HomeMy WebLinkAboutLIDAR Improvement to Interior Wind Energy Assessments Project Murphy Dome Detailed Report - Jan 2024 - REF Grant 7015018Murphy Dome, AK
Detailed report
DNV
Golden Valley Electric Association
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This application was created using the trial version of the XtraReports.
Table of Contents
1 EXECUTIVE SUMMARY
2 PROJECT DESCRIPTION
2.1 Site Summary
2.2 Sensor Summary
3 STATISTICS SUMMARY
3.1 Data Statistics
3.2 Wind Roses
3.3 Frequency Distributions
3.4 Diurnal Variation
3.5 Turbulence Intensity
3.6 Wind Shear
3.7 Site Conditions
4 DISCLAIMER
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1 EXECUTIVE SUMMARY
The monthly data summary is not a detailed analysis intended for use in making long-term energy estimates. The
monthly activities provide a general validation and summarization of the data, presented in a cumulative format.
This includes elimination of data associated with mast shadow, icing, intermittent sensors, and failed sensors. The
data summary does not include the detailed analysis of the data that is needed to address relatively small mast
and boom effects, small sensor discrepancies, and other anomalies that may occur. While the validated data
provided in the monthly processing provide a building block for evaluating a site's resource, they are not being
delivered as a final resource assessment.
The information provided in this monthly data summary is based on the validated data but does not include
detailed analysis and should be considered preliminary. For example, invalid data have not been replaced, and no
consideration has been given to the long-term representativeness of the data that have been collected and
reported in this summary. Additional analysis is required to establish a representative long-term data set.
This Report is available as part of On -Line Material which your DNV Service Provider (being a member of the DNV
Group identified in your Service Agreement, defined below) makes available through the Resource Panorama
Website as part of the services referred to in a written agreement ("Service Agreement") between you and your
DNV Service Provider. Accordingly, this Report is subject to the legal disclaimer and conditions which are available
on the Resource Panorama Website and which you accept by accessing the website. "DNV Group" refers to any
entity that directly or indirectly is controlled by DNV Group and its successors, and "On -Line Material" refers to this
Report and any other material available on the Resource Panorama Website.
2 PROJECT DESCRIPTION
2.1 Site Summary
The Murphy Dome project is located in US - Alaska. The resource measurements have been taken at the site using 4
measurement devices at the project Murphy Dome. Measurements were taken from September, 2022 through
January, 2024
Name
Tower (Type)
Installation
Date
Coordinates
Coordinate System
Elevation (m)
Latitude
I Longitude
Easting
Northing
Mast 0101
Tubular
Sep 28, 2022
64.95
-148.44
431994
7203210
777
Mast 0102
Tubular
Oct 01, 2022
64.93
-148.52
428052
7201132
852
Mast 0103
Tubular
Oct 02, 2022
64.99
-148.48
430366
7207842
664
Name
Installation
Date
Coordinates
Coordinate System
Elevation (m)
Latitude
Longitude
Easting
Northing
Lidar 1921
Nov 22, 2023
64.93
-148.52
428015
1 7201062
854
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
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Page 17
January 204
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The sensors used for the wind roses are NE60 and WD55.
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Page 18
June 2023
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October 2023
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Page 20
September 2022
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Page 21
Januar 2023
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Page 22
May 203
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The sensors used for the wind roses are NE60 and WD55.
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Page 23
June 2023
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Page 25
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Page 26
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May 203
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Page 28
July 2023
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Page 29
November 2023
10% 0% 301
0
0-3 3-6 6-9 > mis
January 2024
1 D%n 00%,
0-3 3-6 6-9 > ,.m s
December 2023
4 10% 0%
0-3 3-6 6- rrs?s
October 2022
t 0°Ic 0%
0-3 3-6 6-9
301
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 30
November 2022
10% 0%
0-3 3-6 6-9 > rn s
January 2023
10% 0%
d
0-3 3-6 6-9 > :.m's
December 2022
.-X-z,,D% 0%
0-3 3-6 6-9 -m!s
February 202
0-3 3-6 6-9
30{
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 31
March 2023
1 M/n 0 %
0- 3-6 6-9 > m s
May 2023
10% . 0%
0- 6-6 6-9 > ,.m s
3.3 Frequency Distributions
April 2023
0-3 3-6 6-9 > m— s
June 2023
0c'c
t 6°lc 0%
0-3 3-6 6-9 5 rn!s
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 32
3.3.1 Lidar 1921
The sensors used for the frequency distributions are WS120 and WD120.
10'•.
8:X.
6.
U
1i 4
2
0
0
20%
164E
' ig46
c
0
PR
4%
Measured
Weibull
■ A = 9.22
■K = 1.71
2 4 6 8 10 12 14 16 18 20 22 24 26 28 30
Wind Speed [rn!s]
040-0�����������
0 2 q 6 & :a 12 to 1B 18 20 22 24 26 28 3?
Wind Spud imm]
20%
10%
L MID
4%
U 2 4 6 8 '4 12 :-; 10 18 20 22 N Zb 28 30
Wind Speed Im:sl
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 33
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
P�;aaaaaaaaaaa�a �aaaaa�aa� i f
0 2 4 d 9 10 12 t4 16 YS 20 22 24 M 26 WD
W.M S d (rrlls]
3.3.4 Mast 0101
The sensors used for the frequency distributions are NE60 and WD55.
a�
T 8,x.
