Diese Liste gibt eine Übersicht über Windkraftanlagentypen zur Erzeugung elektrischer Energie, deren Rotordurchmesser mehr als 10 Meter beträgt und von denen mindestens ein Exemplar in Europa errichtet wurde.
Standard-Design (3 Rotorblätter, horizontale Achse)
Bezeichnung | Hersteller | Nabenhöhe (m) | Rotordurchmesser (m) | Nennleistung (kW) | Bild | Bemerkungen |
---|---|---|---|---|---|---|
AAER A-1000 S | AAER | 82 | 54 | 1000 | ||
AAER A-1500 | AAER | 80 | 77 | 1500 | ||
AAER A-2000 | AAER | 100 | 84 | 2000 | ||
Acciona AW-70 | Acciona | 80 | 70 | 1500 | ||
Acciona AW-77 | Acciona | 80 | 77 | 1500 | ||
Acciona AW-82 | Acciona | 80 | 82 | 1500 | ||
Acciona AW-100 | Acciona | 120 | 100 | 3000 | ||
Acciona AW-109 | Acciona | 120 | 109 | 3000 | ||
Acciona AW-116 | Acciona | 120 | 116 | 3000 | ||
Acciona AW-125 | Acciona | 87,5 / 120 | 125 | 3000 | ||
Alstom ECO 80 | Alstom | 80 | 80 | 1670 | ||
Alstom ECO 86 | Alstom | 80 | 85,5 | 1670 | ||
Alstom ECO 80 | Alstom | 70 | 80 | 2000 | ||
Alstom ECO 100 | Alstom | 100 | 100 | 3000 | ||
Alstom ECO 110 | Alstom | 100 | 110 | 3000 | ||
Alstom ECO 122 | Alstom | ? | 122 | 2700 | ||
Alstom Haliade | Alstom | ? | 150 | 6000 | ||
Avantis AV 1010 | Avantis | 99 | 100,6 | 2300 | ||
Avantis AV 928 | Avantis | 80 | 93,2 | 2500 | ||
Bard 5.0 | BARD | 90 | 122 | 5000 | ||
3000 | Blaaster | ? | ? | 3000 | ||
B31/300 | Bonus | ? | 31 | 300 | ||
B33/300 | Bonus | ? | 33 | 300 | ||
B35/450 | Bonus | ? | 35 | 450 | ||
B37/450 | Bonus | ? | 37 | 450 | ||
B41/600 | Bonus | ? | 41 | 600 | ||
B44/600 | Bonus | ? | 44 | 600 | ||
B52/1000 | Bonus | ? | 52 | 1000 | ||
B54/1000 | Bonus | ? | 54,1 | 1000 | ||
B62/1300 | Bonus | ? | 62 | 1300 | ||
B76/2000 | Bonus | ? | 76 | 2000 | ||
B82/2300 | Bonus | ? | 82 | 2300 | ||
Clipper Windpower Liberty | Clipper Windpower | 89 / 93 / 96 / 99 | 80 | 2500 | ||
DeWind D4/48 | DeWind | 45 / 60 / 70 | 48 | 600 | ||
DeWind D6/62 | DeWind | 65 | 62 | 1000 | ||
DeWind D6/64 | DeWind | 92 | 64 | 1250 | ||
DeWind D8/80 | DeWind | 100 | 80 | 2000 | ||
DeWind D8.2 | DeWind | 100 | 80 | 2000 | ||
Dewind 9.0/9.1 | DeWind | 80 / 100 | 93 | 2000 | ||
Ecotècnia 74 1.67 | Alstom | 60 / 70 / 80 | 74 | 1670 | ||
Ecotècnia 80 | Alstom | 70 / 80 | 80 | 2000 | ||
Ecotècnia 80 1.67 | Alstom | 60 / 70 / 80 | 80 | 1670 | ||
Ecotècnia 100 | Alstom | 90 ( 80 / 100) | 100 | 3000 | ||
Enercon E-10 | Enercon | ? | 10 | 30 | ||
Enercon E-12 | Enercon | ? | 12 | 30 | ||
Enercon E-15/16 | Enercon | ? | 15 / 16 | 55 | ||
Enercon E-17/18 | Enercon | ? | 17 / 18 | 80 | ||
