1 597, 5 7314.0 9 676.9 767.3 H75.5 796.5 682.4 6Y3.4 5VB .2 463.7 440.1 331-9 '50 .7 475.6 7307.3 10 658.4 472.3 552.0 672,6 679.4 '599. 6 4HH, 1 445.2 3241.E 331.8 543.7 794.5 6:i62. 3 1 ] 613.0 76E•.R H'70.6 797.0 603.0 692.3 :i.39.7 554,1 324, 1 332.0 463',1 377.6 703R. � 11 511,1 706,6 070.(i 1102,11 61111,1 69210 911,1 5,55,0 526.1 3113.9 617.4 00.3 748,11.9 13 570.3 670.8 874. 8 796. 8 682.9 692.3 'i79, 9 4"(1, 2 525. 7 517. 6 985 .1 918.1 #i;?'}6 , 4 14 636.5 766.9 870,7 797.0 683.0 692, 3 '532.9 555,2 5)25 6 51f,. 1 69U, B 755. V 024.7 15 611.8 767.8 870.7 796,0 680.fi 58H.5 465.6 357.H 525,7 517..' 624.0 45142 72U7,4 16 622,0 611.1 870.6 797.7 663.4 603,2 505.E 422.7 400.3 413.7 546,3 Fy0.4 7F.47,0 17 629.3 753.8 870.7 796.2 682.1 65-1.9 518.7 355.0 525.6 331.2 41,5, 8 430.3 10] :.J.7 18 658-3 472.2 552.0 650,E 684.6 613,2 4114,9 534,5 525-9 44Y.4 752.4 953.4 7333.3 19 ;20, 1 766.7 878.1 796.9 683.0 692,H 5V7.11 T54.4 521,45 517, 3 495.6 511.0 7540.0 24 A57,6 477,2 551.7 510.8 653.0 595,8 509,9 355-6 324.2 Ki4,7 S75,1) .115'.i,9 6117.3 21 640.0 471,4 350,5 506.0 71.7 41.9 61. 4 501, B 368,0 331, H 478.0 465.3 4491 , Y, 22 647.1 472.3 551.8 504.1 391.7 430*3 327,8 195.4 522,6 328.0 407.7 4116.9 5,Vi4,4 23 600,8 66B.8 870.6 797,1 682,1 692.9 577,8 554.4 526.4 510.1 636,2 580,2 77215.4 24 539.1 6f10.3 870,7 796.1 6f42,1 634.5 4H4,9 355.0 362.0 342,A 512,9 7-0.5 6IB27,8 25 655.1 472.1 551.5 504.2 392.0 53Y,6 4112,3 554.1 ;i24,4 331.3 500.1 471.4 :i778,7. 26 652.0 471.0 551.6 504,3 392.2 438,6 366.1, 461.5 5264i 517.5 562.2 523.5 r96H,4 27 5110.8 /53.4 87o.5 '10,7 663oll 597.7 49rr.3 355,'i 325,0 34211 554,i 'i57.3 688768 2B 654.0 472..2 551.9 404.5 392.2 601,0 510.8 353.4 526.1 317.E 623.4 452,1 f,i6112 29 609.9 734.5 870.6 797.0 683.0 692.6 597.5 430.3 324.9 331,9 495.0 513,1 7080.3 30 653.2 472.l 551.6 504.3 392.1 438.7 466.0 496.7 4137.9 501.4 532,3 443.8 5916.9 31 662..0 594,5 870.6 796.9 6H2.9 692.4 599.4 371.6 522.4 517.5 614,H 520.9 74:46.0 32 621.0 767.3 870.8 799.3 683.0 697.14 565.0 311B.4 332.0 448.6 988,8 8:19,2 H015,8 AVF 611.2 629,6 769.9 714.4 05.5 601.3 497.1 443.5 436, 0 405.5 580.3 74. 4WIR 17 �■■ ■4� ram :ram 4' 4m 1m wr4411r 4w 4 411413A r• 44444� 44444� 4144411• TOTAL U SAHLF f.HERGY (OW14) OCT NOV DEC JAN FFB MAR APR MAY JUH JUL AUF SEE ANN 1 2 431.7 A53.9 729.4 471,9 1470.1i 796.0 666.9 :iH8.5 471,4 355 -5 :424.6 331.9 495.8 538,;, 6599.E 3 561.0 689,6 551.4 870, 5 N04,2 796.1 397,0 682,11 4311,'; 4440) 471.3 325,11211,11 491,6 494.1 5.56S.91 4 572.5 766.8 870. 