LL
4%
2%
0
0
2 4 6 3 10 12 14 16 18 20 22 24 26 28 30
1'Fnd Speed [rn?51
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 34
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
4%
44:.w iaaaaaaaaaaETl I — #
4 2 q b $ iQ 12 m 16 18 20 22 24 26 26 M
Wind Speed [mist
�i' 1246
c
0
F
ryA i.iaa aiaa aaa
VV 0 2 4 Is 8 10 12 14 16 18 20 22 24 26 28 30
Wind Speed [mrs]
LL
4%
q��aiaaaaaaaaa �I � I — �
U 2 4 8 9 10 12 1-0 16 i8 20 22 24 26 28 33
Wmd Speed [mJsj
_9
LL 8'D
4%
O ;asaa as aaTa ���a�aT N
0 2 4 $ 9 t4 12 m 16 18 20 22 24 26 28 3b
Wind Speed [mfsj
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 35
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
4%
qr�;ssaaaaaaaaaaa �a��l I h
b 2 4 b $ iQ 12 m 16 48 20 ' 24 26 28 3s
Wind Speed [mist
�i' 1246
c
0
B�TF
4%
q�;�aaaaaaaaaaaa �a��l I �
0 2 4 IS 8 16 12 14 16 78 20 22 24 26 28 30
WIM Spared jo s]
LL 89�
4%
aaaaaaaa MMMMMMMa l
2 4 6 9 '4 12 14 16 ;8 20 22 24 26 29 36
W+rtd Sp*od Imml
p
sM aa�aaaMM MMMaMaMa MaM .
q 2 4 $ 9 14 6 2 12 1-4 16 18 20 22 24 29 30
Wind Speed [mrs]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 36
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
4%
�i' 1246
c
0
69b
4�
LL an
V
4 2 4 3 8 10 12 14 16 48 20 22 24 26 28 30
Wind Speed (tnfs]
2U%
F,Eovernher 2Q22
1696
M Measured`]
12'm
— Weibudl
■ A : 8.24
■ K . 2.94
li
8%
4%
41r
6 _ a 16 8 10 12 T4 16 18 20 22 24 26 28 36
1hiM speed joss]
D 2 4 3 8 10 12 sq 16 18 20 22 24 26 26 30
,rd speed (mrsj
O MMMMMM '
0 2 4 $ 9 14 12 1-416 18 20 22 24 26 26 30
Wind speed (rrvs]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 37
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
a
qr*�=aaaaaaaaaaaa ��� it I - i�f
6 2 q b $ 10 12 m 16 18 20 22 24 26 28 30
Wind Speed (tnfs]
�i' 1246
c
0
4%
0 2 4 IS 8 10 12 T4 1s 16 20 22 24 26 28 n
Wind Speed jo s]
r0's�
LL On.
49b
I: ebru Bry 2023
Meaeufeu
— WeibWl
■ A a 7.49
■ 14=1.85
OW ;ss!!!!a!alaaa!! - ii I
4 2 4 8 8 0 12 14 16 ;8 20 22 24 26 28 34
WaMd SpAed Im.1t I
L 07D
4%
0 2 4 $ 9 14 12 1q 16 18 20 22 24 26 29 30
W{nd Spe6d fms]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 38
This application was created using the trial version of the XtraReports.
2Vi-
169E
C
, ���li i,=RBiM , I
a 2 4 d & 11D 12 t4 A iS 2a 22 226 26 36
Wires Sid jinlsj
3.3.14 Mast 0102
The sensors used for the frequency distributions are NE60 and WD55.
lL 4%
2%
0%
0
2 4 6 8 10 12 14 16 18 20 22 24 26 28 30
Wind Speed fm/s]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 39
This application was created using the trial version of the XtraReports.
69E
4%
0%
4%
0%
LL On.
4%
0W,
4 2 4 6 8 110 12 14 16 18 20 22 24 26 26 30 0 2 4 3 8 s0 12 44 16 18 20 22 24 26 26 30
WiM Speed [mis] wmd speed [mis]
4%
0%
4 2 4 6 8 10 12 14 16 18 20 22 24 26 28 36 0 2 4 $ 8 14 12 14 16 18 20 22 24 26 29 30
Wind Speed jmis] Wand Speed fmN]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 40
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
A
QcEohar 2�23
Meeeuren
ilk
Weibvl
■ A a 9.23
■ K . 2.73
LL
8$c
4%
gwaTraaaaaaaaaaaaa �a¢I h
0 2 q 6 8 iQ 12 m 16 48 20 21 24 36 28 30
Wilms Sped (mis]
�i' 1246
c
0
4%
0 Taaaaa—aaaaa� �a I I . .1
0 2 4 Is 8 10 12 14 16 , 8 20 22 24 2�6 28 3d
Wind Speed jo s]
q'��asa�aaa�aT����a�a�aTl h
D 2 4 6 9 v I' 16 ; 8 20 22 24 28 29 30
W-nd Speed ]mis]
L Ow
4%
q-N. �a aa�-------'----------��r
9 2 4 $ 9 t4 12 m 16 18 20 22 24 26 29 30
Wind Spud (mis]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 41
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
A
S epl-ember 2022:
Meesuren
— Weibuii
■ A a 5.44
■ K - 2.21
49b
0 2 A 6 8 10 12 14 16 48 20 22 24 26 28 30
Wind Speed [mist
69b
4%
LL M
4%
p'# ;� . �r
0 2 4 8 A s4 12 14 16 ;b 20 22 24 26 28 34
World Spend Imrsl
2096
Novern6er 24�2
1696
Measured,
12'm
— WeibLAI
a A-BA9
■ IL=2.21
LL
8Hn
4%
V 4 2 4 IS 8 10 12 14 16 18 20 22 24 26 28 36
1hiM Speed joss]
V TP 0 2 4 g 14 12 14 16 18 20 22 24 26 28 30
Wind Spud [mrs]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 42
This application was created using the trial version of the XtraReports.
6, 12W.
C
a
� 69E
4'r
49E
I =�MM,M,M MERLE+. � . . — r
2 A d 8 10 12 14 16 48 20 22 24 2b 28 30
Wind Spud [mis]
0 2 4 6 8 10 12 T4 16 f8 20 22 24 26 28 30
Wind Speed jin+s]
r0's�
LL On.
4L�L
20%
16%
c
3
LL $
4%
1: bru pry 2023
"I Meaeufeu
Weibwl
a A a 6.72
■ K-2.12
0 2 4 8 6 * 12 is 16 18 20 22 24 26 28 34
Wmd Sp ed ]mis]
Apil =3
Measured
— Wsibull
7 A-4.80
■ K-1.S5
o
f} 2 } fi 8 z4 12 4 16 T8 20 22 24 26 2$ 30
W{nd Spud ]mrs]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 43
This application was created using the trial version of the XtraReports.