Enercon E-20 | Enercon | 20 / 30 / 40 | 20 | 100 | ||
Enercon E-30 | Enercon | ? | 30 | 230 / 300 | ||
Enercon E-32/33 | Enercon | ? | 33 | 300 | ||
Enercon E-40/5.40 | Enercon | 48 / 64 | 40 | 500 | ||
Enercon E-40/6.44 | Enercon | ? | 44 | 600 | ||
Enercon E-44 | Enercon | 65 | 44 | 900 | ||
Enercon E-48 | Enercon | 76 | 48 | 900 | ||
Enercon E-53 | Enercon | 75 | 53 | 1000 | ||
Enercon E-58 | Enercon | 70 | 58 | 1000 | ||
Enercon E-66/15.66 | Enercon | 66 | 66 | 1500 | ||
Enercon E-66/18.70 | Enercon | 64 / 98 / 113 | 70 | 1800 | ||
Enercon E-66/20.70 | Enercon | 64 / 98 / 113 | 70 | 2000 | ||
Enercon E-70 | Enercon | 57 / 64 / 98 / 113 | 71 | 2000 / 2300 | ||
Enercon E-82 | Enercon | 78 / 85 / 98 / 108 / 138 | 82 | 2000 / 3000 | ||
Enercon E-82 E2 | Enercon | 78 / 85 / 98 / 108 / 138 | 82 | 2300 | ||
Enercon E-82 E3 | Enercon | 78 / 85 / 98 / 108 / 138 | 82 | 3000 | ||
Enercon E-92 | Enercon | 85–138 | 92 | 2300 | ||
Enercon E-101 | Enercon | 99 / 135 | 101 | 3000 | ||
Enercon E-112 | Enercon | 124 | 112 / 114 | 4500 / 6000 | ||
Enercon E-115 | Enercon | 92–149 | 115 | 2500 | ||
Enercon E-126 | Enercon | 135 | 127 | 6000 / 7500 | ||
e.n.o. 82-2.0 MW | e.n.o. | 101 | 82,4 | 2000 | ||
e.n.o. 92-2.2 MW | e.n.o. | 103 | 92,8 | 2200 | ||
e.n.o. 114-3.5 MW | e.n.o. | 92 / 122 / 142 | 114,9 | 3500 | ||
ET 500/36 | Euroturbine | ? | 37 | 500 | ||
ET 550/41 | Euroturbine | ? | 41 | 550 | ||
Eviag ev 2.93 | Eviag | 100 | 93,2 | 2050 | ||
Eviag ev 100 | Eviag | 85 / 100 (160) | 80 / 90 / 100 | 2500 | Version mit 160 Nabenhöhe noch nicht realisiert | |
Falcon 1.25 MW | Innovative Windpower | 60 / 75 / 100 | 64 | 1250 | ||
Fuhrländer FL-30 | Fuhrländer | 18 / 2 | 13 | 30 | ||
Fuhrländer FL-100 | Fuhrländer | 35 | 21 | 100 | ||
Fuhrländer FL-250 | Fuhrländer | 42 / 50 | 29,5 | 250 | ||
Fuhrländer FL-600 | Fuhrländer | 50 | 50 / 75 | 600 | ||
Fuhrländer FL-1000 | Fuhrländer | 82 | 54 | 1000 | ||
Fuhrländer FL-1250 | Fuhrländer | 62 | 50 / 70 | 1250 | ||
Fuhrländer FL-1500 | Fuhrländer | 112 (61,5–100) | 70–77 | 1500 | ||
Fuhrländer FL-2500 | Fuhrländer | 98 / 141 (85–160) | 90 / 100 | 2500 | Höchste Windkraftanlage der Welt (Windpark Nowy Tomyśl, Polen) | |
Gamesa G52 | Gamesa | 65 | 52 | 850 | ||
Gamesa G58 | Gamesa | 71 | 58 | 850 | ||
Gamesa G80-2.0 MW | Gamesa | 100 | 80 | 2000 | ||
Gamesa G87-2.0 MW | Gamesa | 100 | 87 | 2000 | ||
Gamesa G90-2.0 MW | Gamesa | 100 | 90 | 2000 | ||
Gamesa G97-2.0 MW | Gamesa | 78 / 90 / 100 / 120 | 97 | 2000 | ||
Gamesa G114-2.0 MW | Gamesa | 93 / 120 / 140 | 114 | 2000 | ||
