Miljøudvalget MIU Alm.del Bilag 422 Offentligt
|
|
|
- Shauna Isabella French
- 10 years ago
- Views:
Transcription
1 Miljøudvalget MIU Alm.del Bilag 422 Offentligt Project: :57 / 1 DECIBEL - Main Result Calculation: 10x Vestas V MW+ all existing WTGs - værditab Noise calculation model: Danish 2011 The calculation is based on the "Bekendtgørelse nr af 15. december 2011" from the Danish Environmental Agency. The noise impact from WTGs are not allowed to exceed the following limits: (Wind speeds in 10 m height) 1) At outdoor areas maximum 15 m from neighbor settlements in the open land. a) 44 db(a) at wind speed 8 m/s. b) 42 db(a) at wind speed 6 m/s. 2) At outdoor areas in residential or recreational areas. a) 39 db(a) at wind speed 8 m/s in residential areas. b) 37 db(a) at wind speed 6 m/s in residential areas. The low frequency noise impact from WTGs are not allowed to exceed 20 db indoor at wind speeds 8 and 6 m/s The limits are not to be taken into acount for houses belonging to WTG owner WTGs New WTG Noise sensitive area Scale 1: Existing WTG UTM (north)-etrs89 Zone: 32 WTG type Noise data East North Z Row data/description Valid Manufact. Type-generator Power, Rotor Hub Creator Name First LwaRef Last LwaRef Pure rated diameter height wind wind tones speed speed [m] [kw] [m] [m] [m/s] [db(a)] [m/s] [db(a)] ,3 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode 2-104,5 db ,0 103,8 8,0 104,5 No ,4 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 105,1 8,0 107,0 No ,4 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 105,1 8,0 107,0 No ,8 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 105,1 8,0 107,0 No ,0 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 105,1 8,0 107,0 No ,9 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 102,0 8,0 104,0 No ,0 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 102,0 8,0 104,0 No ,0 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 102,0 8,0 104,0 No ,3 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 105,1 8,0 107,0 No ,0 VESTAS V MW Yes VESTAS V MW ,0 91,5 USER Mode db ,0 105,1 8,0 107,0 No , : 660 kw... No VESTAS V47-660/ ,0 45,0 EMD Level 0 - measurement ,0 99,1 8,0 99,8 No , : 660 kw... No VESTAS V47-660/ ,0 45,0 EMD Level 0 - measurement ,0 99,1 8,0 99,8 No , : 660 kw... No VESTAS V47-660/ ,0 45,0 EMD Level 0 - measurement ,0 99,1 8,0 99,8 No , : 660 kw... No VESTAS V47-660/ ,0 45,0 EMD Level 0 - measurement ,0 99,1 8,0 99,8 No , : 660 kw... No VESTAS V47-660/ ,0 45,0 EMD Level 0 - measurement ,0 99,1 8,0 99,8 No , : 660 kw... No VESTAS V47-660/ ,0 45,0 EMD Level 0 - measurement ,0 99,1 8,0 99,8 No , : 750 kw... Yes NEG MICON NM48/ / ,2 45,0 USER Måling, Ribe Amt, Roust-Høje, mølle 3 6,0 96,6 8,0 99,4 No , : 750 kw... Yes NEG MICON NM48/ / ,2 45,0 USER Måling, Ribe Amt, Roust-Høje, mølle 1 6,0 96,6 8,0 99,0 No , : 750 kw... Yes NEG MICON NM48/ / ,2 45,0 USER Måling, Ribe Amt, Roust-Høje, mølle 4 6,0 96,6 8,0 99,8 No , : 750 kw... Yes NEG MICON NM48/ / ,2 45,0 USER Måling, Ribe Amt, Roust-Høje, mølle 2 6,0 96,6 8,0 101,5 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 EMD 8m/s 44m Man ,0 101,0 b 8,0 103,9 b No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 900 kw... Yes NEG MICON NM52/ / ,0 44,0 USER Level 0 - measurement /12 6,0 98,7 8,0 100,3 No , : 600 kw... No VESTAS V ,0 45,0 USER Level 0 - measurement ,0 99,1 f 8,0 99,5 f No , : 11 kw... Yes GAIA WIND GAIA 11 KW ,0 18,0 EMD 8m/s Man ,0 93,2 b 8,0 95,1 b No f) From other hub height b) Data from Danish Environmental Agency Calculation Results Noise sensitive area UTM (north)-etrs89 Zone: 32 Demands Demands fulfilled? No. Name East North Z Imission Wind Noise From Distance to Noise height speed WTGs noise demand [m] [m] [m] A Møgelbjergvej 16, Næsbjerg 6800 Varde ,7 1,5 6,0 42,0 41,9 8 Yes A 8,0 44,0 43,7 40 Yes To be continued on next page...