C
2Vi-
169E
May 21323
Me¢eurm
Weibuii
i A- 1A0
K - 0.00
0% 1 r
6 2 4 d 8 jiD 12 td 16 iS 20 22 24 26 26 20
WiM Sid Imis]
3.3.24 Mast 0103
The sensors used for the frequency distributions are NE60 and WD55.
LL
4%
2,
0%
0
2 4 6 8 10 12 14 16 18 20 22 24 26 28 30
Wind Speed frn/s]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 44
This application was created using the trial version of the XtraReports.
6, 12W.
C
A
4%-
July 2023
MMeasuren
irk
Weibwl
■ R a 4.65
■ K: 1.5S
ll
9�'G
V=
qn..;�aaaaaaaaaa��
2 4 b $ 1Q 12 14 16 }8 20 22 24 26 26 30
Wilms Spud [mist
�i' y 246
0
4%
a$w;saaaaaaaaaaa� . . —. i I
0 2 4 6 8 10 12 14 16 18 20 = 24 2$ 28 20
Wind Speed joss]
aye ;.:saa a aaaaaa IFLM l
b 2 4 8 6 * 12 sa 16 i8 20 22 24 28 22 34
Wand Sp,�6d]m;s]
October 2023 1
M Measured
— VI'eibril
■ K#�.13
p�
���aa�aaaa�a��� I.
�
D 2 4 fi 8 14 12 14 16 T8 20 22 24 26 28 30
Wind Spayed [mrs]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 45
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
A
r0's�
November 20.23
Meeeuren irk
Weibwl
■ A9.31
■ K R 3.31 LL 8$c
V
4 L-IM W =IFMMFALIFMIjLM #
6 2 b $ 10 12 41 16 48 20 22 24 26 26 M
Wind Sp"d
�i' 1246
c
0
4%
0 2 4 Is 8 16 12 14 16 78 20 22 24 26 28 n
WIM Spaed jo s]
b 2 4 6 9 s 12 sa 16 t8 20 22 24 2Fi 26 30
Wand Sped (n1ls]
L OW
4%
�s MMMMMMM�M��sl 5 r
d
4 2 4 fi 8 14 12 1-4 16 18 20 22 24 26 29 30
{nd Spud fms]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 46
This application was created using the trial version of the XtraReports.
�' 1 P9ti
C
A
November 2022:
�Meeeuren
irk
Weibwl
■ R 9.04
■ K * 2.61
LL
8$E
4%
4�T��aaaa—a�aaa� �a��r
4 2 4 3 8 10 12 14 16 18 20 22 24 26 28 30
WIM Spud [mis]
�i' 1246
c
0
7
LL VL
4%
OwT=.a----a ----a= �—-`v i r
0 2 4 Is 8 10 12 14 16 18 20 22 24 26 28 30
Wind Spud jo s]
OW,� , aaaaaaaaaaaaa�aaa�—�i
4 2 4 8 9 '-4 12 14 16 i8 20 22 24 26 28 30
Wirtd Sp*od ]mis]
_9
LL Ow
4%
0 2 4 fi 8 10 12 14 16 18 20 22 24 26 29 30
W{nd Spe6d fms]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 47
This application was created using the trial version of the XtraReports.
6, 12W.
C
� B$c
4°r
2 q b 8 10 12 m 16 48 20 24 26 28 30
Wind Speed (M. s]
4%
0%; taaaa-aaaa * i
0 2 4 6 8 10 12 14 16 T8 20 22 24 26 28 36
WiM Speed joss]
3.4 Diurnal Variation
LL On.
V
L 8'7D
4%
2 4 6 9 0 12 14 16 '8 20 22 24 26 28 34
Wlrtd Spwd jm:-�j
June 2D23
i Meeaureu
Wsibull
■ A-6.40
n%�
0 2a�aa�aaaa�a�—
4 9 10 12 1-4 16 T8 20 22 24 26 29 30
Wind Speed (rrlfs]
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 48
This application was created using the trial version of the XtraReports.
3.4.1 Lidar 1921
— Lidar1 21
WS89
CDV
Jridar19 1
VV 45
ODV
— Lidarl9 1—W
55
ODV
1-idar19 1
W 60
ODV
Lidar19 1
W 80
ODV
Lidarl 9 1
WS 100
ODl!
Lidar1921
W 1 0
ODV
— Lidar19 1
W 140—ODV
Lidarl9 1
W 150
ODIC
Lidar19 1—W
180—OD11
Lidarl 1
W 00—ODV
Lidar19 1—MetWS—ODV
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23
Hour All Year
bdar1921 WB39_MDV
udar1921 WW_MDV
LidarlWl WS5.5MpV
Lidar1927_WS50_MDV
udar1921 WSBO_MDV
LAW1921TWS100 MDV
Lrdar1921Si 20MDV
udar1921_WS140_MOV
Lodar!!Wl W5160 MDV
L4arlg2l YVSRO MDV
Lpdar1w1 Yv5200 MDV
—. L�1�f19�1 M�lWS lw40�+
Lrdar1921_WS39_MDV
Lrdar1921_VVS45_MDV
L`dar1921_WS55_MQV
LodarlWl WS60 MDV
Ldar19.21 WSBCl_MDV
Li ;30921—WS100 MDV
Lrdar1�21 YVS120 MDV
Lrdar1921 VV9140 MDV
Lidar1921_WSI-660 MDV
Lrdarl921_WS180 MDV
War1921 W9200 MDV
Lidi%r1921—Md91NS MQV
4 1 2 3 d $ d 7 9 9 +0 '7 Q 13 14 15 i$ 77 19 19 20 V 22 23 0 1 2 3 a $ j 7 3 9 i0 '7 i2 1� la 15 ie ' 7 1$ i$ 20 21 22 23
Hour November 202 Hour December 202
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 49
bdar1921 WS39 MCP.+
— War1921_ W—MDV
— Lidar1921_WS55 Mi7V
Ludar1971WS60MDV
— Lldarl$21 W59d MDV
LBdar79R1�WS100 MDV
Lidar1921�WS120 MDV
Lkdar1921 WS140 MOV
Lidar9921_WSM_MOV
Ddar1921_WS180_MDV
W4arlm — W8W MbV
— Ldd�r1921Me1y4�.S h4pV
�p
C_ Y
0 1 2 3 4 5 4 7 9 9 1031121314i510010i9202122.23
Hour January 2024
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 50
3.4.4 Mast 0101
— Mast0101
NE5.5
01N
MastO101
E3
01DV
Mast0101—
E45`OW
MastO101
E6
OD
E 10
_0 9
� 8
7
C 6
5
4
0 1
Mast0101 _NE30_00
N1astC)101_ E45_OD11
— ast0101 E 60 O Del
2 3 4 5 6 7 8 9 10 11 12 13 14 15 1E 17 1S 1920 21 22 23
Hour All Year
Mas10101 NE55 MDV — MasW101_NE30_MOV
MastO101_SE30_MDV MastdiOl NE4� MDV
Mas10i01_SEd MDV — MAstO101 - NE60- M V
— Mas14101 YMDV
12
11
t�
74
C
.Q
}C B
0 1 2 5 J 5 5 79 9 10 '1 1213141516t7191920212229
Hour June 202
Masi0147_NE55_MDV — Ma%*101 NE30 MDV
— Mas[CiO1_SESO-MDV MastOIDl_NF-4S_MDV
MaSI0f01 SEA- MDV — Ma340101 NE54 MEV
Ma5101Q1-SE60-MDV Y Y
12
11
iP
19
C b
V) 7
C $
1 2 3 4 5 J3 7 el 9 10:11215141516-?101920212223
Hour July 202
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024 Page 51
This application was created using the trial version of the XtraReports.