GE 1.5sl | General Electric | 61 / 70 / 80 / 85 / 96 / 100 | 77 | 1500 | ||
GE 1.5sle | General Electric | 85 | 77 | 1500 | ||
GE 1.5xle | General Electric | 80 | 82,5 | 1500 | ||
GE 2.5xl | General Electric | 100 | 100 | 2500 | ||
GE 2.5-120 | General Electric | 139 | 120 | 2500 | ||
600 | Genesys | ? | 46 | 600 | ||
G1650 | Ghodawat | ? | 78 | 1650 | ||
GW62/1200 | Goldwind | ? | 62 | 1200 | ||
GW70/1500 | Goldwind | ? | 70 | 1500 | ||
GW77/1500 | Goldwind | ? | 77 | 1500 | ||
GW82/1500 | Goldwind | ? | 82 | 1500 | ||
S43/600 | Goldwind | ? | 43 | 600 | ||
S43/750 | Goldwind | ? | 43 | 750 | ||
S48/750 | Goldwind | ? | 48 | 750 | ||
S50/750 | Goldwind | ? | 50 | 750 | ||
S62/1200 | Goldwind | ? | 62 | 1200 | ||
S70/1500 | Goldwind | ? | 70 | 1500 | ||
HSW 750 | Husumer Schiffswerft | ? | 46 | 750 | ||
HSW 1000 | Husumer Schiffswerft | ? | 54 | 1000 | ||
IWP Falcon 1.25 MW | IWP Falcon | 64 | 1250 | |||
Kenersys K82-2.0 MW | Kenersys | 80 | 82 | 2000 | ||
Kenersys K100-2.5 MW | Kenersys | 100 | 100 | 2500 | ||
Kenersys K110-2.4 MW | Kenersys | 135 | 109 | 2400 | ||
L93 | Lanco | 85 / 100 | 93,2 | 2050 | ||
Leitwind LTW 70 | Leitwind | 65 | 70 | 1700 | ||
Leitwind LTW 77 | Leitwind | 80 | 76,8 | 1500 | ||
Leitwind LTW 80 | Leitwind | 80 | 80,3 | 1500 | ||
Multibrid M5000 | Areva Wind | 130 | 116 | 5000 | ||
Nordex N27/150 | Nordex | 41,5 | 27 | 150 | ||
Nordex N27/250 | Nordex | ? | 27 | 250 | ||
Nordex N29 | Nordex | 50 | 29 | 250 | ||
Nordex N43 | Nordex | 60 / 77,5 | 43 | 600 | ||
Nordex S46 | Nordex | ? | 46 | 600 | ||
Nordex N50 | Nordex | 70 | 50 | 800 | ||
Nordex N52 | Nordex | 62 | 52 | 800 / 1000 | ||
Nordex N54 | Nordex | 60 | 54 | 1000 | Erste serienmäßige Windkraftanlage mit über 1 MW Leistung | |
Nordex N60 | Nordex | 46 / 60 / 69 | 60 | 1300 | ||
Nordex N62 | Nordex | 60 / 69 | 62 | 1300 | ||
Nordex S70 | Nordex | 85 | 70 | 1500 | ||
Nordex S77 | Nordex | 100 | 77 | 1500 | ||
Nordex S82 | Nordex | ? | 82 | 1500 | ||
Nordex N80 | Nordex | 60 | 80 | 2500 | ||
Nordex N90/2300 | Nordex | 80, 100, 105 | 90 | 2300 | ||
Nordex N90/2500 | Nordex | 65, 80, 85, 100 | 90 | 2500 | ||
Nordex N100/2500 | Nordex | 75, 80, 100, 140 | 100 | 2500 | ||
Nordex N100/3300 | Nordex | 75, 100 | 100 | 3300 | ||
Nordex N117/2400 | Nordex | 91, 120, 140 | 117 | 2400 | ||
Nordex N117/3000 | Nordex | 91, 120, 140 | 117 | 3000 | ||
Nordex N131/3000 | Nordex | 99, 114, 134 | 131 | 3000 | ||
Powerwind 56 | PowerWind | 71 | 56 | 900 | ||
Powerwind 90 | Powerwind | 98 | 90 | 2500 | ||
Prokon P3000 | Prokon | 142 | 116 | 3000 | ||
MD 70 | REpower | 55 / 65 / 80 | 70 | 1500 | ||