2 :57 / 2 DECIBEL - Main Result Calculation: 10x Vestas V MW+ all existing WTGs - værditab...continued from previous page Noise sensitive area UTM (north)-etrs89 Zone: 32 Demands Demands fulfilled? No. Name East North Z Imission Wind Noise From Distance to Noise height speed WTGs noise demand [m] [m] [m] B Biltoftvej 32, Næsbjerg 6800 Varde ,0 1,5 6,0 42,0 39,9 145 Yes B 8,0 44,0 41,7 156 Yes C Egebjergvej 4, Rousthøje, 6818 Årre ,6 1,5 6,0 42,0 39,6 313 Yes C 8,0 44,0 41,5 331 Yes D Egebjergvej 6, Rousthøje, 6818 Årre ,4 1,5 6,0 42,0 40,0 236 Yes D 8,0 44,0 41,9 252 Yes E Egebjergvej 16, Rousthøje, 6818 Årre ,1 1,5 6,0 42,0 40,6 140 Yes E 8,0 44,0 42,4 159 Yes F Vardevej 36, Rousthøje, 6818 Årre ,7 1,5 6,0 42,0 38,0 354 Yes F 8,0 44,0 39,3 402 Yes G Vardevej 40, Rousthøje, 6818 Årre ,0 1,5 6,0 42,0 40,4 124 Yes G 8,0 44,0 41,8 171 Yes H Vardevej 46, Knoldeflod, 6818 Årre ,5 1,5 6,0 42,0 41,8 12 Yes H 8,0 44,0 42,5 67 Yes I Ulvemosevej 6, Knoldeflod, 6818 Årre ,2 1,5 6,0 42,0 42,9-27 No I 8,0 44,0 43,4 19 Yes J Ulvemosevej 8, Knoldeflod, 6818 Årre ,2 1,5 6,0 42,0 40,9 54 Yes J 8,0 44,0 41,7 110 Yes K Ulvemosevej 9, Næsbjerg, 6800 Varde ,0 1,5 6,0 42,0 38,6 329 Yes K 8,0 44,0 39,8 391 Yes L Ulvemosevej 16, Næsbjerg, 6800 Varde ,9 1,5 6,0 42,0 40,0 286 Yes L 8,0 44,0 41,7 312 Yes M Kastanievej 2, Årre 6800 Varde ,4 1,5 6,0 42,0 31, Yes M 8,0 44,0 33, Yes N Vardevej 34, Rousthøje, 6818 Årre ,8 1,5 6,0 42,0 37,6 374 Yes N 8,0 44,0 38,8 429 Yes Distances (m) WTG A B C D E F G H I J K L M N To be continued on next page...
3 :57 / 3 DECIBEL - Main Result Calculation: 10x Vestas V MW+ all existing WTGs - værditab...continued from previous page WTG A B C D E F G H I J K L M N
4 :57 / 4 DECIBEL - Detailed results Møgelbjergvej 16, Næsbjerg 6800 Varde (A) 6,0 42,0 41,9 Yes 8,0 44,0 43,7 Yes Biltoftvej 32, Næsbjerg 6800 Varde (B) 6,0 42,0 39,9 Yes 8,0 44,0 41,7 Yes Egebjergvej 4, Rousthøje, 6818 Årre (C) 6,0 42,0 39,6 Yes 8,0 44,0 41,5 Yes
5 :57 / 5 DECIBEL - Detailed results Egebjergvej 6, Rousthøje, 6818 Årre (D) 6,0 42,0 40,0 Yes 8,0 44,0 41,9 Yes Egebjergvej 16, Rousthøje, 6818 Årre (E) 6,0 42,0 40,6 Yes 8,0 44,0 42,4 Yes Vardevej 36, Rousthøje, 6818 Årre (F) 6,0 42,0 38,0 Yes 8,0 44,0 39,3 Yes
6 :57 / 6 DECIBEL - Detailed results Vardevej 40, Rousthøje, 6818 Årre (G) 6,0 42,0 40,4 Yes 8,0 44,0 41,8 Yes Vardevej 46, Knoldeflod, 6818 Årre (H) 6,0 42,0 41,8 Yes 8,0 44,0 42,5 Yes Ulvemosevej 6, Knoldeflod, 6818 Årre (I) 6,0 42,0 42,9 No 8,0 44,0 43,4 Yes
7 :57 / 7 DECIBEL - Detailed results Ulvemosevej 8, Knoldeflod, 6818 Årre (J) 6,0 42,0 40,9 Yes 8,0 44,0 41,7 Yes Ulvemosevej 9, Næsbjerg, 6800 Varde (K) 6,0 42,0 38,6 Yes 8,0 44,0 39,8 Yes Ulvemosevej 16, Næsbjerg, 6800 Varde (L) 6,0 42,0 40,0 Yes 8,0 44,0 41,7 Yes
8 :57 / 8 DECIBEL - Detailed results Kastanievej 2, Årre 6800 Varde (M) 6,0 42,0 31,9 Yes 8,0 44,0 33,5 Yes Vardevej 34, Rousthøje, 6818 Årre (N) 6,0 42,0 37,6 Yes 8,0 44,0 38,8 Yes
9 :57 / 9 DECIBEL - Assumptions for noise calculation Noise calculation model: Danish 2011 Wind speed: 6,0 m/s - 8,0 m/s, step 2,0 m/s Terrain reduction: -1.5 db(a) Onshore Meteorological coefficient, C0: 0,0 db Type of demand in calculation: 1: WTG noise is compared to demand (DK, DE, SE, NL etc.) Noise values in calculation: All noise values are mean values (Lwa) (Normal) Pure tones: Pure tone penalty are added to demand: 5,0 db(a) Height above ground level, when no value in NSA object: 1,5 m Don't allow override of model height with height from NSA object Deviation from "official" noise demands. Negative is more restrictive, positive is less restrictive.: 0,0 db(a) required Air absorption [db/km] [db/km] [db/km] [db/km] [db/km] [db/km] [db/km] [db/km] 0,1 0,4 1,0 2,0 3,6 8,8 29,0 104,5 WTG: VESTAS V MW !O! Noise: Mode 2-104,5 db USER :32 From Windcat 91,5 6,0 103,8 No 84,3 91,7 96,3 97,9 98,8 95,1 89,6 75,1 From Windcat 91,5 8,0 104,5 No 83,7 91,1 95,4 98,4 100,4 96,8 89,7 73,3 WTG: VESTAS V MW !O! Noise: Mode db USER :46 From Windcat 91,5 6,0 105,1 No 84,5 92,2 96,7 99,1 100,5 96,8 90,4 74,4 From Windcat 91,5 8,0 107,0 No 85,6 93,4 97,8 101,0 102,9 99,1 91,8 74,7
