Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

35
Power from the wind Power from the wind

Transcript of Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Page 1: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Power from the windPower from the wind

Page 2: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Sailcloth turbines for water pumping, Lasithi plateau, Crete

Page 3: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Modern waterpumping turbine

with metal blades, Kenya.

Mechanical drive from turbine rotor

shaft to verticalpump actuating

rod

Page 4: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Contours ofmean annualwind speedsin Europe.

UK (andespeciallyScotland)have the

best resources

Page 5: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Typical windturbine for electricityproduction from the

late 1970’s.

9m rotor diameter,15 kW rated poweroutput, rigid tower

construction

Page 6: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

250 kWprototype by

James Howden,Glasgow in

early 1980’s.

28m diameterrotor, wood

laminate blades,thin tubularsteel tower

Page 7: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Howden turbinesite erection

process, usingsimple A-frame

Page 8: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Access toblade tip

adjustmentmechanism

from platformon tower

Page 9: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Maintenance ofwind turbineswill demandspecial skills;

access is more problematicfor smallermachines

Page 10: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Nacelle layout of typical horizontal-axis turbine

Disc brakeGearbox

GeneratorAnemometer

Yaw bearingand drive gear

Page 11: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Vestas 75 kW and 100 kW turbines atAltamont Pass, California, early 1980’s

Page 12: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

UK Wind Energy Group (WEG) 250 kWturbines at Altamont Pass

Page 13: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Howden 330 kW production machines in California

Page 14: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

WEG 300 kWturbine inCalifornia;2 blades,

full-span pitchcontrol

Page 15: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

WEG 2-bladed turbine in a UK setting:Cemmaes wind farm, Wales

Page 16: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Wind turbines at Tarifa in southern Spain

Page 17: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Wind farm in an industrial area:Blyth Harbour, Tyne and Wear, UK

Page 18: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

First commercial offshore windfarm, Vindeby, Denmark

Page 19: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Turbines atVindeby wind

farm:Bonus 450 kWmachines withfull-span pitch

control

Page 20: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Yttre Stengrundoffshore windfarm, Sweden

5 turbines,water depth 8.5m

Page 21: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Contrastingapplications

of windpower at

Yttre Stengrund

Page 22: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Yttre Stengrundwind farm:NEG Miconturbines of

2 MW ratedpower output;rotor diameter

72m

Page 23: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Horns Reefoffshore wind

farm, Denmark.Erection oftower and

mounting ofready-assembledturbine nacelle

Vestas V80turbines, eachof rated power

2 MW

Page 24: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Horns Reef wind farm off the west coast of Denmark.80 turbines, each rated at 2 MW

Page 25: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

UK offshorewind farm at

Blyth Harbour,Tyne and Wear.

2 turbineseach ratedat 2 MW,

approx. 1 kmfrom shore

Page 26: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Single-bladedwind turbinemanufactured

by Riva Calzoni, Italy.

Rated at225 kW

Page 27: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Direct driveto generatorfor 500 kWturbine byEnercon,Germany

Page 28: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Model of Enerconturbine showing

enlarged hubrequired tocontain thedirect-drivegenerator

Page 29: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

750 kW turbinewith direct-drive

generator byJeumont, France

Page 30: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Vertical-axisturbines: 100Wbattery-charging

prototype byMMEW, Dundee.

Direct drive togenerator,

variable-pitchblades

Page 31: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

150 kW vertical-axiswind turbine at

Carmarthen Bay,Wales.

UK-designedprototype withvariable blade

geometry.

Concrete tower,composite blades

18m in height

Page 32: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Fixed-geometryvertical-axisturbine ratedat 100 kW,

Isles of Scilly,UK

Page 33: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

500 kW developmentof 150 kW turbine

with fixed-geometryblading, on test siteat Carmarthen Bay

Page 34: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.

Project EOLE 4 MW vertical-axis prototype, Quebec.Tower height 110m, catenary-profile blades

Page 35: Power from the wind. Sailcloth turbines for water pumping, Lasithi plateau, Crete.