MD 77 | REpower | 61,5 / 85 / 100 | 77 | 1500 | ||
MM 70 | Repower | 55 / 65 / 80 | 70 | 2000 | ||
MM 82 | REpower | 100 | 82 | 2050 | ||
MM 92 | REpower | 68,5 / 78,5 / 80 / 100 | 92,5 | 2050 | ||
MM 100 | REpower | 80 / 100 | 100 | 1800/2000 | ||
3.2M 114 | REpower | 93 / 143 | 114 | 3200 | ||
3.4M 104 | REpower | 78–100 | 104 | 3400 | ||
5M | Repower | 117 Onshore 85–95 Offshore |
126 | 5075 | ||
6M | Repower | 100 Onshore 85–95 Offshore |
126 | 6150 | ||
Schuler SDD 100 | Schuler | 100 | 100 | 2700 | ||
Seewind 20 | Seewind | 31,2 | 22 | 110 | ||
Seewind 110 | Seewind | 31,2 | 22 | 132 | ||
SWT-2.3-82 | Siemens | 80 | 82 | 2300 | ||
SWT-2.3-93 | Siemens | 80 | 93 | 2300 | ||
SWT-2.3-101 | Siemens | 80 | 101 | 2300 | ||
SWT-2.3-113 | Siemens | 142,5 | 113 | 2300 | ||
SWT-3.0-101 | Siemens | 80 | 101 | 3000 | ||
SWT-3.6-107 | Siemens | 80 | 107 | 3600 | ||
SWT-3.6-120 | Siemens | 90 | 120 | 3600 | ||
SWT-6.0-120 | Siemens | Standortspezifisch | 120 | 6000 | ||
SWT-6.0-154 | Siemens | Standortspezifisch | 154 | 6000 | Produktbroschüre SWT-6.0 (PDF; 1,1 MB) | |
T600-48 | 60 | 48 | 600 | [1] | ||
Tacke TW 600 | Tacke | 50 / 60 | 43 | 600 | ||
Tacke TW 600a | Tacke | 60 / 70 / 76,9 | 46 | 600 | ||
Tacke TW 1.5i | Tacke | 65 / 67 / 80 | 65 | 1500 | ||
Tacke TW 1.5s | Tacke | 64,7 / 80 / 85 / 100 | 77 | 1500 | ||
USW 56-100 | Fly Tech | 18 | 17 | 107,5 | [2] | |
VENSYS 70 | Vensys | 65 / 85 | 70 | 1500 | ||
VENSYS 77 | Vensys | 61,5 / 85 / 100 | 77 | 1500 | Eine Anlage auf derzeit (Januar 2013) höchstem Holzturm Deutschlands errichtet (Windkraftanlage Hannover-Marienwerder) | |
VENSYS 82 | Vensys | 70 / 75 / 85 / 100 | 82 | 1500 | ||
VENSYS 87 | Vensys | 85 / 100 | 87 | 1500 | ||
VENSYS 100 | Vensys | 100 | 100 | 2500 | ||
VENSYS 109 | Vensys | 95 / 140 | 109 | 2500 | ||
VENSYS 112 | Vensys | 93,5 / 140 | 112 | 2500 | ||
V39-500kW | Vestas | ? | 39 | 500 | ||
V52-850kW | Vestas | ? | 52 | 850 | ||
V80-2MW | Vestas | ? | 80 | 2000 | Leistungsstärkste Windkraftanlage der Welt | |
V90-2MW | Vestas | 125 | 90 | 2000 | ||
V90-3MW | Vestas | 105 | 90 | 3000 | ||
V100 – 1.8 MW | Vestas | 94 | 100 | 1800 | ||
V100 – 2.6 MW | Vestas | ? | 100 | 2600 | ||
V112 – 3.0MW | Vestas | 119 | 112 | 3000 | ||
V126 – 3.0MW | Vestas | ? | 126 | 3000 | ||
V164 – 8.0MW | Vestas | ? | 164 | 8000 | ||
120/3fc | W2E | 100, 140 | 120 | 3000 | Hybrid-Triebstrang mit 2-stufigem Getriebe und PMG[1] | |
F48 | Windstrom Frisia | ? | 48 | 750 | ||
F56 | Windstrom Frisia | ? | 56 | 850 | ||
1566 | Windtec | ? | 66 | 1500 | Vertrieb der Lizenz | |