10 :57 / 10 DECIBEL - Assumptions for noise calculation WTG: VESTAS V MW !O! Noise: Mode db USER :46 From Windcat 91,5 6,0 105,1 No 84,5 92,2 96,7 99,1 100,5 96,8 90,4 74,4 From Windcat 91,5 8,0 107,0 No 85,6 93,4 97,8 101,0 102,9 99,1 91,8 74,7 WTG: VESTAS V MW !O! Noise: Mode db USER :32 From Windcat 91,5 6,0 102,0 No 83,3 90,2 94,7 95,9 96,9 93,5 88,3 74,5 From Windcat 91,5 8,0 104,0 No 83,5 90,9 95,2 97,9 99,7 96,1 89,3 73,4 WTG: VESTAS V !O! Noise: Level 0 - measurement Acoustica EMD :58 Case no Vestas item R0 From Windcat 45,0 6,0 99,1 No 75,8 83,4 89,9 95,2 94,0 89,0 83,0 68,0 From Windcat 45,0 8,0 99,8 No 76,5 84,1 90,6 95,9 94,7 89,7 83,7 68,7 WTG: NEG MICON NM48/ !O! Noise: Måling, Ribe Amt, Roust-Høje, mølle 3 Source Source/Date Creator Edited Møllestøjmålinger for Ribe Amt, af FGR USER :03 Status Wind speed LwA,ref Pure tones [m/s] [db(a)] [db] [db] [db] [db] [db] [db] [db] [db] From Windcat 6,0 96,6 No 74,5 83,2 89,3 92,3 89,0 87,8 85,4 77,0 From Windcat 8,0 99,4 No 77,3 86,0 92,1 95,1 91,8 90,6 88,2 79,8
11 :57 / 11 DECIBEL - Assumptions for noise calculation WTG: NEG MICON NM48/ !O! Noise: Måling, Ribe Amt, Roust-Høje, mølle 1 Source Source/Date Creator Edited Møllestøjmålinger for Ribe Amt, af FGR USER :03 Status Wind speed LwA,ref Pure tones [m/s] [db(a)] [db] [db] [db] [db] [db] [db] [db] [db] From Windcat 6,0 96,6 No 74,5 83,2 89,3 92,3 89,0 87,8 85,4 77,0 From Windcat 8,0 99,0 No 76,9 85,6 91,7 94,7 91,4 90,2 87,8 79,4 WTG: NEG MICON NM48/ !O! Noise: Måling, Ribe Amt, Roust-Høje, mølle 4 Source Source/Date Creator Edited Møllestøjmålinger for Ribe Amt, af FGR USER :51 Status Wind speed LwA,ref Pure tones [m/s] [db(a)] [db] [db] [db] [db] [db] [db] [db] [db] From Windcat 6,0 96,6 No 74,5 83,2 89,3 92,3 89,0 87,8 85,4 77,0 From Windcat 8,0 99,8 No 77,7 86,4 92,5 95,5 92,2 91,0 88,6 80,2 WTG: NEG MICON NM48/ !O! Noise: Måling, Ribe Amt, Roust-Høje, mølle 2 Source Source/Date Creator Edited Møllestøjmålinger for Ribe Amt, af FGR USER :50 Status Wind speed LwA,ref Pure tones [m/s] [db(a)] [db] [db] [db] [db] [db] [db] [db] [db] From Windcat 6,0 96,6 No 74,5 83,2 89,3 92,3 89,0 87,8 85,4 77,0 From Windcat 8,0 101,5 No 79,4 88,1 94,2 97,2 93,9 92,7 90,3 81,9 WTG: NEG MICON NM52/ !O! Noise: 8m/s 44m Man Manufacturer EMD :55 Official noise level for calculation purpose. Based on TIC , dated Data from Danish Environmental Agency 44,0 6,0 101,0 No Generic data 79,4 88,3 92,4 95,1 95,2 93,1 91,1 81,7 Data from Danish Environmental Agency 44,0 8,0 103,9 No Generic data 83,6 91,1 96,1 97,9 97,2 96,7 93,9 84,2
12 :57 / 12 DECIBEL - Assumptions for noise calculation WTG: NEG MICON NM52/ !O! Noise: Level 0 - measurement /12 Acoustica USER :13 From Windcat 44,0 6,0 98,7 No 86,1 92,3 91,5 89,4 91,1 91,2 86,6 69,8 From Windcat 44,0 8,0 100,3 No 87,7 93,9 93,1 91,0 92,7 92,8 88,2 71,4 WTG: VESTAS V !O! Noise: Level 0 - measurement Acoustica USER :16 Aoustica report nr. P Vestas Item R3 From other hub height 45,0 6,0 99,1 No 76,2 84,8 89,9 93,9 94,3 91,3 85,0 70,9 From other hub height 45,0 8,0 99,5 No 76,6 85,2 90,3 94,3 94,7 91,7 85,4 71,3 WTG: GAIA WIND GAIA 11 KW !O! Noise: 8m/s Man Manufacturer EMD :28 Informed by manufacturer Data from Danish Environmental Agency 18,0 6,0 93,2 No Generic data 69,7 73,9 86,3 87,9 87,1 85,9 80,1 71,3 Data from Danish Environmental Agency 18,0 8,0 95,1 No Generic data 70,4 75,3 87,2 89,5 90,3 87,5 81,5 73,4 NSA: Møgelbjergvej 16, Næsbjerg 6800 Varde-A NSA: Biltoftvej 32, Næsbjerg 6800 Varde-B
13 :57 / 13 DECIBEL - Assumptions for noise calculation NSA: Egebjergvej 4, Rousthøje, 6818 Årre-C NSA: Egebjergvej 6, Rousthøje, 6818 Årre-D NSA: Egebjergvej 16, Rousthøje, 6818 Årre-E NSA: Vardevej 36, Rousthøje, 6818 Årre-F NSA: Vardevej 40, Rousthøje, 6818 Årre-G NSA: Vardevej 46, Knoldeflod, 6818 Årre-H
14 :57 / 14 DECIBEL - Assumptions for noise calculation NSA: Ulvemosevej 6, Knoldeflod, 6818 Årre-I NSA: Ulvemosevej 8, Knoldeflod, 6818 Årre-J NSA: Ulvemosevej 9, Næsbjerg, 6800 Varde-K NSA: Ulvemosevej 16, Næsbjerg, 6800 Varde-L NSA: Kastanievej 2, Årre 6800 Varde-M
15 :57 / 15 DECIBEL - Assumptions for noise calculation NSA: Vardevej 34, Rousthøje, 6818 Årre-N
16 :57 / 16 DECIBEL - Map 6,0 m/s Noise [db(a)] km Map: WindPRO map, Print scale 1: , Map center UTM (north)-etrs89 Zone: 32 East: North: New WTG Existing WTG Noise sensitive area Noise calculation model: Danish Wind speed: 6,0 m/s Height above sea level from active line object
17 :57 / 17 DECIBEL - Map 8,0 m/s Noise [db(a)] km Map: WindPRO map, Print scale 1: , Map center UTM (north)-etrs89 Zone: 32 East: North: New WTG Existing WTG Noise sensitive area Noise calculation model: Danish Wind speed: 8,0 m/s Height above sea level from active line object
TM ETRS-TM35FIN-ETRS89 WTG
DECIBEL - Main Result Calculation: 6 x V126 x HH150 Noise calculation model: ISO 9613-2 General Wind speed: 8,0 m/s Ground attenuation: General, Ground factor: 0,4 Meteorological coefficient, C0: 0,0 db