Mast01O1 NE65 MDV Mast0i41_NE30_MOV
— MastO101_SE30_MM Mastd161 NE45 MDV
— T,1aa10i 1 SE�5 MDV — WrAO101 NE60 M V
Ma910101-3E60-MDV - -
1
19
C
.Q
C �
4
0 1 2 3 4 6 -9 7 8 9 10 11 12 13 14 15 11, ' ? 19 7 g 20 21 22 29
Hour August 2023
Mast0107_NE55_MDV — Mas4O1Ol_NE30_MDV
— Mast0101 8E30 MDV Mas110101 NE45 MlOV
— MautQ1Q1 SE45 MDV — M i!M1Ql NE60 M V
— Ma910101-3E60-MDV - -
1
14
C
d
C 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 181920212229
Hour O 4b(�r 2023
Mast0147_NE55_MDV — Ma%*101_NE30_MDV
MastOiO1 9E30 MDV Mast0Ibl NF-45 MOV
Ma9lO$01 -
SE4S MDV — MaSN101 NE�O MDV
Ma910101-SE60MDV - -
12
11
19
7
d `
0 1 2 3 4 5 13 7 a 9 10 11 12 13 14 16 16 ;7 19 19 20 21 22 29
Hour September 2023
Mast0141_NE55_MDV Maat0101_NE30_MDV
Mas101O9_SE30_MDV Mast0IOl N€45_MDV
— Ma9101Q1 S545 MDV — Mast0i01 NE60 ME V
— h1a910t01--SE50MDV - Y
12
--11
frCL
;
c s
0 1 2 3 4 5 S 7& 9 1011121314151B17191920212223
Hour November 2023
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 52
Mast01O1 NE65 MDV MasW101_NE30_MOV
— MastO101_SE30_MM Mastd161 NE45 MDV
— T,1aa10i 1 SE�5 MDV — WrAO101 NE60 M V
Ma910101-3E60-MDV - -
1
CL
1fl
4
6 1 2 3 4 6-9 7 8 9 10'1121314151E'F191920212279
Hour December 2023
Mast0107_NE55_MDV — Mas4O1O1_NE30_MDV
— Ma&0101_SE30_MDV Mas110101 NE45 MlOV
— MautQ1Q1 SE45 MDV — M i!M101 NE60 M V
— Ma910101-3E60-MDV - -
1
14
C 6
z
C {
5
d
C 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 181920212279
Hour September 2022
Mast0147_NE55_MDV — Ma%*101_NE30_MDV
MastOiO1 9E30 MDV Mast0I01 NF-45 MOV
Ma9lO$01 -
SEAS MDV — MaSN109 NE�O MDV
Ma910101-SE60MDV - -
12
CL
c s
a
0 1 2 34 516 7 8 9 10 11 12 15 14 15 16 '7 19 19 20 21 22 29
Hour January 04
MastO1O1-NE55_MDV Maat0101_NE30_MDV
Mas101O9_SE30_MDV Mast0101 N€45_MDV
— Ma9101Q1 S545 MDV — Mast0i01 NE60 ME V
— h1as10101--SE50MDV - Y
12
--11
1U
� 6
V7 7
d
4 1 2 3 4 5 JJ 7 8 9 10 11 12 13 14 15 16 17 19 19 20 21 22 23
Hour Ootabar 2022
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 53
MastO1O1 NE65 MDV MasW101_NE30_MOV
— Mast0101_SE30_MM Mastd161 NE45 MDV
— T,1aa10i 1 SE�5 MDV — WrAO101 NE60 M V
Ma910101-3E60-MDV - -
1
1fl
C
VJ �
5
4
C 1 2 9 4 6 6 7 8 9 10 11 12 13 14 15 11, 7191920212279
Hour November 2022
Mast0107_NE55_MDV — Mas4O1O1_NE30_MDV
— Ma&0101_SE30_MDV Mas110101 NE45 MlOV
— MautQ1Q1 SE45 MDV — M i!M101 NE60 M V
— Ma91O101-3E60-MDV - -
1
14
C
4
C 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 1819202122H
Hour January 202
Mast0147_NE55_MDV — Ma%*101_NE30_MDV
MastOiO1 9E5O MDV Mast0101 NF-45 MOV
Ma9lO$01 -
SEAS MDV — MaSN109 NE�O MDV
Ma910101-SE60MDV - -
12
10
.Q
4
0 1 2 3 4 6 6 7 8 9 10 11 12 13 14 16 16 *7 19 19 20 21 22 23
Hour December 2022
MastO1O1-NE55_MDV MaatO101_NE30_MDV
Mas[O1O9_SE30_MDV Mast0101 N€45_MDV
— Ma9101Q1 S545 MDV — Mast0i01 NE60 ME V
— h1as10101--SE50MDV - Y
12
--11
1U
C
73
5 =
0 1 2 3 4 5 JJ 7 a 9 1011121314161617181920212223
