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IMG_2657_sign.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2689_Orkney.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_4417_balance.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_5016_tram.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5013_electric tram.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5016_yellow tram.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5018_trams.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5020_tram car.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5023_tram station.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5026_tram stop.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5027_media city.jpg A tram at Media City , Salford Quays, Manchester, UK.
 
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IMG_5030_tram.jpg A tram warning sign at Media City , Salford Quays, Manchester, UK.
 
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IMG_2600_health and safety.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2608_sea.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2610_pelamis.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2612_orange.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2615_wave worker.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2618_tool bag.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2629_boat.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2636_lyness.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2650_colour.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2651_screw.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2654_yellow.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2657_tube.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2666_walk.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2668_balance.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2675_remote control.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2677_workman.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2680_hook.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2682_workman.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity. This shot shows a workman preparing to tow the devie to its test site.
 
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IMG_2689_boat.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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IMG_2695_perspective.jpg A Pelamis P2 wave energy generator on the dockside at Lyness on Hoy, Orkney Isles, Scotland, UK. The Orkney's have huge potential for wave and tidal energy generation and are world leaders in testing such devices. The pelamis P2 is 180 m long, weights 1300 tonnes and is rated at 750 Kw. It was the world's first commercial scale marine device to generate electricity to the grid, from offshore. The power is created from flexible joints that are linked to cylinders that pump liquid into high pressure accumulators to generate electricity
 
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