WindPRO version 2.9.285 Sep 2014 Printed/Page 2015-03-17 10:30 / 1. DECIBEL - Main Result Calculation: Wariant I wie a 90 m. Calculation Results
Project: DECIBEL - Main Result Calculation: Wariant I wie a 90 m Noise calculation model: ISO 9613-2 Poland Wind speed: 10,0 m/s Ground attenuation: Alternative Meteorological coefficient, C0: 0,0 db Type
WindPRO version 2.9.207 Apr 2013 Project:
WindPRO version.9.07 Apr 0 Printed/Pae Windpark Linewaard 9-6-0 :0 / NL-98 MK Odijk + 6 7 876 DECIBEL - Main Result Calculation: x N7-.MW-0mHH - mode - ord DUTCH RULES FOR NOISE CALCULATION. The calculation
Dutch Stereo-RD/NAP 2000 WTG type Shadow data East North Z Row Valid Manufact. Type-generator Power, rated Rotor diameter Hub height Calculation RPM
Project: SHADOW - Main Result Calculation: 6 Boog Assumptions for shadow calculations Maximum distance for influence Calculate only when more than 20 % of sun is covered by the blade Please look in WTG
WindPRO version 2.7.473 jun 2010 Project:
-0-0 :09 / Vattenfall Vindkraft /S PRK - Main Result Calculation: 0 Parkberegning Tamholt 5 x SWT.0dd ise OK Wake Model N.O. Jensen (RISØ/) Calculation Settings ir density calculation mode Result for WTG
As a minimum, the report must include the following sections in the given sequence:
5.2 Limits for Wind Generators and Transformer Substations In cases where the noise impact at a Point of Reception is composed of combined contributions due to the Transformer Substation as well as the
The BASIS module in WindPRO is necessary for the use of any of the other calculation modules. It contains the four following elements:
The BASIS module in WindPRO is necessary for the use of any of the other calculation modules. It contains the four following elements: 1. Project Management / Globe (Project Explorer) 2. WTG Catalogue
SHADOW Calculation of Flickering from WTGs
Function Calculation and documentation of flickering effects in terms of hours per year during which a neighbor or an area would be exposed to flickering from nearby WTG rotors. Also maximum minutes per
PARK Energy Calculation
Function Calculation of the energy production of a wind farm including array losses and wind farm-induced turbulence. The PARK calculation is based on the following modules: METEO MODEL Calculation Method
QUICK GUIDE - WASP-CFD IN WINDPRO. Draft 1 edition: 01.02.2013. Purpose: EMD International A/S, Aalborg February 1 st, 2013
EMD International A/S, Aalborg February 1 st, 2013 QUICK GUIDE - WASP-CFD IN WINDPRO Draft 1 edition: 01.02.2013 Purpose: To purpose of the WAsP CFD model in WindPRO is to enable the WindPRO user to calculate
Document number #12 DNS13006. Authors #20 Telephone: Date #40 AUGUST 2013
#0 INSPECTION REPORT Discipline or report series #0 Inspection VESTAS wind turbines Title #5 VESTAS WIND TURBINE #2 Report number #52 #3 Authors #20 Telephone: Date #40 AUGUST 203 Summary #60 6 UNIT VESTAS
Noise from large wind turbines (with focus on low frequencies)
Noise from large wind turbines (with focus on low frequencies) Christian Sejer Pedersen M.Sc. EE., Ph. D. Associate professor Acoustics, Department of Electronic Systems, Aalborg University Fredrik Bajers
MCS 020. MCS Planning Standards. For permitted development installations of wind turbines and air source heat pumps on domestic premises
MCS 020 MCS Planning Standards For permitted development installations of wind turbines and air source heat pumps on domestic premises This Standard is the property of Department of Energy and Climate
Trans Bay Cable Project (400 MW) Preliminary Audible Noise Study
Page 1 of 5 Preliminary Audible Noise Study Pittsburg 10 th Street, N-S Orientation Rev. Date Section Page Remarks Signature 0 17.11.06 all all first issue Page 2 of 5 1 Audible Noise Study 1.1 Basis The
Attractive wind turbines and solar cell facilities
Attractive wind turbines and solar cell facilities Updated the 8 th of April 2014 PROJECTS FOR SALE We offer a range of attractive wind turbines and solar cell projects with attractive profits. All projects
www.wind-power-program.com
This document has been downloaded from the library section of www.wind-power-program.com Visit our website for information on the WindPower program and the UK Wind Speed Database program both downloadable
Nordex SE. Nordex goes Offshore
Nordex SE Nordex goes Offshore Hannover, April 2011 Content 1. Offshore Wind Market 2. Nordex Offshore History & Future 3. Competition & Technical Development 4. The N150/6000 2 Strong growth prospects
Danish Blade Service Steen Blichers Vej 16 6000 Kolding Denmark +4540943705 www.danishbladeservice.com. Wire udskiftning.