Hour Februery 2023
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 54
Mast01O1 NE65 MDV Mast0i41_NE30_MOV
— MastO101 SE30 MM MasOiOl NE45 MDV
— Maal0i 1 SE�5 MDV — WrAO101 NE60 M V
Ma910101-3E60-MDV - -
1
19
C
5
1 2 9 4 5-3 7 9 B 1011121314161B1719ig20212279
Hour March 2023
Mast0101_NE65_MDV — Mastt]141_NE30_MD1�
— Masolol SE30 MISV Mas10101 NE45 MDV
MautO1Q1 554 MDV — h1a51Q141 NUQ M V
— M1a9101Ol-GE60-MDV - -
1
--11
E 10
_ 9
Q)
Q� g
CL
Lei 7
0 1 2 3 4 6 8 7 8 6 i0 11 12 13 14 15 18 17 1a ig 20 21 2t 23
Hour May 2023
M1ast0147_NE55_MDV — Ma%*101_NE30_MDV
Mast01O1 9E30 MDV Masi0IDi NF-45 MOV
Ma9lO$01 SEA--MDV — Ma3tU109 - NE�O- MDV
Ma910101-SE60MDV
12
11
19
C
U) 7
d
1 2 3 4 5 a 7 9 9 10 11 12 13 14 15 16 17 19 19 20 21 22 23
Hour AplI12023
DNV - www.dnv.com - Downloaded from Resource Panorama on 28 January 2024
This application was created using the trial version of the XtraReports.
Page 55
3.4.14 Mast 0102
— MastO10
E3
ODV
MastO10
SE4
O
— Mast010
E60—ODV
MaW10
NE3
00V
11
U)
E 10
_0 9
7
C 6
I
M astO `102_N E 45_0DV
M WO G N E60 0D
— M astO10 NE5 ODV
4 A , I I . 1 I 1 I . . . . . . . . . . . . . . Y
0 1 3 4 5 6 7 8 9 10 11 1213 1415 16171E 1920 1 2 23
Hour All Year
Mas10102_SE30_MDV Mas110102—NE45—MDV
Mast0162 SE45 MDV Masi0162_NE50_MDV
— Maa14i02 SE£O MDV — Mas.IiMF NE56 M V
Mas10102YNE34 MDY — Y
12
fit
t�
74
C
U)
C �
5
i 2 5 J 5 5 79 9 1011121314151E 7 191920212229
Hour June 2023
MastOIO2_SE30_MDV —• Ma%*102_N 45—MDV
— Mas[CiO2_SE43_MDV Mast0142_N 60_MOV
Vlas10102 SE60_MDV — MaSNIU Ni_55 V1DV
Ma510102 NE30 MDY Y
12
11
iP
19
C
C$
4
0 1 2 3 4 5 S 7& 9 10 11 12 13 14 15 16 t7 181920212223
Hour July 2023
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Mas10102 SE90 MDV —• Mast0142_NE45_M1DV
MastO102SE45 MM MasM2_NE50_MDV
— Maal01 SE£O MDV — Mastp102 NE55 MUV
Masl[OMYNE30 MDV — —
1
iP
19
C
.0 €
b
6 1 2 3 4 6 -9 7 8 9 10 11 12 13 14 15 16 ' ? 19 7 g 20 21 22 29
Hour August 2023
MaSt0102 SEaO MDV Mas40102 NE45 #,MDV
— Mas0102_9E45_MDV Mas110102_NE60_MIOV
— Ma910i02YSE6 _MDV — M i!M1Q2 — NE55Y M V
— MastOMNE30 MDV
1
CL
t�
14
r
c �
5
d
C 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 181920212229
Hour O 4b(�r 2023
MastOIO2_3E30_MDV — Ma%*142_NE45_MDV
MastOfi02 SE45 MDV MastOIO2 N 60 MOV
Ma910f02 SE60 MDV — Ma34p102 NZ= 5 MDV
Ma!10102—NE30 MDV —
12
11
iP
7.
19
C 6
d
C 1 2 3 4 5 S 7 d 9 10 11 12 15 14 15 16 '7 18 19 20 21 22 23
Hour September 2023
MaStOi02 SE9O MDV — Mast0942_NE45_MDV
Mast0102 SE45 MDV Mast4742_N 60_MDV
— Ma910102 SE60 MDV — Mas1010 NE55 ME V
— h1as10102yNE30 MDV — —
12
--11
t�
y9
C
u)
0 1 2 3 4 5 S 7& 9 10 11 12 13 14 15 1 B 17 191920212223
Hour November 2023
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Page 57
Mas10102 SE90 MDV —• Mast0142_NE45_M1DV
MastO102SE45 MM MasM2_NE50_MDV
— Maa10102 SE£O MDV — Mastp102 NE55 MUV
Ma910102YNE30 MDV — —
1
iP
19
CL
7 .
