IP Library Granted Patent US 9,249,783
Granted Patent B2
US 9,249,783 · App. 14/037,279 · Granted Feb 2, 2016

Stationary co-axial multi-rotor wind turbine supported by continuous central driveshaft

Inventor: Douglas Spriggs Selsam (Oak Hills, CA)
F03D11/024F03D1/025F03D1/065F03D3/002F03D11/04F05B2210/16F05B2240/212F05B2240/91F05B2240/911F05B2240/917F05B2240/96F05B2250/25F05B2250/314F05B2260/40Y02B10/30Y02E10/721Y02E10/728Y02E10/74
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Quick Facts
Patent No.
US 9,249,783
App. No.
14/037,279
Granted
Feb 2, 2016
Kind
B2
Abstract

Multiple horizontal axis type rotors are coaxially attached along the upper section of an elongate torque transmitting tower/driveshaft, The tower/driveshaft projects upward from a cantilevered bearing, and is bent downwind, until the rotors become sufficiently aligned with the wind to rotate the entire tower/driveshaft, Power is drawn from the shaft at the base. Surface mount, subsurface mount, and marine installations, including a sailboat, are disclosed. Blade-to-blade lashing, and vertical axis rotor blades may also be included. Vertical and horizontal axis type rotor blades may be interconnected along the length of the tower/driveshaft to form a structural lattice, and the central shaft may even be eliminated. Aerodynamic lifting bodies or tails, buoyant lifting bodies, buoyant rotor blades, and methods of influencing the tilt of the rotors, can help elevate the structure. This wind turbine can have as few as one single moving part.

Claims (18)

1. A windmill comprising:

a base means, said base means comprising a first bearing means and a load;

an elongate torque transmission means, having a longitudinal axis of rotation and generally having a basal end and a distal end;

a horizontal axis type rotor, having an axis of rotation; a substantially non-rotating atmospherically buoyant lifting body having a positive buoyancy, and further having a second bearing means;

wherein: said elongate torque transmission means is retained with rotational freedom proximate said basal end by said first bearing means; said elongate torque transmission means is retained with rotational freedom proximate said distal end by said second bearing means, whereby said elongate torque transmission means is suspended from said lifting body, said buoyancy of said lifting body serving to elevate said rotor and at least a portion of said elongate torque transmission means; said elongate torque transmission means is rotationally coupled to said load; said horizontal axis type rotor is coaxially attached to said elongate torque transmission means at some distance from said basal end;

whereby: said elongate torque transmission means substantially extends from said base means to said rotor; said lifting body and said rotor are blown downwind of said base means; said axis of rotation of said rotor is thereby caused to become aimed sufficiently parallel to the wind that said rotor is caused thereby to rotate; said rotation of said horizontal axis type rotor causes said elongate torque transmission means to rotate about its own said longitudinal axis of rotation; said load is driven by said rotation of said elongate torque transmission means.

2. The wind turbine of claim 1 , further comprising a multiplicity of horizontal axis type rotors coaxially attached at spaced intervals to said elongate torque transmission means.

3. The windmill of claim 1 , further comprising: an adjustable control means; linkage means attaching said control means to said rotor; whereby the angular orientation of said rotor, relative to said wind, may be influenced by said control means.

4. A windmill comprising:

a base means, said base means comprising a first bearing means and a load;

an elongate torque transmission means, having a longitudinal axis of rotation and generally having a basal end and a distal end; a horizontal axis type rotor, having an axis of rotation; a substantially non-rotating aerodynamic lifting body having aerodynamic lift, and further having a second bearing means;

wherein: said elongate torque transmission means is retained with rotational freedom proximate said basal end by said first bearing means; said elongate torque transmission means is retained with rotational freedom proximate said distal end by said second bearing means, whereby said elongate torque transmission means is suspended from said lifting body, said aerodynamic lift of said lifting body serving to elevate said rotor and at least a portion of said elongate torque transmission means; said elongate torque transmission means is rotationally coupled to said load; said horizontal axis type rotor is coaxially attached to said elongate torque transmission means at some distance from said basal end;

whereby; said elongate torque transmission means substantially extends from said base means to said rotor; said lifting body and said rotor are blown downwind of said base means; said axis of rotation of said rotor is thereby caused to become aimed sufficiently parallel to the wind that said rotor is caused thereby to rotate; said rotation of said horizontal axis type rotor causes said elongate torque transmission means to rotate about its own said longitudinal axis of rotation; said load is driven by said rotation of said elongate torque transmission means.

5. The windmill of claim 4 , further comprising a multiplicity of horizontal axis type rotors coaxially attached at spaced intervals to said elongate torque transmission means.

6. The windmill of claim 4 , wherein said substantially non-rotating aerodynamic lifting body is also atmospherically buoyant, having a positive buoyancy in the air.

7. The windmill of claim 4 , further comprising: an adjustable control means; linkage means attaching said control means to said rotor; whereby the angular orientation of said rotor, relative to said wind, may be influenced by said control means.

8. The windmill of claim 7 , further comprising a multiplicity of horizontal axis type rotors, said horizontal axis type rotors coaxially attached at spaced intervals to said elongate torque transmission means at some distance from said basal end; whereby the angular orientation of said rotors, relative to said wind, may be influenced by said control means.

9. The windmill of claim 4 , further comprising a multiplicity of horizontal axis type rotors, said horizontal axis type rotors coaxially attached at spaced intervals to said elongate torque transmission means at some distance from said one end; whereby the angular orientation of said rotors, relative to said wind, may be influenced by said control means.

Continuity (8)
Continuation 13492716 · Jun 8, 2012
Continuation 11370739 · Mar 7, 2006
Continuation In Part 10810375 · Mar 27, 2004
Continuation In Part 10781213 · Feb 17, 2004
Continuation In Part 09997499 · Nov 23, 2001
Continuation In Part 09881511 · Jun 14, 2001
Provisional Application 60712792 · Aug 30, 2005
Related Publication 20140219799A1 · Aug 7, 2014