Wire udskiftning 1 of 9 pages Content 1. Order... 4 2. Objective... 4 3. Documentation of the work performed... 4 4. Inspection extent... 4 5. Inspection data incl. environmental conditions... 4 6. Deviations
V66 1.75 MW & V66 2.0 MW (OFFSHORE)
V66 1.75 MW & V66 2. MW (OFFSHORE) with OptiTip and OptiSpeed Offshore and onshore There are two versions of the V66 turbine: a 2. MW model for offshore sites, and a 1.75 MW model for inland locations.
Annex H6. Clocaenog Forest Wind Farm Cumulative Assessment Figures
Annex H6 Clocaenog Forest Wind Farm Cumulative Assessment Figures H6.1 CUMULATIVE IMPACT ASSESSMENT The turbine coordinates used in the predictions for Tir Mostyn, Brenig, Gorsedd Bran, Derwydd Bach, and
Comparison of Resource and Energy Yield Assessment Procedures
Comparison of Resource and Energy Yield Assessment Procedures Niels G. Mortensen and Hans E. Jørgensen Wind Energy Division, Risø DTU EWEA Wind Resource Assessment Technology Workshop 2011 F Acknowledgements
Procedure for classification of wind power projects into wind zone class
Procedure for classification of wind power projects into wind zone class a. The value of annual mean Wind Power Density (WPD) of the windy sites declared by Centre for Wind Energy Technology (C-WET) under
INFLUENCES OF VERTICAL WIND PROFILES ON POWER PERFORMANCE MEASUREMENTS
Abstract INFLUENCES OF VERTICAL WIND PROFILES ON POWER PERFORMANCE MEASUREMENTS U. Bunse, H. Mellinghoff DEWI GmbH, Ebertstr. 96, D 26382 Wilhelmshaven e mail: [email protected] The IEC 61400 12 1 [1] and
INTERNATIONAL ANNEX III. Technical Details of Sound Signal Appliances
INTERNATIONAL ANNEX III Technical Details of Sound Signal Appliances 1. Whistles (a) Frequencies and range of audibility The fundamental frequency of the signal shall lie within the range 70-700 Hz. The
FLOWSTAR-Energy Validation NoordZee Wind Farm
FLOWSTAR-Energy Validation NoordZee Wind Farm Cambridge Environmental Research Consultants (CERC) Ltd January 26 Introduction FLOWSTAR-Energy 5. NoordZee is an offshore wind farm in Denmark. A FLOWSTAR-Energy
Mark Bliss, BKL Consultants Ltd. #308-1200 Lynn Valley Road, North Vancouver, BC, V7J 2A2 Canada E-mail: [email protected]
5th International Conference on Wind Turbine Noise Denver 28 30 August 2013 Environmental noise assessment of proposed wind farms using annual average L dn Mark Bliss, BKL Consultants Ltd. #308-1200 Lynn
GUIDELINE ON BOUNDARY NOISE LIMIT FOR AIR CONDITIONING AND MECHANICAL VENTILATION SYSTEMS IN NON-INDUSTRIAL BUILDINGS
GUIDELINE ON BOUNDARY NOISE LIMIT FOR AIR CONDITIONING AND MECHANICAL VENTILATION SYSTEMS IN NON-INDUSTRIAL BUILDINGS 1. Scope This guideline sets out the maximum boundary noise emission limits for air
Results of wake simulations at the Horns Rev I and Lillgrund wind farms using the modified Park model
Downloaded from orbit.dtu.dk on: Feb 15, 216 Results of wake simulations at the Horns Rev I and Lillgrund wind farms using the modified Park model Pena Diaz, Alfredo; Réthoré, Pierre-Elouan; Hasager, Charlotte
User manual data files meteorological mast NoordzeeWind
User manual data files meteorological mast NoordzeeWind Document code: NZW-16-S-4-R03 Version: 2.0 Date: 1 October 2007 Author: ing. HJ Kouwenhoven User manual data files meteorological mast NoordzeeWind
Wind energy potential estimation and micrositting on Izmir Institute of Technology Campus, Turkey
Renewable Energy 30 (2005) 1623 1633 www.elsevier.com/locate/renene Technical note Wind energy potential estimation and micrositting on Izmir Institute of Technology Campus, Turkey B. Ozerdem*, H.M. Turkeli
Power output of offshore wind farms in relation to atmospheric stability Laurens Alblas BSc
Power output of offshore wind farms in relation to atmospheric stability Laurens Alblas BSc Photo: Vestas Wind Systems A/S 1 1. Introduction Background Atmospheric stability is known to influence wind
Sound Power measurements according to IEC 61400-11
Sound Power measurements according to IEC 61400-11 Siemens Wind Power All Rights Reserved 2011 Sound Power measurements according to IEC 61400-11 Tomas Hansen, Lars Enggaard email: [email protected] Page
Outline. Introduction to Wind Energy. US Wind Energy Installations. ME 483 Alternative Energy Engineering II 1
Wind Power Introduction February, Introduction to Wind Energy Larry Caretto Mechanical Engineering 48 Alternative Energy Engineering II February, Outline Current use of wind energy Advantages and disadvantages
ENERCON WIND TURBINES
Sales ENERCON GmbH Dreekamp 5 2665 Aurich Germany Phone +49 494192 7 Fax +49 4941 92 71 9 [email protected] E-33 E-44 E-48 E-53 E-7 E-82 ENERCON WIND TURBINES PRODUCT OVERVIEW ENERCON GmbH Dreekamp 5
ENERGY YIELD ASSESSMENT
Module 2.4-2 ENERGY YIELD ASSESSMENT Gerhard J. Gerdes Workshop on Renewable Energies November 14-25, 25 Nadi, Republic of the Fiji Islands Contents power curve of wind turbine and international regulations
Adapting and calibration of existing wake models to meet the conditions inside offshore wind farms.
