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New Scientist has highlighted some of the latest technologies being developed to harness power from the sea.
Companies such as Pelamis Wave Power and Aquamarine Power are already testing prototypes of their so-called wave energy 'harvesters' - enormous machines that can capture the massive potential energy stored within ocean waves.
Pelamis' huge P2 is filled with state-of-the-art computers that allow programmers to control and update its operations on the fly, quickly taking advantage of changes in sea conditions to maximise energy production and increase efficiency.
The proof is in the pudding, as P2 can produce 750 kilowatts of power - twice as much as earlier prototypes.
Aquamarine's Oyster 800, meanwhile, can generate an incredible 800 kilowatts by way of a giant hinged flap that juts out of the water. Each passing wave closes the flap shut like a clamshell, with the resultant hydraulic pressure driving an onshore turbine.
"If you can get that sort of level of performance improvement then the economics suddenly start to look a lot more favourable," says The Carbon Trust's Stephen Wyatt.
New Scientist has more on the story HERE.

New Scientist has highlighted some of the latest technologies being developed to harness power from the sea.

Companies such as Pelamis Wave Power and Aquamarine Power are already testing prototypes of their so-called wave energy 'harvesters' - enormous machines that can capture the massive potential energy stored within ocean waves.

Pelamis' huge P2 is filled with state-of-the-art computers that allow programmers to control and update its operations on the fly, quickly taking advantage of changes in sea conditions to maximise energy production and increase efficiency.

The proof is in the pudding, as P2 can produce 750 kilowatts of power - twice as much as earlier prototypes.

Aquamarine's Oyster 800, meanwhile, can generate an incredible 800 kilowatts by way of a giant hinged flap that juts out of the water. Each passing wave closes the flap shut like a clamshell, with the resultant hydraulic pressure driving an onshore turbine.

"If you can get that sort of level of performance improvement then the economics suddenly start to look a lot more favourable," says The Carbon Trust's Stephen Wyatt.

New Scientist has more on the story HERE.

Published in Power From the Sea

About the Clipper Round the World Yacht Race

The Clipper Round the World Yacht Race is undoubtedly one of the greatest ocean adventures on the planet, also regarded as one of its toughest endurance challenges. Taking almost a year to complete, it consists of eleven teams competing against each other on the world’s largest matched fleet of 70-foot ocean racing yachts.

The Clipper Race was established in 1996 by Sir Robin Knox-Johnston, the first person to sail solo, non-stop, around the world in 1968-69. His aim was to allow anyone, regardless of previous sailing experience, the chance to embrace the thrill of ocean racing; it is the only event of its kind for amateur sailors. Around 40 per cent of crew are novices and have never sailed before starting a comprehensive training programme ahead of their adventure.

This unique challenge brings together everyone from chief executives to train drivers, nurses and firefighters, farmers, airline pilots and students, from age 18 upwards, to take on Mother Nature’s toughest and most remote conditions. There is no upper age limit, the oldest competitor to date is 76.

Now in its twelfth edition, the Clipper 2019-20 Race started from London, UK, on 02 September 2019.