.Q
C 6
b
0 1 2 3 4 6 $ 7 8 9 1a 11 12 13 14 15 11, 19 19 20 21 22 79
Hour December 2023
MastO102 SEaO MDV Mas40102_NE46—MDV
— Mas0102_9E45_MDV Mas110102_NE60_MlOV
— Maa101 YSE6 _MDV — M i!M1Q2 — NE55Y M V
— Ma910102NE30 MDV
1
CL
t�
14
� 8
0
U) 7
c �
5
d
0 1 2 9 4 6-9 7 8 9 1011127514161Et7181920212279
Hour September 2022
MastO102 SEGO MDV — Ma%*142_NE45_MDV
MastOfi02 SE45 MDV MastOIO2 N 60 MOV
Ma910102 SE60 MDV — MaSNIN NE55 MDV
Ma!10102—NE30 MDV —
12
11 -
tn ---
19
9 —
.Q
7
yC 6
d
0 1 2 3 4 5 S 7 8 9 10 11 12 15 14 15 16 '7 19 19 20 21 22 29
Hour January 04
MastO102 SE9O MDV — Mast0942_NE45_MDV
Mast0102 SE45 MDV Mast4742_N 60_MDV
— Ma910102 SE60 MDV — MaaWI0 NE55 ME V
— h1as10102 NE30 MDV — —
12
--11
t�
19
C
cry �
0 1 2 3 4 5 JJ 7 & 9 10 11 12 13 14 15 IS 17 19 19 20 21 22 23
Hour Ootaber 2022
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Page 58
Mas10102 SE90 MDV —• Mast0142_NE45_M1DV
MastO102SE45 MM MasM2_NE50_MDV
— Maal01 SE£O MDV — Mastp102 NE55 MUV
Ma910102YNE30 MDV — —
12
CL
iP
1fl
7
5 —
4
C 1 2 9 4 5-5 7 a 9 10'11213141511, 7191920212279
Hour November 2022
MaSt0102 SEaO MDV Mas40102 NE45 #,MDV
— Mas0102_9E45_MDV Mas110102_NE60_MlOV
— Maa101 YSE6 _MDV — M i!M1Q2 — NE55Y M V
— Ma910102NE30 MDV
12
t�
9
A
CL
UJ 7
.Q
C 5
4
C 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 1819202122H
Hour January 202
MastO102 SEGO MDV — Ma%*142_NE45_MDV
MastOfi02 SE45 MDV MastOIO2 N 60 MOV
Ma910102 SE60 MDV — MaSNIN NZ= 5 MDV
Ma!10102—NE30 MDV —
12
to
CL
U) 7
C G
4
0 1 2 3 4 5 S 7 8 9 10 11 12 13 14 15 16 +7 19 19 20 21 22 29
Hour December 2022
MastO102 SE9O MDV — Mast0942_NE45_MDV
Mast0102 SE45 MDV Mast4742_N 60_MDV
— Ma910102 SE60 MDV — MaaWI0 NE55 ME V
— h1as10102 NE30 MDV — —
12
--11
t�
1U
3
C 0
[ 7
C $ -
5
4
4 1 2 34 518 7 8 9 10 11 12 13 14 15 16 17 19 19 20 21 22 23
Hour Februery 2023
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Page 59
Mas10102 SE90 MDV —• Mast0102_NE45_M1DV
MaStO102SE45 MM MasM2_NE60_MDV
— Maa10102YSE6 _MDV — MAsi01D2 — NE55 — VlUV
Masl[OMNE34 MDV
1
CL
iP
_ 19
5
1 2 9 4 5-3 7 9 9 10 11 12 13 14 15 11, �7 19 i g 20 21 22 79
Hour March 2023
Mas10102 SE30 MDV — MasWJ02 NE45 M1DV
— Mas10102 SEA MDV Mas10102 NE60 91DV
— Maa10102YMst0 SE6 _DV — MA1p2 NE55 MW
— M102 1a910 NE34 MDV Y
1
--11
E 10
_ 9
Q)
Q� g
CL
Y
0 1 2 3 4 6 8 7 8 6 W 11 12 13 14 15 18 17 1a ig 20 21 2t 23
Hour May 2023
Masi0102_3E30_MDV — Ma%*142_NE45_MDV
MaslOf02 SE45 MDV Mas#0142_N 60_MOV
Ma910102 SE60_M2DV — MaSNI NE55— MDV
Ma!10102—NE30 MDV
12
11
iP
19
� g
CL
U) 7
� 6 -
4 1 2 34 SIB 7 9 9 1❑ :1 12 15 14 i5 16 :7 12 19 20 21 22 23
Hour AplI12023
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Page 60
3.4.24 Mast 0103
— MastO10
NE5.
QDV
Mast0103_
E30_ODV
N1astO10
E45
ODV
Mast0103
E6
ODV
11
U)
E0
� 8
7
C 6
I
4
0 1
MastO1O _NE30_ODV
M astO103_N E45_0DV
r— f ast010 NE60 ODD!
2 6 4 5 6 7 8 9 10 11 1213 1415 16171E 1920 21 22 23
Hour All Year
Mas10103 NE55 MDV — Mast0103 NE30 MDV
tvlastOiO—SE50_MDV Mastdi63 NE4� MDV
— Maa10103 SE4 MDV — Mast0168 NE60 M V
Ma914100 5E60YMDV — —
12
fit
t�
74
C
VJ 7
,Q
C 5
d
C 1 2 5 J 5 5 79 9 10'1121314151617181920212223
Hour July 202
.� Masi0I03_NE55_MDV —• Ma%*1G3_NE30_MDV
Mas[CiO3SE30 MDV MasMIDS Nl=45MDV
MaSIO10Ci SEA- MDV — MaSNIC3 NE54 MEV
Ma510103—SE60—MDV Y
12
11
iP
19
C $
U) 7
d
C 1 2 3 4 5 JJ 7 9 9 14 *.1 12 15 14 15 16'7 19 19 20 21 22 29
Hour August 202
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Mast0103 NE65 MDV — .. Mast0103 NE30 MDV
— Mas0S03_SE30_MDV Ma!3iM3 NE45 MDV
— Maal0i0ci SE�5 MDV — MA6i0168 NE60 M V
Ma910103-SE60-MDV - -
1
iP
19
C
}
6 1 2 3 4 6 $ 7 8 9 10 11 12 13 14 15 1E 17 19 7g 20 21 22 29
Hour September 202
Mas10100_NE55_MDV — Mast0iO3_NE30_MDV
— Mas1OS03 SE3O MDV Mast01Q3 NF245 91DV
— Ma9101#3 5E45 MDV — M i!M1a3 NF60 M V
— Ma910103 SE60-MDV - -
1
