Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

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Power from the waves

Transcript of Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Page 1: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Power from the waves

Page 2: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Global ocean wave energy resource(annual averages in kW/m width of wave)

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Page 3: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Masuda buoy

Japanese wave-powerednavigation buoy, firstintroduced in 1960’s.Overall diameter 3m.Air turbine and 60W

generator, powered byoscillating water column.

Output stored inlead-acid batteries.

Flotation chamber

Oscillating air flow

Generator

Page 4: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

NorwegianOWC schematic

Generator

Wells turbine

Circular splash guardwith annular spacefor air flow to turbine

OWC chamber

Page 5: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Norwegian OWC

500 kW prototypedevice on shoreline

near Stavanger.

Concrete OWCchamber toppedby steel tubular

tower. Single-rotorWells turbine.

Constructed in1985, destroyed by

storm in 1988

Page 6: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Prototype oscillating water column device, Portnahaven, Islay.Wells turbine and generator rated at 75 kW. Constructed

in 1985, de-commissioned in 1999

Page 7: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Islay prototype OWC schematic

OWC chamberWells turbine

Generator

Page 8: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

500 kW rated, shoreline mounted oscillating water columndevice near Portnahaven, Islay

Page 9: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Aerial view of tapered channel wave power plant

Tapered channelSea

Reservoir

Turbine house (250 kW)

Page 10: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Wave Dragon

A Danish design: the arms amplify the incoming waveswhich spill over into a central chamber. Power take-off

uses simple low-head hydro power technology

An artist’simpression

of the device.

At full scale,it would be260 m wideand woulddevelop up to 4 MW

Page 11: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

A 1/4.5 scale prototype Wave Dragon during sea trialsoff the Danish coast, 2003

Page 12: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Cockerell raft wave energy converterFunded under UK wave energy programme in the 1980s

Segmentedraft flexes

under waveaction. Powertake-off usinghigh-pressure

hydraulics.

1/10-scaleprototype

tested in theEnglishchannel

Page 13: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Salter’s DuckFunded under UK wave energy programme in the 1980s.

Schematic view of cross-sectionAngular motion between duck and spine actuates

hydraulic pumps for power take-off

Page 14: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Testing of ducks at about 1/10 scale in Loch Ness, late 1980s.Each duck is free to take up its own angular position relative

to the common spine

Page 15: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

1/7 scale Pelamisin sea trials in the

Firth of Forth nearEdinburgh, 2001

Page 16: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Pelamis power conversion module

Hydraulic ram

High pressureaccumulator

Hydraulic motorand generator

Fluid reservoir

Hinged joint

Page 17: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)

Pelamis 750 kW prototype in transit to Orkney test centre

Page 18: Power from the waves. Global ocean wave energy resource (annual averages in kW/m width of wave)