5 796,1 682.1 A56,1 664, 3 47749 517.4 A 54.0 30, 8 340.5 530.2 464,4 677110 3 6'i7.6 472,'.i H19, 1 772.3 667.3 5V2,0 490.3 5'54.3 533.1 521 s 6 332,8 .531 , 5 331,4 47646 .490.1 7147.7 6 610.7. 473.3 870.5 796.1 682.1 691 .9 489.6 354.9 438,0 4.34, 0 4407 'WS,1 39J.4 5684 B .S'02.5 695, 7 8 525.4 548.6 750.9 870.5 7516,1 664. 7 396,8 474.7 554.3 525.6 517.1 543.1 'i68. Ft t 7190.0 9 A76.9 766.8 766.8 870.5 870.5 796.1 796.1 682.1 6VI.V 556.:2 404.7 ''52`,.6 331.9 '.��i9.1 ;i6Fi.Ft 72R .Z 10 &SO-4 472,3 552.0 671,E 682.1 67Y.4 69119 599.E 597,6 463,7 440,1 :331 , 9 5050 0 475.6 729k. 8 11 613.0 766.8 870.5 796.1 6H2.1 191 , 9 443H.1 559.7 445,2 554.1 324.6 :374 2 .131.F1 332.0 543,1 '.iliF1„4 .53:i'i.9 17 61 1 .1 706.6 870.5 796.1 682.1 691 .9 597.6 :;:i4.3 , 525,E 3V3, 9 40.1 543.1 377.6 43(1,3 7036. 0 7393.3 13 14 ; 78.3 636.5 670.8 766.8 870.5 796.1 682.1 691 .9 579.9 430,2 525-A 517,1 `54:3. 1 51,8.8 7454.4 15 61 1 .8 766, 8 970.5 870,5 796.1 796,0 682.1 691.9 532.9 554.3 525.6 517.1 543.1 56H.8 711HI5.6 16 622.0 611.1 870.5 796,1 680.8 663.4 :iHB.:i h65, F :i:i"l. F3 525.E 517.1 543.1 451. 2 7175,0 17 A29.3 753.8 870.5 796.1 682,1 03.2 653,9 :i(►:i.6 422, 7 400, 3 413,7 543.1 568,S 7020.4 19 .5'.iil,3 472,2 5i2,o 650,6 6112,1 613,2 5111-7 4114.9 355,0 5341S 525.6 525,6 331.7 46:5.14 '543,1 430.3 7012.3 19 520.1 766.7 870.5 796,1 682.1 691.9 39 f, 6 5:i4.3 52'i, 6 449,4 517,1 49:;.1, 50,8 1.511. b 67341.6 20 657.E 472.2 551.7 510,8 653.9 'i95.B 509.9 355,A 324.2 354.7 543.1 5.55.9 75211. 085,4 21 22 640.D 471.4 550.5 506,0 71.7 41.9 61.4 505.8 360,0 331.0 4711.0 465.3 4491,8 23 647.1 600.8 472.3 668.8 551.8 870.5 504,1 796.1 391.7 438,3 327,0 195.4 522.E 328.8 AR'/.7 486.9 `354.4 24 539.1 AR0.3 870.5 796#1 682-1 682.1 691.9 6:34,5 59-1,6 554,3 1325,6 517.1 543.1 568.8 7616.E 25 .55-1 472,1 3%* y 504,2 392.0 539-6 4114,9 4112.3 :355.0 :562.() .542,6 512.9 567.5 682y..4 26 652.0 471 .8 351.E 504.3 392.2 438, 6 366. 6 554.1 461.5 37.4,4 525- 6 311.3 :i17. 1 54i).1 543.1 471.4 W78.2 ?7 SAR.R 7i3.4 870.5 780.7 663.8 597,7 h911,3 355-5 3:25.0 342.1 54:3,1 .`i73, :; 5:i-7,3 59414,0 6Fi76.3 28 29 654.0 609.9 472.7_ 734.5 551,9 870.5 504.5 392.2 601.0 51(i. 4l :i:i.