1570 | Windtec | ? | 70 | 1500 | Vertrieb der Lizenz | |
646 | Windtec | ? | 46 | 600 | Vertrieb der Lizenz | |
500 | Windtec Floda | ? | 36 | 500 | ||
600 | Windtec Floda | ? | 45 | 600 | ||
WWD-1-56 | Winwind | ? | 56 | 1000 | ||
WWD-1-60 | Winwind | ? | 60 | 1000 | ||
WWD-1-64 | Winwind | ? | 64 | 1000 | ||
WWD-3-100 | Winwind | ? | 100 | 3000 | ||
WWD-3-103 | Winwind | ? | 103 | 3000 | ||
WWD-3-90 | Winwind | ? | 90 | 3000 | ||
WWDI | Winwind | ? | 64 | 1200 | ||
60/1 | WKA | ? | 60 | 1200 | ||
60/2 | WKA | ? | 60 | 1310 | ||
Z-40 | Zond | ? | 40 | 500 | ||
Z-46 | Zond | ? | 46 | 750 |
Andere Bauformen
2 Rotorblätter, Horizontale Achse
Bezeichnung | Hersteller | Nabenhöhe (m) | Rotordurchmesser (m) | Nennleistung (kW) | Bild | Bemerkungen |
---|---|---|---|---|---|---|
A 1200 | Autoflug | ? | 61 | 1200 | ||
Aeolus I / WTS 75 | ERNO-Bremen | 76 | 75 | 2000 |
1983 auf Gotland | |
GC 54 | GC China | 60 / 70 | 54 | 1000 | ||
GC 57 | GC China | 60 / 70 | 57 | 1000 | ||
GC 59 | GC China | 60 / 70 | 59 | 1000 | ||
Maglarp | Karlskronavarvet AB | 78 | 80 | 3000 |
1984 Maglarp, Schweden | |
LW15-75 | Lagerwey | ? | 15 | 75 | ||
LW18/80 | Lagerwey | ? | 18 | 80 | ||
Aeroman | MAN Technologie | 15 / 22 | 14,8 | 30 | ||
Growian | MAN Technologie | 100 | 100 | 3000 |
1983 Kaiser-Wilhelm-Koog | |
Aeolus II | MBB-Bremen | 92 | 75 | 3000 |
1993 Jade-Windpark | |
N 43 | NedWind | ? | 43 | 500 | ||
NedWind 51 | NedWind | 60 | 55 | 1000 | ||
NW 40 | Nordwind | 43,5 | 40 | 500 | ||
NW 44 | Nordwind | 68 | 44 | 750 | ||
N 1000 | Nordic Windpower | 60 / 70 | 54 / 59 | 1000 | ||
NEWECS-25 | Stork-FDO | ? | 25 | 300 | ||
WES30 Hybrid turbine | 30 | 30 | 250 | |||
NG Twelve-Five | 15 / 24 / 30 | 12,5 | 33 | |||
Gamma 2000 | ||||||
Gev10/25 | Vergnet | ? | 10 | 25 | ||
WM22/150 | Windmaster | ? | 22 | 150 | ||
WM22/200 | Windmaster | ? | 21,8 | 200 | ||
WM28/300 | Windmaster | ? | 28 | 300 | ||
WM33/500 | Windmaster | ? | 33 | 500 | ||
WM40/750 | Windmaster | ? | 40 | 750 | ||
WM43/750 | Windmaster | ? | 43 | 750 | eingesetzt bei Heringsand | |
WES 18 | Wind Energy Solutions | 31 / 41 | 16 | 80 |
1 Rotorblatt, Horizontale Achse
Bezeichnung | Hersteller | Nabenhöhe (m) | Rotordurchmesser (m) | Nennleistung (kW) | Bild | Bemerkungen |
---|---|---|---|---|---|---|
Monopteros 20 | MBB | 20 | 15 | 15 | Windpark Cappel-Neufeld | |
Monopteros 50 | MBB | 60 | 47–56 | 650–1000 | Bremerhaven, Jade-Windpark |
Siehe auch
Weblinks
Einzelnachweise
- ↑ First Winergy HybridDrive installed. In: Windpower Monthly, 1. Oktober 2013. Abgerufen am 1. Oktober 2013.