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IMG_0622_shades.jpg The Krakken, a jack up barge, that is constructing the wind turbines of the Walney offshore wind farm, uses a specialist cradle to lift a turbine blade into place. The farm consists of 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy. Cumbria, UK.
 
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IMG_1913_foreman.jpg The Krakken, a jack up barge, that is constructing the wind turbines of the Walney offshore wind farm. The farm consists of 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy. Cumbria, UK.
 
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IMG_8566_helmet.jpg The jack up barge, The Goliath lifting a transition pieces into place on the Walney Offshore windfarm project, off Barrow in Furness, Cumbria, UK. When finished it will have 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy.
 
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IMG_8593_high vis.jpg A crane on the jack up barge, Goliath.
 
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IMG_8659_life vest.jpg A massive crane lifts a 320 tonne transition piece onto the deck of the jack up barge, The Goliath ready to take out to the Walney Offshore windfarm project, off Barrow in Furness, Cumbria, UK. When finished it will have 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy.
 
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IMG_9070_male.jpg The Walney offshore wind farm consists of 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy. Cumbria, UK.
 
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IMG_9222_man.jpg A blade on a turbine at the Walney offshore wind farm consists of 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy. Cumbria, UK.
 
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IMG_9531_sunglasses.jpg Airplane contrails over the Walney offshore wind farm consists of 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy. Cumbria, UK.
 
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IMG_9930_shades.jpg A turbine at the Walney offshore wind farm which consists of 102, 3.6 MW turbines, giving a total capacity of the Walney project of 367.2 MW, enough to power 320,000 homes. The rotor diameter of the turbines is 107m for Walney 1 and 120 m for Walney 2. The wind farm is owned and constructed by Dong Energy. Cumbria, UK.
 
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IMG_9981_PPE.jpg The Ormonde Offshore Wind Farm is currently being built in the Irish Sea, 10km off Barrow-In-Furness. On completion the wind farm will comprise 30 RePower 5M wind turbines with the capacity of 150 megawatts and expected to produce around 500 gigawatt hours of electricity every year. These turbines are some of the most powerful wind turbines in the world,
 
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IMG_6393_clean.jpg Solar panels being used to generate electricity to power scientific equipment as part of a research project by scientists from Sydney University. Snowy mountains, Australia.
 
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IMG_6393_tracker.jpg Solar panels being used to generate electricity to power scientific equipment as part of a research project by scientists from Sydney University. Snowy mountains, Australia.
 
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IMG_4138_tidal power.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows the bank of electrical switch gear converters in the sub station at Billia Croo.
 
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IMG_4139_wave energy.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows the bank of electrical switch gear converters in the sub station at Billia Croo.
 
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IMG_4144_wave power.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows the bank of electrical switch gear converters in the sub station at Billia Croo.
 
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IMG_4145_orkney.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows the bank of electrical switch gear converters in the sub station at Billia Croo.
 
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IMG_4151_EMEC.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitering the switch gear equipment in the substation.
 
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IMG_4152_emec.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitering the switch gear equipment in the substation.
 
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IMG_4159_billia croo sub station.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitoring the switch gear equipment in the substation.
 
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IMG_4163_switch.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitoring the switch gear equipment in the substation.
 
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IMG_4164_monitor.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitoring the switch gear equipment in the substation.
 
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IMG_4166_high vis.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitoring the switch gear equipment in the substation.
 
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IMG_4171_electrician.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitoring the switch gear equipment in the substation.
 
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IMG_4175_colleague.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot shows an electrician monitoring the switch gear equipment in the substation.
 
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IMG_4182_readout.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot the switch gear equipment in the substation.
 
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IMG_4184_high tech.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot the switch gear equipment in the substation.
 
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IMG_4187_red.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot the switch gear equipment in the substation.
 
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IMG_4188_padlock.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot the switch gear equipment in the substation.
 
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IMG_4194_switch gear.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot the switch gear equipment in the substation.
 
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IMG_4200_sign in.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world.
 
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IMG_4203_records.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world.
 
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IMG_4208_billia croo.jpg The EMEC centre's test site of Billia Croo in Stromness, Orkney, Scotland, UK. The European Marine Energy Centre is the only accredited wave and tidal energy test centre for marine renewable energy in the world. This shot the switch gear equipment in the substation.
 
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