�, 4 'i2;:.6 ri17,1 54391 4:i2.1 6(�79.9 30 653.2 472,1 551.6 796.1 5504.3 602* 1 392,1 691,9 431R.7 597,5 466,8 430.3 324,9 331.9 495.0 513.1 7077.E 31 662. 0 594.5 870.5 796.1 682.1 691.5, 3H9. 4 496.7 3,)1 # 4 457.9 522,4 501.4 517,1 532.3 543 l 443.8 520.9 :i91is.9 7.161.6 32 621.0 766.8 87015 796,1 682.1 6YI.9 565.(1 3118,4 332.0 448.5 , 54A. 1 48,11 7274.7 AVE 61112 629 - 5 767,2 713.7 6 1) 5 p 0 600,11 497.1 443.4 435,11 405 s 319.2 506.3 6736.5 FORECAST DFHAHA hHERSY (GMH) OCT NOV DEC JAN FEB HAR AFR MAY JU14 Jill, AUG 5EP 677. 0 766. 8 870.3 796.1 602,1 65/1.9 :i97, 6 554.3 525, 0 517.1 54A.1 56H. H 7790. 5 PRE --PROJECT FLOW AT GOLD CREEK (1:fs) OCT NOV DEC JAN FEB HAR APR MAY JUN Jul. AUG SEP 1 6335.0 25R3.0 1439,0 1027.0 708.0 7260 070.0 11,i10,0 1'1 00,0 22600.0 1980.0 SA01,0 2 3848.0 1300,0 1100.0 960.0 820.0 740,d 11,17.0 14090,0 20790.0 22570.0 IV670,0 21240,0 3 5571.0 2741.0 1900.0 1600.0 10000 RR0,0 920,0 5419.0 32370►1 26390.0 20910,0 144R(),O 4 0202-0 3497.4) 17000) L100.0 020,0 0200) Lb15-1) 19271)-0 27324),1 241200.0 20610o) 15270,0 5 5604.0 2100.0 1500.0 1300.0 1000.0 780.0 1235*0 17200.0 25250.0 2030.0 261(f0,0 12920,0 6 5370.0 2760.0 2045.0 1794.0 1400.0 1100.0 1200.0 7 3190 29860.0 27560.0 21,577)0, 0 14290. 0 7 4951 .4) 11100,1) 13413), 4) 980, 0 970.4) 9441.4) 950.0 171,10) .0 3334o o) 31 o94) . 1 74*Q1) , 9) 1'03:34) . 0 8 5806.0 3050.0 2142,0 1700.0 1500.0 1200,0 1200.0 13750.0 30160.0 23310.0 20540.0 19H00.0 9 R212.0 3954.0 3264.0 1965.0 1307.0 1148,0 1533.0 129(10,0 15700,0 22880.0 22540.0 755'0,0 10 4811,1) 21,50.0 L;i13.o 14411.1) 1307.0 9H4).0 L2i1),4) 11991),() 2.3120.4) 2:i4)w),4l 311;14).4) 16V.!().0 11 6.5,58.0 2850,0 2200.0 1H45.0 1452.0 11y7.0 1300-0 11,37110,0 1,,530,0 22HO.0 235VO.0 2015A0,() 12 7794.0 :3000.0 2040 2452,0 1754.0 1810,0 26504 17360, 0 29450,0 24570.0 22100.0 13.170.0 13 591A - 0 2700.0 2100.0 1900.0 ISOM 140(1,0 17000 12590.0 43270,0 2585010 23550.0 150010 14 6723.0 2800.0 2000.0 1600.0 1500.0 1000.0 430-0 1YO30-0 ?6000.0 34400.0 231,70,0 12320.0 15 6447,0 225f),1) 14Y4.0 10411.0 1166,4) 713,1) 7r45,1) 4307,0 50530.0 22V50.1) 16d41),1) 9571.0 1l+ 6291.0 279V.0 1211.0 90.0 R60,0 900.0 1360.0 1299040 25712" . ,, 27R40. 0 21120,0 19350,0 17 7205.0 2098,0 1631.0 1400.0 1300, 0 1300.0 1775.0 9645, 0 32V50.0 19 ,60.0 21830, 0 11750, 0 18 41A3.0 3600.0 1 ,RO.O 1500.0 1400.0 1200-0 110.0 154H0,0 29510.0 26800.0 32.620.0 1070.0 L9 4900.0 23'53,0 207i.0 1901.4) 1400-4) 1700-0 1910.0 L&181),1) 315b1),4 26421),Q 17170.0 1,41116.0 20 3827. 