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Chapter 2: The introduction of deep offshore designs<br />

No. Project name Company Type of floater<br />

6 <strong>Deep</strong>water Innovative<br />

Wind<br />

Energy Technology<br />

(DIWET)<br />

Semisub<br />

7 Eolia Renovables<br />

de<br />

Inversiones<br />

(EOLIA)<br />

8 PelastarWave-<br />

Hub<br />

Pole Mer Semi - submersible<br />

floater<br />

Acciona Energy SPAR, Tension leg<br />

platform (TLP) and<br />

semisubmersible<br />

The Glosten Associates Floating platform<br />

system demonstrator<br />

Demo/Pilot Prototype Pre-Production/Serial<br />

Scale Year Turbine size (MW)<br />

Tanks testing<br />

on 1:40<br />

scale three<br />

floating<br />

wind turbine<br />

models<br />

Date of<br />

deployment<br />

Turbine size<br />

(MW)<br />

Provisional<br />

date of<br />

deployment<br />

Origin<br />

France<br />

2011 5 MW Spain<br />

6 MW 2016 UK<br />

9 IDEOL IDEOL Concrete floater Tank test 2012 5-6 MW 2013 50 MW pre -<br />

series wind<br />

farm<br />

10 FLOTTEK Consortium led by Gamesa,<br />

including Iberdrola<br />

Tension leg turbine<br />

platform<br />

11 GICON TLP GICON et al Modular tension leg<br />

platform<br />

12 Floating Haliade<br />

Alstom Tension leg buoy<br />

(TLB) for water<br />

depths between<br />

50m to 80m and<br />

TLP for water depths<br />

between 80m to<br />

300m<br />

13 FLOATGEN Gamesa, IDEOL, Stuttgart<br />

University, Acconia<br />

Windpower, Navantia, Olav<br />

Olsen, RSK Environment<br />

Ltd, Greenovate! Europe,<br />

Acciona Energy<br />

14 Hexicon platform<br />

Ring shaped surface<br />

floating platform<br />

Semi-submersible<br />

1:25<br />

Tank test<br />

2015 France<br />

2 MW Spain<br />

2013 2 MW 2014 2014 Germany<br />

6 MW France<br />

2 MW and 3 MW 2015 Spain<br />

Hexicon Floater 54 MW wind<br />

and 15 MW<br />

wave<br />

2014-2015 Sweden<br />

22 <strong>Deep</strong> <strong>Water</strong> - The next step for offshore wind energy

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