Adapting and calibration of existing wake models to meet the conditions inside offshore wind farms. Page 1 Adapting and calibration of existing wake models to meet the conditions inside offshore wind farms.
Nordex SE. Capital Markets Day Products & Sales - Lars Bondo Krogsgaard
Nordex SE Capital Markets Day Products & Sales - Lars Bondo Krogsgaard Rostock, 13 October 2011 SUMMARY The situation in the wind industry has changed: Attractive medium-term growth prospects Overcapacity
TERMS OF REFERENCE FOR THE RAPID EIA STUDY
TERMS OF REFERENCE FOR THE RAPID EIA STUDY 1 SUMMARY OF EIA METHODOLOGY STEP I : SCOPING OF THE ASSESSMENT Own with prevailing regulatory setting and criteria Identification of Environmental Assessment
egrid Calculation of electrical grid connections for WTGs
Function egrid performs a full steady state calculation of radial electrical grid systems. For design, optimisation and documentation of the grid connection of both a single wind turbine generator (WTG)
Fuld Skolerapport for Søhusskolen, i Odense kommune, for skoleår 2013/2014 for klassetrin(ene) 9. med reference Tilsvarende klassetrin i kommunen
Side 1 af 41 Side 2 af 41 Side 3 af 41 Side 4 af 41 Side 5 af 41 Side 6 af 41 Side 7 af 41 Side 8 af 41 Side 9 af 41 Side 10 af 41 Side 11 af 41 Side 12 af 41 Side 13 af 41 Side 14 af 41 Side 15 af 41
Fuld Skolerapport for Hunderupskolen, i Odense kommune, for skoleår 2013/2014 for klassetrin(ene) 7. med reference Tilsvarende klassetrin i kommunen
Side 1 af 43 Side 2 af 43 Side 3 af 43 Side 4 af 43 Side 5 af 43 Side 6 af 43 Side 7 af 43 Side 8 af 43 Side 9 af 43 Side 10 af 43 Side 11 af 43 Side 12 af 43 Side 13 af 43 Side 14 af 43 Side 15 af 43
Noise Design Advice. Noise can be a major factor to consider in any new development.
Noise Design Advice Noise can be a major factor to consider in any new development. This design advice is to help those involved in development in Leeds achieve an acceptable noise environment for people
HVAC Acoustic Fundamentals
Application Guide AG 31-010 HVAC Acoustic Fundamentals Decibel Sound Pressure Pascals 140 120 100 80 60 40 20 0 100 10 1.0 0.1 0.01 0.001 0.0001 0.00002 Barrier S1 BD BH R1 Measurement Point Path Length
Óbuda University Power System Department. The wind. Dr. Péter Kádár Óbuda University, Power System Department, Hungary [email protected].
The wind Dr. Péter Kádár,, Hungary [email protected] Draft Wind basics Drivers of the wind energy application The energy of the wind Dynamic simulation Wind forecast Wind basics - Patra, 2012
QUALITY OF WIND POWER. How does quality affect the cost of electricity generation from wind power?
QUALITY OF WIND POWER How does quality affect the cost of electricity generation from wind power? QUALITY OF WIND POWER Wind power is a cornerstone in the green transition of the power sector, and onshore
Hub North Netværksarrangement d. 14. Juni 2011
Hub North Netværksarrangement d. 14. Juni 2011 Jan Bisgaard Envision Global Innovation Centre Silkeborg, Denmark Agenda: 1. Presenting (Jan Bisgaard) 2. Company profile 3. Strategies 4. Product road map
QUICK Guide. Version 2.7
QUICK Guide Version 2.7 1 WindPRO 2.7 QUICK Guide June 2010 EMD International A/S Niels Jernes Vej 10 DK 9220 Aalborg Ø tel.: +45 9635 4444 fax: +45 9635 4446 e mail: [email protected] web: www.emd.dk WindPRO
QUALITY CONTROL Prepared: V. van Gastel / team TenneT Reviewed: M. Müller 23.06.2015 Approved: F. Wester 23.06.2015 1. BACKGROUND MATERIAL...