0 1630.0 882.0 724, 0 723,0 R16. O 1510. 0 11050, 0 1'SS00.0 1610(1,0 HF,79, 0 5093, �) 21 3124 .0 1215,0 866.0 824.0 768.0 776.0 1080.0 113800 l8f,30, 0 22660.0 19980.0 9121 0 22 7288.0 3407.0 2290.0 1442.0 1036.0 950.0 1092.0 374a,0 32930.0 234':i0.0 :',19i(i,o 14440.0 23 5847.0 3093.0 2510.0 2: 39,0 2028,0 11123.0 1710,0 211190.0 344.0.0 22770.0 19290.0 1200.0 24 4 H?S , () 2253,1) 1465.4) 12004 1) 12ot) , 0 00010 1027 , 4 H 2:15 4) 7..7,300.0 10251), , 0 20290 ,1) 9074.0 25 3733.0 1523.0 10.44.0 R74.0 777.0 724.0 992.0 16IRP V 17070.0 18800.0 16220.0 12250,0 26 3739.0 1700.0 1603.0 1516.0 1471.0 1100,D 15M 0 15Y50 P 32310.0 27720.0 1f,090.0 16310.0 27 7739.0 1993.0 1091.0 974,0 950tO 9OOtO 1373.0 12620.0 24380,0 18940.0 19800.0 6H111.0 28 3874.0 2650,0 2403.0 1029.0 161.8*0 15000 168(4.0 126110.0 3797000 22870.0 19240,0 12640.0 29 7571.4) 3525.0 25119.0 24129,0 166H,4) 1.34)(i.0 1702.0 11951).() L9051).0 21021),4) 16390.4) RA07.0 30 4907.0 2535.0 16R 1 , 0 1397.0 1286.0 1200 t O 1450, 0 13870. 0 24690, 0 288190,1 20460.0 10770.0 31 7311.0 4192.0 2416.0 1748,0 1466,0 1400.0 1670,0 12060.0 29040.0 32660.0 203+80.() 13280.0 32 7725.0 3?86.0 1773.1 3453.6 1235,6 1114.3 1367,5 13316.7 18143,0 32000.0 38530.0 13171,1 AVE 5756.7 2568.4 1793.2 1462 * 8 1242.8 1123,2 1377.0 13277.4 27657, V 24382, H 21 M * 5 13174.5 POST —PROJECT FLOWS' AT ("RILU CREEK ((,F$) OCT NOV DEC JAN FF8 MAR APR MAY .1UN Jill. ALTO SF.P 1 7179.2 10934,4 11578.2 11650,3 lo93Y,:4 31165 3 7471,H 7324,3 7173,9 /206.1 114)44).4) 7:3i)4).0 2 674R. 5 7141.1 8134.9 7497,6 6524.0 6631 .9 7138 - 6 87V4.5 6:i5:i,1 6708,4 12000.0 93(0.0 3 6839. 1 10411.1 12668.9 1172A .9 11180. 6 9E1:i9, 6 7-522, H 61'V5.0 97V5. 3 7TO1. 5 12000.0 930�0 , 0 4 7307.4 11650.3 12668, 0 11689.6 11211.6 99H;3, 0 821.7.8 1 12 n5.3 12069. 7 6776,1 3 2Pfi0, 0 93(40, 0 5 7251.7 7247.7 11H96.3 11315.6 10979.B 8919,3 7H37.11 11270.4 9085.4 7156.4 12000.0 9300.0 4 72116,5 7392,2 12739.4 117112.4 11311.0 107),16,1) 7302. 11 7151,2 10161.0 HH414,;i 1201)1),1) 0444.4 7 7932.9 11123.8 12572.1 11425.2 10949. B 5/079, 3 7552.8 .l1:iF11,:i 122V, 2 110HB, 6 i f,t4. 5 1Fi:33(,.0 B 8787.9 11673.8 12693,1 1172169 11778.3 10458,6 HH33.H 1155A,0 1141.i.3 713?,1 1.'(4{�(..(i 10.1'72,R 9 1098 3. 