IP Library Granted Patent US 8,604,635
Granted Patent B2
US 8,604,635 · App. 13/445,530 · Granted Dec 10, 2013

Vertical axis wind turbine for energy storage

Inventor: Daniel N. Boone (Indiana, PA)
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Quick Facts
Patent No.
US 8,604,635
App. No.
13/445,530
Granted
Dec 10, 2013
Kind
B2
Abstract

An improved wind turbine device with energy storage comprises a turbine rotor with rotatable vertical shaft, at least one bearing for said vertical shaft, and multiple rotor vanes disposed symmetrically for rotation about the vertical shaft. Each of said multiple rotor vanes is substantially box-shaped with four solid sides and a front and rear side disposed in a radial vertical plane. The front side to each vane is substantially open faced and the rear side has an opening covered by a plurality of flaps. Each of said flaps is capable of moving with the directional passage of wind through the vane.

Claims (31)

1. A vertical axis wind turbine for storing energy, said wind turbine comprising:

(a) a turbine rotor with a support platform, a rotatable vertical shaft extending from said platform, at least one bearing for said vertical shaft, and at least three rotor vanes disposed for rotation about the vertical shaft, each rotor vane being substantially box-shaped with four solid sides and a front and rear side disposed in a radial vertical plane, the front side being substantially open faced and the rear side having an opening covered by a flap that can be moved with a directional passage of wind through the rotor vane;

(b) means for attaching each rotor vane to said vertical shaft so that the front side of each vane lies in the same rotational direction around said vertical shaft;

(c) a plurality of braces, each brace affixed at one end to said rotor vane and at an opposite end to a circular spoked wheel on the support platform, and

(d) an electric generator situated adjacent the spoked wheel, said spoked wheel having means for connecting to said generator and turning said generator to store energy with wind rotation of said vertical shaft.

2. The energy storing wind turbine of claim 1 , wherein said generator situated below said spoked wheel.

3. The energy storing wind turbine of claim 1 , wherein said vertical shaft extends at least partially through said support platform.

4. The energy storing wind turbine of claim 1 , wherein said spoked wheel includes a plurality of interconnecting track grooves.

5. The energy storing wind turbine of claim 4 which further includes a plurality of friction reducing devices.

6. The energy storing wind turbine of claim 1 , wherein said generator connecting means includes a toothed belt and said generator includes a pulley having a plurality of teeth sized to hold said belt.

7. The energy storing wind turbine of claim 1 , wherein said generator connecting means includes a grooved fan belt and said generator includes a pulley sized to hold said grooved fan belt.

8. The energy storing wind turbine of claim 1 , wherein said generator connecting means includes a chain drive and said generator includes a pulley with teeth sized to receive said chain drive.

9. An improved vertical axis wind turbine for storing energy, said wind turbine comprising:

(a) a turbine rotor with a support platform, a rotatable vertical shaft extending from said platform, at least one bearing for said vertical shaft, and at least three rotor vanes disposed for rotation about the vertical shaft, each rotor vane being substantially box-shaped with four solid sides and a front and rear side disposed in a radial vertical plane, the front side being substantially open faced and the rear side having an opening covered by a flap that can be moved with a directional passage of wind through the rotor vane;

(b) means for attaching each rotor vane to said vertical shaft so that the front side of each vane lies in the same rotational direction around said vertical shaft;

(c) a plurality of braces, each brace affixed at one end to said rotor vane and at an opposite end to a circular spoked wheel on the support platform, and

(d) an electric generator situated adjacent the spoked wheel, said spoked wheel being connected to said generator for turning said generator to store energy with wind rotation of said vertical shaft by at least one connector means selected from the group consisting of:

(i) a toothed belt with said generator including a pulley having a plurality of teeth sized to hold said belt;

(ii) a grooved fan belt with said generator including a pulley sized to hold said grooved fan belt; and

(iii) a chain drive with said generator including a pulley with teeth sized to receive said chain drive.

10. The improved energy storing wind turbine of claim 9 , wherein said generator situated below said spoked wheel.

11. The improved energy storing wind turbine of claim 9 , wherein said spoked wheel includes a plurality of interconnecting track grooves.

12. The improved energy storing wind turbine of claim 9 which further includes a plurality of friction reducing devices.

13. In a vertical axis wind turbine that comprises: (a) a turbine rotor with a rotatable vertical shaft, at least one bearing for said vertical shaft, and three to five rotor vanes disposed symmetrically for rotation about the vertical shaft, each rotor vane being made from durable lightweight material and being substantially box-shaped with four solid sides and a front and rear side disposed in a radial vertical plane, the front side being substantially open faced and the rear side having an opening covered by a substantially rigid flap that can be moved with a directional passage of wind through the rotor vane; (b) means for attaching each rotor vane to the vertical shaft so that the front side of each vane lies in the same clockwise or counter-clockwise direction around the vertical shaft; (c) a support platform through which the vertical shaft at least partially extends; (d) a plurality of braces, each brace affixed at one end to said vertical shaft and at an opposite end to a circular spoked wheel on said platform, the improvement which comprises:

an electric generator situated adjacent the spoked wheel, said spoked wheel being connected to said generator for turning said generator to store energy with wind rotation of said vertical shaft by at least one connector means selected from the group consisting of:

(i) a toothed belt with said generator including a pulley having a plurality of teeth sized to hold said belt;

(ii) a grooved fan belt with said generator including a pulley sized to hold said grooved fan belt; and

(iii) a chain drive with said generator including a pulley with teeth sized to receive said chain drive.

14. The improvement of claim 13 , wherein said generator situated below said spoked wheel.

15. The improvement of claim 13 , wherein said spoked wheel includes a plurality of interconnecting track grooves.

16. The improvement of claim 13 which further includes a plurality of friction reducing devices.

Continuity (3)
Continuation In Part 12151600 · May 8, 2008
Continuation In Part 11715143 · Mar 7, 2007
Related Publication 20130119672A1 · May 16, 2013