--11
t�
19
CL
U7 �
c �
5
4
0 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 181920212229
Hour Novernb(�r 2023
Mast0I03 NE56 MDV — Ma%*1G3_NE30_MDV
Mas[0i'03SE3O MDV MastOI03 NF-45 MOV
Ma910104i -
SE45 MDV — MaSNI03 NUO MDV
Ma910103-SE60MDV -
12
11
iP
19
7
.Q
C 3 —
d
0 1 2 3 4 5 a 7 3 9 14 *1 12 15 14 15 16 *,7 19 19 20 21 27 29
Hour October 2023
Mast0f03 NE55 MDV Mast0943_NE30_MDV
Masl0f06_SE30_MDV Mast0I03 NF-45 MOV
— Ma9l01Q -3-E45 MDV — MaaWI03 N1=60Y MDV
— Ma940103SE60MDV
12
--11
t�
19
� g
CL
U) - --
0 1 2 3 4 518 7 8 9 1011 121314151617191920212223
Hour Dooember 2023
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Page 62
Mast0103 NE65 MDV — .. Mast0103 NE30 MDV
— Mas0103 SE30 MDV Ma!3iM3 NE45 MDV
— Maal0i0ci SE�5 MDV — MA6i0168 NE60 M V
Ma910103-5E60-MDV - -
12
to 11 --
19
UJ 7
.Q
C �
d
0 1 2 3 4 6 -9 7 8 9 10 11 12 13 14 15 16 - ? 19 7 g 20 21 22 79
Hour January 2024
Mas10100_NE55_MDV — Mast0iO3_NE30_MDV
— Mas10103 SE30 MDV Mast01Q3 NF245 91DV
— Ma9101#3 5E45 MDV — M i!M1a3 NF60 M V
— Ma910103 SE60-MDV - -
1
CL
t�
14
3 ,
.Q
7
C 5
4
C 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 181920212279
Hour November 2022
Mast0103 NE56 MDV — Ma%*1G3_NE30_MDV
Mast0103SE30 MDV Masi0a03 NF-45 MOV
Ma910104i -
5E45 MDV — MaSNI03 NUQ MDV
Ma910103-SE60MDV -
12
11
19
7
d
C 1 2 3 4 5 a 7 3 9 14 '1 12 15 14 15 16'7 19 19 20 21 22 29
Hour October 2022
Mast0103 NE55 MDV Mast0943_NE30_MDV
Mast0106 SE30 MDV Mast07Q3 NF-45 MOV
— Ma910104-3-E45 MDV — MaaWI03 N1=60Y MDV
— Ma9101035E60MDV
12
--11
CL
t�
19
C $
4
0 1 2 3 4 518 7 8 9 10 11 12 13 14 15 16 17 19 19 20 21 22 23
Hour Dooember 2022
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Page 63
Mast0103 NE65 MDV — .. Mast0103 NEW MDV
— MastOS03_SE30_MDV MasiOiO3 NE45 MDV
— Maal0i0ci SE�5 MDV — MA6i0168 NE6Q M V
Ma910103-5E60-MDV - -
1
iP
19
C
C} 7
.Q
C $
b
6 1 2 3 4 6 $ 7 8 9 10 11 12 13 14 15 11, ' ? 19 19 20 21 22 79
Hour January 2023
Mas10100_NE55_MDV — Mast0i43_NE30_MDV
— MasiO103 SE30 MDV Mast01Q3 NF245 91DV
— MaulQ$03 5E45YMDV — M i!M1a3- NF6Q- V1DV
— Ma9101U0 �E£�]MDV
1
CL
t�
14
� 8
3
cry
0 1 2 9 4 5-9 7 8 9 10 11 12 13 14 15 1B 17 181920212279
Hour March 2023
Mast0103 NE56 MDV — Ma%*1G3_NE30_MDV
Mas[OfiO3_SE3O-MDV MastOI03 NF-45 MOV
Ma910104i -
SE45 MDV — MaSNIO3 NUO MDV
Ma910103-SE60MDV -
12
11
iP
19
7
d
0 1 2 3 4 5 S 7 a 9 !a-11215141516;?121920212223
Hour February 2023
MastO103 NE55 MDV Mast0943_NE30_MDV
Mast0106 SE30 MDV Mast0I03 NF-45 MOV
— Ma910104-3M E45 DV — MaaWIO31=6 N0 DV
— Ma9l0103SE60-MDV YM
12
--11
t�
19
C 3
0 1 2 3 4 5 JJ 7 & 9 10 11 12 13 14 15 16 17 19 19 20 21 22 23
Hour ApH12023
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Page 64
Mas10103_NE65_MDV — .. Mast0103 NEW MDV
— Mas4O103 SE30 MDV Mastd163 NE45 91DV
— Maa10i0ci SE�5 MDV — MA!MIO3 NE6Q M V
Ma910103-5E60YMDV - -
1
9
C A
}
c s
6 1 2 3 4 6$ 7 8 9 1a11121314151E'.719ig20212279
Hour May 202
3.5 Turbulence Intensity
3.5.1 Lidar 1921
Masi0103_NE55_MDV — Ma%*1G3_NE30_MDV
Mas[OfO3_SE3O-MDV MastOI03 NF-45 MOV
Ma910104i 5E4- MDV — MaSNIO3 NE�O MDV
Ma910103-SE60-MDV -
12
19
i i i f
g ..
{„ 7 li it
a
0 1 2 34 516 7 8 9 1❑ :1 12 15 14 15 16'7 19 19 20 21 22 29
Hour June 202
The sensor used for the turbulence intensity plot was WS120.
36
BO
so
10
o
0 5
10 i6
wind speed frnrel
P061f Data
— Mam kAxANWt WWAItf
++leer.ubfeme irftm4 tI-M SO
=IEC W3 svd t-.IM -4
—IEC czB &4 loss $
— IEC MG511hcpu C
2'a 2'S
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3.5.2 Mast 0101
The sensor used for the turbulence intensity plot was NE60.
fA
Pole Dam
30
— W.W LAukpw irne"ily
— 4MI! uxL+jW" it-amlr Z9 40
—IEC W-3sabsls+sd
t-r
—IEC w2m"h cl s%R
;
—IEC 50 51A loss C
it
7
s
f
40
-
v
C
r
20
0
Q
5
TQ 1� 20
'Wind Speed [nVel
3.5.3 Mast 0102
The sensor used for the turbulence intensity plot was NE60.