POSITION PAPER STAKE HOLDER CONSULTATION PROCESS OFFSHORE GRID NL Type: Position paper Work stream Technical Topic: T.2 Number of J-Tubes Filename ONL 15-060-T2_ J tubes_ bays_pp_v2 Version 3 - Public
CFD SIMULATIONS OF WAKE EFFECTS AT THE ALPHA VENTUS OFFSHORE WIND FARM
CFD SIMULATIONS OF WAKE EFFECTS AT THE ALPHA VENTUS OFFSHORE WIND FARM Annette Westerhellweg, Thomas Neumann DEWI GmbH, Ebertstr. 96, 26382 Wilhelmshaven, Germany Phone: +49 (0)4421 4808-828 Fax: +49 (0)4421
KRUGER ENERGY CHATHAM WIND PROJECT ENVIRONMENTAL SCREENING REPORT / ENVIRONMENTAL IMPACT STATEMENT. Appendix E. Environmental Noise Impact Assessment
KRUGER ENERGY CHATHAM WIND PROJECT ENVIRONMENTAL SCREENING REPORT / ENVIRONMENTAL IMPACT STATEMENT Appendix E Environmental Noise Impact Assessment Executive Summary The purpose of this environmental
V112-3.0 MW Making wind even more profitable
V112-3.0 MW Making wind even more profitable Large rotor diameter expands your opportunities The impressive 54.65 m blades set completely new standards, making it possible to produce more energy from the
Assessment of low-frequency noise due to windturbines in relation to low-frequency background
Assessment of low-frequency noise due to windturbines in relation to low-frequency background noise Eugène de Beer ([email protected]) Peutz bv, Paletsingel 2, 2718 NT, Zoetermeer, The Netherlands. Summary
V112-3.0 MW. Your best option for low cost energy production at low and medium wind sites. Federico Gonzalez Vives. Director Technology.
V112-3.0 MW Your best option for low cost energy production at low and medium wind sites Federico Gonzalez Vives. Director Technology. Vestas MED REOLTEC. Jornadas tecnicas 17 de junio de 2010 vestas.com
Research and Development on Wind Energy in JAPAN
Wind Energy Session Asia Renewable Energy Workshop 2015 (AREW 2015) University of Putra Malaysia (UPM), 2015.02.03-04 Research and Development on Wind Energy in JAPAN Tetsuya KOGAKI National Institute
Nautischer Verein zu Bremerhaven Bremerhaven, 15.09.2011. 15.09.2011 Nautischer Verein
Nautischer Verein zu Bremerhaven Bremerhaven, 15.09.2011 1 Contents Company Introduction Market development Logistics Vessel Presentation Vessel Operation 2 Contents Company Introduction Market development
Acoustic Terms, Definitions and General Information
Acoustic Terms, Definitions and General Information Authored by: Daniel Ziobroski Acoustic Engineer Environmental and Acoustic Engineering GE Energy Charles Powers Program Manager Environmental and Acoustic
Renewable Energy and Negative Externalities: The Effect of Wind Turbines on House Prices
TI 2014-124/VIII Tinbergen Institute Discussion Paper Renewable Energy and Negative Externalities: The Effect of Wind Turbines on House Prices Martijn I. Dröes a Hans R.A. Koster b a Faculty of Economics
EXPERT REMANUFACTURED WIND TURBINE
EXPERT REMANUFACTURED WIND TURBINE Repowering Solutions is a division of Jeraneas Group of companies. Our core business is the remanufacturing of wind turbines of different sizes; a work that we have been
WiFi Long Shots Get the latest copy at www.scii.nl/~elektra. Elektra Wagenrad
WiFi Long Shots Get the latest copy at www.scii.nl/~elektra Elektra Wagenrad Why? Building cheap infrastructure wherever ISP's don't see the chance of quick return of investment. Community Networks Add
EN 1991-1-4:2005. Wind actions
EN 1991 Eurocode 1: Actions on structures Your logo Brussels, 18-20 February 2008 Dissemination of information workshop 1 EN 1991-1-4:2005 Wind actions EN 1991-1-4:2005 Contents Brussels, 18-20 February
york air-conditioning products Residential & VRF News 2015
york air-conditioning products Residential & VRF News 2015 york air-conditioning products Catalogue Content Split Systems Pag. High wall High Efficiency Inverter YWHJZH 09 to 24 K 6 High wall Inverter
Understanding Range for RF Devices
Understanding Range for RF Devices October 2012 White Paper Understanding how environmental factors can affect range is one of the key aspects to deploying a radio frequency (RF) solution. This paper will
GE Renewable Energy. GE s 3 MW Platform POWERFUL AND EFFICIENT. www.ge.com/wind
GE Renewable Energy GE s 3 MW Platform POWERFUL AND EFFICIENT www.ge.com/wind GE S 3 MW PLATFORM PITCH Since entering the wind industry in 2002, GE Renewable Energy has invested more CONTROLS than $2 billion
Dansk Offshore Netværk, Lindø Industripark, 21. April 2015 The Road to Below 10 ct /kwh
Dansk Offshore Netværk, Lindø Industripark, 21. April 2015 The Road to Below 10 ct /kwh, Head of Cost of Energy Siemens AG, Wind Power and Renewables Answers for energy. Introduction Siemens Wind Power
NORDEX USA, INC. GREAT LAKES SYMPOSIUM
NORDEX USA, INC. GREAT LAKES SYMPOSIUM CHICAGO 24 Sep 2013 AGENDA 1 About Nordex 2 Wind Industry Challenges & Our Responses Nordex USA, Inc. Great Lakes Symposium Presentation Chicago Sept 2013 Slide 2
COMPATIBILITY AND SHARING ANALYSIS BETWEEN DVB T AND RADIO MICROPHONES IN BANDS IV AND V
European Radiocommunications Committee (ERC) within the European Conference of Postal and Telecommunications Administrations (CEPT) COMPATIBILITY AND SHARING ANALYSIS BETWEEN DVB T AND RADIO MICROPHONES
