Floating hybrid composite wind turbine platform and tower system
A wind turbine platform is configured for floating in a body of water and includes a hull defining a hull cavity therein. The hull is formed from reinforced concrete. A tower is configured to mount a wind turbine and is also connected to the hull. An anchor member is connected to the hull and to the seabed.
1. A semi-submersible wind turbine platform configured to float semi-submerged on a body of water and supporting a wind turbine, the wind turbine platform comprising:
a central buoyant pontoon;
a wind turbine tower mounted on the central buoyant pontoon;
a wind turbine mounted to the wind turbine tower; and
a plurality of outer buoyant pontoons, the outer pontoons being connected to the central pontoon by structural members, with the central buoyant and outer buoyant pontoons having sufficient buoyancy to support a wind turbine tower;
wherein a longitudinal axis of the central buoyant pontoon and longitudinal axes of the outer buoyant pontoons are substantially parallel to each other and substantially perpendicular to a surface of the body of water in which the semi-submersible wind turbine platform floats;
wherein the wind turbine is configured to operate while the semi-submersible wind turbine platform floats, semi-submerged, in the body of water;
and wherein the central buoyant pontoon and the plurality of outer buoyant pontoons are formed from a plurality of sections, with adjacent sections being joined at a connecting joint.
2. The wind turbine platform according to claim 1 , wherein the plurality of sections are connected by a plurality of post-tensioning cables extending through walls of the sections.
3. The wind turbine platform according to claim 1 , further including attachment rings being arranged as one of mounted between adjacent sections and mounted to an outside surface of the pontoons.
4. The wind turbine platform according to claim 1 , wherein a sealing member is disposed between adjacent sections to seal the connection joints.
5. The wind turbine platform according to claim 1 , wherein the sections are fabricated from fiber reinforced plastic composite material, reinforced concrete, or steel, or mixtures thereof.
6. The wind turbine platform according to claim 1 , wherein the sections are formed from reinforced concrete.
7. The wind turbine platform according to claim 1 , wherein the pontoons are at least partially filled with ballast.
8. The wind turbine platform according to claim 1 , wherein the tower is made of fiber reinforced plastic composite material.
9. A semi-submersible wind turbine platform configured to float semi-submerged on a body of water and supporting a wind turbine, the wind turbine platform comprising:
a central buoyant reinforced concrete pontoon formed from a plurality of sections joined at connecting joints, the plurality of sections being connected by a plurality of post-tensioning cables;
a wind turbine tower mounted on the central buoyant reinforced concrete pontoon;
a wind turbine mounted to the wind turbine tower; and
a plurality of outer buoyant reinforced concrete pontoons formed from a plurality of sections joined at connecting joints, the plurality of sections being connected by a plurality of post-tensioning cables, and the outer pontoons being connected to the central pontoon by structural members, with the central buoyant and outer buoyant pontoons having sufficient buoyancy to support a wind turbine tower;
wherein a longitudinal axis of the central buoyant reinforced concrete pontoon and longitudinal axes of the outer buoyant pontoons are substantially parallel to each other and substantially perpendicular to a surface of the body of water in which the semi-submersible wind turbine platform floats; and
wherein the wind turbine is configured to operate while the semi-submersible wind turbine platform floats, semi-submerged, in the body of water.
10. The wind turbine platform according to claim 9 , wherein the wind tower is made of fiber reinforced plastic composite material.