W
t
E
f
v
PdeDam
— V" Lrbl4ftrx rttenelb.
r — Meer etbAKm-d in Y&4.129 50
IEC Rqz sub rim A
— IEC w2s4 r;a%iR
lye:. —IEC ed�shdmsi=
h5' '
fr
{'.
40
20-
rl5�ti�!
0
F 5 10 16 213 25
Wind Speed [nus]
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3.5.4 Mast 0103
The sensor used for the turbulence intensity plot was NE60.
N
60
L
t
z 40
f
v
20
10
o-4
0
3.6 Wind Shear
5
1a 15
Wind F3paO {nwfel
P&fl Dam
— WIW LAuk-e*ir&- iLY
kWI! Ubleraar Awmwlr Z9 40
—1EC R4 Aubsis+s d
—IEC W2 �uh class $
— IEC 50 51A class C
The given values for wind shear only provide the wind shear exponent at the site between the sensor heights used
in the calculation without tower effects being removed. The actual wind shear profile may vary with height and
time. A more thorough analysis of the data conducted as part of an energy assessment, which may include
comparisons to other sources of data in the area, could yield a different answer to what is give here.
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3.6.1 Lidar 1921
The average wind shear is estimated to be -0.009 using sensors WS120 and WS100.
Predicted vertical wind profile
Fitted profile * Overall wind speed
140
10
100
80
ISD
40
0
0
0 2 4 6 8 10 1
'A'ind Speed �misj
Diurnal wind shear variation
Min monthly shear c; Max monthly shear a — Overall shear a
0.15
0.1O
0.05
CU
OM
U)
-0.05
-0.10
-0.15
0 03 A B 52 10 1 14 19 18 In
Hour
14
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3.6.2 Mast 0101
The average wind shear is estimated to be 0.171 using sensors NE60 and NE45.
Predicted vertical wind profile
Fitted profile * Overall wind speed
10
100
80
0
CD
= 40
Ic
0 2 4 6 8 10 1
'A'ind Speed �misj
Diurnal wind shear variation
Min monthly shear c; Max monthly shear a Overall shear a
0.25
C3
L
0_fi(}
0.0
0.00
14
0 2 4 6 8 10 12 14 16 18 20 22 24
Hour
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3.6.3 Mast 0102
The average wind shear is estimated to be 0.184 using sensors NE60 and NE45.
Predicted vertical wind profile
— Fitted profile * Overall wind speed
10
100
E
0
V !
CD
J
Ic
V 2 4 10 12
'wF'4'Ind Speer! [n7:s)
Diurnal wind shear variation
Min monthly shear c; Max monthly shear a : Overall shear a
O.UU
0.40
0.20
° CI M
co
-0, 20
-0.40
-0.60
-0.80
14
0 2 4 6 8 10 12 14 16 18 20 22 24
Hour
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3.6.4 Mast 0103
The average wind shear is estimated to be 0.197 using sensors NE60 and NE45.
Predicted vertical wind profile
Fitted profile * Overall wind speed
10
100
80
0
CD
0
0
0 2 4 6 8 10 1
'wF'4'Ind Speer! [n7:s)
Diurnal wind shear variation
Min monthly shear c; Max monthly shear a Overall shear a
0_
0. 5 `
� 0.0
M
CD
0.15
0.10
0.05
0.00
14
0 2 4 6 8 10 12 14 16 18 20 22 24
Hour
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3.7 Site Conditions
3.7.1 Lidar 1921
Thermometers
Minimum ([°C])
Maximum ([°C])
LIDARTEMPA
5.0
34.0
LIDARTEMPB
5.0
35.0
METTEMP
-28.5
2.1
3.7.2 Mast 0101
SENSOR
NE30
NE45
NE55
NE60
SE30
SE45
SE60
Max 1 second gust [m/s]
29.3
1 29.3
30.7
31.8
29.2
1 31.0
31.3
Max 10 minute average [m/s]
24.1
1 24.4
27.7
28.6
24.6
1 27.7
28.9
Thermometers
Minimum ([°C])
Maximum ([°C])
3
-40.9
27.0
60
-40.9
24.5
3.7.3 Mast 0102
SENSOR
NE30
NE45
NE55
NE60
SE30
SE45
SE60
Max 1 second gust m/s
28.1
33.0
32.7
33.1
32.6
33.5
28.5
Max 10 minute averse m/s
22.3
1 25.6
26.0
27.1
24.7
1 25.9
23.9
Thermometers
Minimum °C
Maximum ([°C])
3
-29.9
24.9
60
-40.2
23.9
3.7.4 Mast 0103
SENSOR
NE30
NE45
NE55
NE60
SE30
SE45
SE60
Max 1 second gust [m/s]
28.7
1 29.3
28.9
28.7
31.0
1 30.2
29.4
Max 10 minute average [m/s]
21.5
1 23.0
23.2
23.9
21.7
1 23.2
24.0
Thermometers
Minimum ([°C])
Maximum ([°C])
3
-40.9
26.9
60
-40.9
26.0
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Page 72
4 DISCLAIMER
This downloaded report comprises On -Line Material which is for your sole use as the client of the DNV Service
Provider named in your Service Agreement. On -Line Material is made available in accordance with and subject to
on-line Conditions available on the Resource Panorama Website and the terms of your Service Agreement
(including without limitation the exclusions and limitations of liability contained therein). On-line Material may not
be used or relied on by third parties (including without limitation use or disclosure in any public offering
memorandum or in connection with any financing or investment) without the express written consent of your DNV
Service Provider.
On-line Material has been compiled using historical records and, where applicable, contains information relating to
dates and periods referred to in the On-line Material. Provision of the On-line Material does not imply that any
information is not subject to change, which may occurs due to changes in circumstances, operations, conditions,
prospects, status or affairs of any matter or entity whether or not expressly referred to the On-line Material.
"DNV Service Provider" refers to that member of the DNV Group which has written agreement with you (a "Service
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Page 73