Proposal for the Establishment of an World Small Wind Turbine Test and Training Center" in China)
Chinese Wind Energy Equipment Association (CWEEA) Chinese Wind Energy Association (CWEA) Proposal for the Establishment of an World Small Wind Turbine Test and Training Center" in China) CWEA and CWEEA
Effects of Underwater Noise
Effects of Underwater Noise Impact pile driving noise prediction Marten Nijhof, Christ de Jong, Bas Binnerts, Michael Ainslie 2 Wind energy agenda Dutch energy agreement for sustainable growth (2013):
2 Axis Solar Tracker / 12 Kw
2 Axis Solar Tracker / 12 Kw 4 Rows 14 metres 4 rows x 14 metres Quantity / Panel Type: 68 units Photovoltaic panel 1.600 x 790 mm Panel power / Total power: 165 W 11,2 Kw Total Surface: 94 m² Diameter
The Market for Installation Vessels
The Market for Installation Vessels SPEAKER: Lars Nedergaard, A2SEA A/S Date: June 8, 2011 Agenda A2SEA The Offshore Wind Farm Harbour The Products The Vessels The Market 2 A2SEA SEA ENERGY 2002 SEA POWER
Limiting factors in fiber optic transmissions
Limiting factors in fiber optic transmissions Sergiusz Patela, Dr Sc Room I/48, Th. 13:00-16:20, Fri. 9:20-10:50 [email protected] eportal.pwr.wroc.pl Copying and processing permitted for noncommercial
Sound Power Measurement
Sound Power Measurement A sound source will radiate different sound powers in different environments, especially at low frequencies when the wavelength is comparable to the size of the room 1. Fortunately
Investigation of sound insulation for a Supply Air Window field measurements and occupant response
Investigation of sound insulation for a Supply Air Window field measurements and occupant response Lars Sommer SØNDERGAARD 1 ; Søren Vase LEGARTH 2 1 DELTA, Denmark ABSTRACT The Danish Environmental Protection
Spectrum Level and Band Level
Spectrum Level and Band Level ntensity, ntensity Level, and ntensity Spectrum Level As a review, earlier we talked about the intensity of a sound wave. We related the intensity of a sound wave to the acoustic
Getting smart(er) in Offshore Wind O&M
Getting smart(er) in Offshore Wind O&M 26-9-2014 Prof.dr. Gerard J.W. van Bussel Leerstoel Windenergie Faculteit Luchtvaart- en Ruimtevaarttechniek Delft University of Technology Challenge the future Inhoud
DATE: July 12, 2004 SUBJECT: Gaudet School Chiller Noise Survey Results
799 MIDDLESEX TNPK. BILLERICA MA 01821-3445 PHONE: 978-670-5339 FAX: 978-667-7047 E-mail: nonoise@ noise-control.com JOB MEMO TO: John McKenney COMPANY: McKenney Mechanical Contractors, Inc. FROM: Jesse
Sweden s leading manufacturer of small-scale wind power stations!
Sweden s leading manufacturer of small-scale wind power stations! Product Information Table of content Content The company, its activities, vision and business concept. Product overview. Technology & security.
Speech Privacy & Sound Masking in modern architecture
Speech Privacy & Sound Masking in modern architecture Presented By Todd Berger CET, CTS-D, DMC-D Field Sales Engineer Cambridge Sound Management AIA Registered Provider continuing education credits Cambridge
Managing Wind Farms in the San Gorgonio Pass
Feature AES Wind Generation Managing Wind Farms in the San Gorgonio Pass Palm Springs, California Photography by Christine Coates, Editor, Wind Today Wind farms in the San Gorgonio Pass near Palm Springs,
Cisco - Calculating the Maximum Attenuation for Optical Fiber Links
Page 1 of 5 Calculating the Maximum Attenuation for Optical Fiber Links Document ID: 27042 Contents Introduction Prerequisites Requirements Components Used Conventions What is Attenuation? Wavelength Estimate
Comparison of predicted and measured wind farm noise levels and implications for assessments of new wind farms
Paper Number 30, Proceedings of ACOUSTICS 2011 2-4 November 2011, Gold Coast, Australia Comparison of predicted and measured wind farm noise levels and implications for assessments of new wind farms Tom
RECOMMENDATION ITU-R P.1546-1. Method for point-to-area predictions for terrestrial services in the frequency range 30 MHz to 3 000 MHz
Rec. ITU-R P.546- RECOMMENDATION ITU-R P.546- Method for point-to-area predictions for terrestrial services in the frequency range 30 MHz to 3 000 MHz (200-2003) The ITU Radiocommunication Assembly, considering
WIND ENERGY FOR SUSTAINABLE DEVELOPMENT
WIND ENERGY FOR SUSTAINABLE DEVELOPMENT M.N.H. Comsan Egyptian Nuclear Physics Association (ENPA), Cairo, Egypt The growing demand in energy and concern about depleting natural resources and global warming
Wind Resource Assessment for BETHEL, ALASKA Date last modified: 2/21/2006 Compiled by: Mia Devine
813 W. Northern Lights Blvd. Anchorage, AK 99503 Phone: 907-269-3000 Fax: 907-269-3044 www.akenergyauthority.org Wind Resource Assessment for BETHEL, ALASKA Date last modified: 2/21/2006 Compiled by: Mia
First Power Production Results from the Wave Star Roshage Wave Energy Converter
First Power Production Results from the Wave Star Roshage Wave Energy Converter Laurent Marquis, Head of Development, Wave Star A/S Morten Kramer, R&D engineer, Wave Star A/S Peter Frigaard, Head of Civil
