IP Library Granted Patent US 8,362,637
Granted Patent B2
US 8,362,637 · App. 13/107,921 · Granted Jan 29, 2013

Method and apparatus for wind energy system

Inventors: Percy Kawas (Los Altos, CA); Gulnar Kawas (Los Altos, CA)
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Quick Facts
Patent No.
US 8,362,637
App. No.
13/107,921
Granted
Jan 29, 2013
Kind
B2
Abstract

The description relates to generating power using wind energy. The current disclosure provides an opportunity to develop a new energy generating resource. According to some aspects, the apparatus uses a passive device to capture wind, and accelerate the wind toward a turbine and other fan or turbine blades to generate power in a confined structure. The foot print of the current design is scalable to individual users or businesses such as homes, industrial facilities, small business sites, as well as small power utilities such as wind farms. The passive devices to capture wind can have active electronic or mechanical controls to control the amount of wind flowing in the structure to generate power.

Claims (40)

1. A wind capturing apparatus, the apparatus comprising:

a plurality of wind catching segments disposed in a circumferential direction around a center position, each segment comprising:

an exterior opening configured to receive wind;

an interior opening disposed between the exterior opening and the center position, the interior opening facing the exterior opening;

a top wall;

a bottom wall;

a pair of sidewalls connecting the top wall and the bottom wall to define a channel between the openings, the channel being configured to direct substantially all of a volume of air entering the exterior opening to the interior opening to thereby accelerate a velocity of the air between the exterior opening and the interior opening; and

a power generating apparatus configured to receive wind passing through the interior opening to drive a rotor for power generation,

wherein the pair of sidewalls extend toward the interior opening in a direction so as to taper inwardly toward a centerline of the channel at an angle to a radial line extending between an edge of the exterior opening in the circumferential direction and the center position.

2. The wind capturing apparatus according to claim 1 , further comprising:

an electrical power generator for converting rotational power into electrical power; and

a shaft that connects the electrical power generator to the rotor.

3. The wind capturing apparatus according to claim 2 , wherein the electrical power generator generates alternating current power.

4. The wind capturing apparatus according to claim 2 , wherein the electrical power generator generates direct current power.

5. The wind capturing apparatus according to claim 2 , further comprising a solar panel mounted on the wind catching segments to provide a second source of electrical power.

6. A wind capturing apparatus, the apparatus comprising:

a plurality of wind catching segments disposed in a circumferential direction around a center position, each segment comprising:

an exterior opening configured to receive wind;

an interior opening disposed between the exterior opening and the center position, the interior opening facing the exterior opening;

a top wall;

a bottom wall;

a pair of sidewalls connecting the top wall and the bottom wall to define a channel between the openings, the channel being configured to direct substantially all of a volume of air entering the exterior opening to the interior opening to thereby accelerate a velocity of the air between the exterior opening and the interior opening; and

an exhaust structure configured to divert wind exiting the interior opening into a duct of a building structure to provide ventilation,

wherein the pair of sidewalls extend toward the interior opening in a direction so as to taper inwardly toward a centerline of the channel at an angle to a radial line extending between an edge of the exterior opening in the circumferential direction and the center position.

7. The wind capturing apparatus according to claim 6 , further comprising at mesh structure to prevent debris from entering the exterior opening or the interior opening.

8. A wind capturing apparatus, the apparatus comprising:

a plurality of wind catching segments disposed in a circumferential direction around a center position, each segment comprising:

an exterior opening configured to receive wind;

an interior opening disposed between the exterior opening and the center position, the interior opening facing the exterior opening;

a top wall;

a bottom wall;

a pair of sidewalls connecting the top wall and the bottom wall to define a channel between the openings, the channel being configured to direct substantially all of a volume of air entering the exterior opening to the interior opening to thereby accelerate a velocity of the air between the exterior opening and the interior opening; and

a solar panel disposed on of the wind capturing apparatus,

wherein the pair of sidewalls extend toward the interior opening in a direction so as to taper inwardly toward a centerline of the channel at an angle to a radial line extending between an edge of the exterior opening in the circumferential direction and the center position.

9. The wind capturing apparatus according to claim 8 , further comprising a power generating apparatus configured to receive wind passing through the interior opening to drive a rotor for power generation.

10. The wind capturing apparatus according to claim 9 , further comprising:

an electrical power generator for converting rotational power into electrical power; and

a shaft that connects the electrical power generator to the rotor.

11. The wind capturing apparatus according to claim 10 , wherein the electrical power generator generates alternating current power.

12. The wind capturing apparatus according to claim 10 , wherein the electrical power generator generates direct current power.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2013
From: KAWAS, PERCY; KAWAS, GULNAR
To: ALCHEMY POWER, INC.
Reel/Frame 030277/0510 →
Continuity (2)
Continuation In Part 12968126 · Dec 14, 2010
Related Publication 20110221196A1 · Sep 15, 2011