0 11840 ,R 13134.1 11797.3 11207. y 10382,6 9465.4 900H, 2 9227.2 6982, 1 J. 2(00, 0 ?3 (In , 0 10 7116.3 7230.1 R1 F11 , F3 9993.1 117.86. B 9115113 71152,8 1(1727, 6 8422,7 794? .4 12783.3 14603.0 It 95.19.9 IL577.0 12749,7 11804,9 112#3[),1 11)419.3 HOW, .2 14)2:it) ,7 Ki76„i 7264.7 1200),1) 7;S41r).0 12 7203.6 10747.3 l7.RR6 , 7 1204518 114 12. H 1004.2 97;i9 , 4 1OV00. 2 A 2635 2 8H36. 7 12(s00, 0 5 .Wo . 0 13 7073.8 10062.9 12680. 9 11701.4 11234.2 10132.7 915 0,0 7353.5 12998.0 7031.9 14 9704.9 11332.8 125R0.8 11696-5 11281,'i x03;i6,;i 8332,7 1(4911.1 11714.1 11389.6 12000,0 1}:i'i0.9 15 9430.9 11473.8 12598.7 11638.9 11191 . z 8852.:3 ' 347, Fl 60(40,0 133(4:i. � 9.',f.6. 2 12000.0 9300. 9 16 7305,11 7195,E 124117.2 11641,1 lt)1i:f9,1i 9039,3 7961,1) 77AS-1) 9243.9 91114,7 12000-4) 1064 17 1018619 11311 , 8 12688.7 1173F1. 9 11?9;3 , 4 9947.7 B377. H 7117.0 1211Y9, :i 73H(I .:i t20U(r, 0 93(1(1.0 18 6931,1 7212,7 317115 9677,11 1I.QY,fl 93.19,3 771,9.1,3 14)r]6H.6 11;3:ii.1 91141,,) 15191.,1 1bF17B.4 19 7BR1.9 11423.0 12737.1 11751,6 11?100.9 10:i10,0 Y518,6 1065,"-1 12076.0 1047.1.8 12000,0 ?,;o0,0 20 67117,:i 7135,7 (3005,7 7477,4 10702,11 (W55,3 :i111,11 6°i,54,d 6057.7 A4Hd,r) 120')0.1) V31)0.0 21 7080,2 73YO 60 R418. H 10317, B 2047,3 776.0 101;0, 0 6901 , 5 8037, 8 7874..1 12000.0 9:300. 0 22 7557.0 7774.9 B559.3 7753. 4 6710.4 6Fi31 .3 8510, 0 374'f, 0 81135, 2 0B(4.6 12000.0 9300. 0 23 6804.0 10095.2 12768,5 11Fa92.6 11417.0 10:387,8 9565.4 12.W.7 17826,1 9467.1 12000.0 9300,0 24 6490.8 100H3.6 12541.9 11419.5 11214.1 9529,3 7629,H 6010,9 8278,7 64B4.0 12DO0.0 9300.0 25) "121).4 7103.9 0040-5 7473,Y 6457.3 $14)1,8 7:i94.11 10611,'i 7121.1 6306,9 124)4)4),4) 9:ir)E1.0 26 6849.9 7200,1 8268.7 7634,9 6697,7 681844 59H9,5 9407.4 11922,4 10437.6 12000.0 93G(4,(, 27 R527.6 11216,8 12532.2 11440.0 10929.8 9039.3 7975.H 7BH9,9 8011-2 64114.0 12000.0 9300.0 28 7001.4 7515,6 8491.4 7707,6 6687,1 9214,6 820 2.8 8183 - 5 12592.0 ?62B.:i 12(iD0.0 9300,0 29 7354.7 11299,3 12808.2 11810,6 11340.4 10515.5 9493.5 69116,4 6212,7 6662,3 12000.0 9300,0 30 7170.6 7439.1 3277.3 7S132,1 6,S96,6 S6111 ,1 7305.5 11522.2 32434 1000,2 1200f) , 6) 9 3dr). 0 31 7096.2 9128.8 12649.5 11689.6 1122S.4 10430.0 9357 - 5 021.7 1230649 111146.2 12000.0 9'.00. 0 32 8334.0 11432.7 12677.1 1173?.5 11268.2 10448.4 8994,4 B150.2 AC100,0 hV40.5' :21thf,.;' 13171.1 AVF 7705.9 9563.6 11277.3 10643.3 10041.0 9100, 7 R024, 1 F1E, 21, 0 9H6U , 6 8389, 4 11633,5 10486.8