IP Library Granted Patent US 10,598,155
Granted Patent B2
US 10,598,155 · App. 15/346,320 · Granted Mar 24, 2020

Floating hybrid composite wind turbine platform and tower system with suspended mass

Inventors: Habib J. Dagher (Veazie, ME); Anthony M. Viselli (Bangor, ME); Andrew J. Goupee (Ellsworth, ME)
Assignee: University of Maine System Board of Trustees
F03D13/25B63B1/048B63B1/107B63B5/14B63B5/24B63B21/50B63B2001/044B63B2035/442B63B2035/446B63B2231/04B63B2231/50B63B2231/52B63B2231/60B63B2231/66B63B2231/68F03D13/30F05B2240/912F05B2240/93F05B2240/95Y02E10/727Y02E10/728
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Quick Facts
Patent No.
US 10,598,155
App. No.
15/346,320
Granted
Mar 24, 2020
Kind
B2
Abstract

A wind turbine platform configured to float in a body of water and support a wind turbine thereon includes a buoyant hull platform. A wind turbine tower is centrally mounted on the hull platform and a wind turbine is mounted to the wind turbine tower. An anchor is connected to the hull platform and to the seabed, and a weight-adjustable mass is suspended from the hull platform.

Claims (22)

1. A wind turbine platform configured to float in a body of water and support a wind turbine thereon, the wind turbine platform comprising:

a buoyant hull platform, wherein the hull platform includes a central portion and three buoyant legs extending radially outwardly from the central portion;

a wind turbine tower centrally mounted on the central portion of the hull platform;

a wind turbine mounted to the wind turbine tower;

a plurality of anchors connected to the hull platform and to the seabed wherein each of the three legs is connected to one of the plurality of anchors by a catenary mooring line;

a weight-adjustable mass; and

a cable extending between a distal end of each of the three buoyant legs and the weight-adjustable mass, thus suspending the weight-adjustable mass from the hull platform.

2. The wind turbine platform according to claim 1 , wherein the cables are formed from one of steel rope, steel cable, steel chain segments, synthetic rope, and composite tendons.

3. The wind turbine platform according to claim 1 , wherein the mass has a weight between 10 kg and 1500 kg.

4. The wind turbine platform according to claim 1 , wherein the mass is formed from one or more of rocks, pieces of concrete, and pieces of steel.

5. The wind turbine platform according to claim 1 , wherein the mass is suspended within a container.

6. The wind turbine platform according to claim 5 , wherein the container is one of a net and a bucket.

7. A semi-submersible wind turbine platform configured to float semi-submerged on a body of water and support a wind turbine thereon, 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;

three 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;

a plurality of anchors connected to the wind turbine platform and to the seabed wherein each of the three outer pontoons is connected to one of the plurality of anchors by a catenary mooring line;

a weight-adjustable mass; and

a cable extending between each of the three outer buoyant pontoons and the weight-adjustable mass, thus suspending the weight-adjustable mass from the wind turbine platform

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; and

wherein the wind turbine is configured to operate while the semi-submersible wind turbine platform floats, semi-submerged, in the body of water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2016
From: DAGHER, HABIB J.; VISELLI, ANTHONY M.; GOUPEE, ANDREW J.
To: UNIVERSITY OF MAINE SYSTEM BOARD OF TRUSTEES
Reel/Frame 040360/0637 →
Continuity (3)
Continuation 13883652
Provisional Application 61410127 · Nov 4, 2010
Related Publication 20170051724A1 · Feb 23, 2017
Cited By (1)
US 12,583,560