IP Library Granted Patent US 10,938,274
Granted Patent B2
US 10,938,274 · App. 16/263,299 · Granted Mar 2, 2021

Devices and methods for fluid mass power generation systems

Inventor: Robert David Sauchyn (Regina, CA)
H02K7/1823F03B3/126F03D1/0633H02K11/046
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Quick Facts
Patent No.
US 10,938,274
App. No.
16/263,299
Granted
Mar 2, 2021
Kind
B2
Abstract

A fluid mass movement electrical energy generation device and system may comprise a modular and scalable array of stationary tube-shaped modules containing small rotating turbines. Tube-shaped modules may be easily installed by anyone, almost anywhere fluid mass flow is present (including many locations not suited to conventional wind turbines) and may efficiently, safely and quietly capture energy from turbulent and inconsistent fluid flow patterns.

Claims (53)

1. An electrical energy generation device, comprising:

a turbine assembly comprising a first rotor, a second rotor disposed a distance away from the first rotor along an axis of rotation and a plurality of curved blades spanning the distance between the first and second rotors and solely supporting the first and second rotors in rotation about the axis of rotation;

a plurality of magnets disposed within each of the first and second rotors;

a first stator support co-axially disposed relative to the first rotor and a second stator support co-axially disposed relative to the second rotor;

a plurality of conductive wire coils disposed within each of the first and second stator supports; and

a one-piece housing tube cover extending at least from the first stator support to the second stator support and encircling the first and second rotors and the first and second stator supports but for at least one cutout that is parallel to the axis of rotation and that is configured to expose a portion of the plurality of curved blades on only one side of the axis of rotation such that fluid mass flow impinging upon the exposed portion of the plurality of blades through the cutout causes the curved blades to rotate and electrical energy to be induced in the plurality of conductive wire coils.

2. The electrical energy generation device of claim 1 , further comprising at least one support strut centered on the axis of rotation, each support strut being coupled to each of the plurality of curved blades.

3. The electrical energy generation device of claim 2 , wherein the turbine assembly is free from any central shaft disposed along the axis of rotation.

4. The electrical energy generation device of claim 2 , wherein the turbine circumscribes empty space along the axis of rotation, except where the at least one support strut crosses the axis of rotation.

5. The electrical energy generation device of claim 1 , wherein the diameter of the first and second rotors is larger than a diameter of a volume of revolution circumscribed by the plurality of curved blades.

6. The electrical energy generation device of claim 1 , wherein the first and second stator supports are each formed of a single piece of material.

7. The electrical energy generation device of claim 1 , wherein the plurality of curved blades is configured to freely rotate clockwise or counterclockwise.

8. The electrical energy generation device of claim 1 , wherein the cutout of the housing tube is configured such that a longest direction thereof is parallel to the axis of rotation.

9. The electrical energy generation device of claim 1 , wherein each of the first and second rotors comprise blade attachment features at 0, 120 and 240 degree positions, respectively, and wherein the plurality of curved blades comprise first to third curved blades attached to the blade attachment features of the first rotor at 0 degrees, 120 degrees and 240 degrees, respectively, and wherein the first to third curved blades are attached to the blade attachment features of the second rotor at 120 degrees, 240 degrees and 0 degrees, respectively.

10. An array of electrical energy generation devices, comprising:

a plurality of electrical energy generation devices disposed adjacent to and above and below one another, each of the plurality of electrical energy generation devices comprising:

a turbine assembly comprising a first rotor, a second rotor disposed a distance away from the first rotor along an axis of rotation and a plurality of curved blades spanning the distance between the first and second rotors and solely supporting the first and second rotors in rotation about the axis of rotation;

a plurality of magnets disposed within each of the first and second rotors;

a first stator support co-axially disposed relative to the first rotor and a second stator support co-axially disposed relative to the second rotor;

a plurality of conductive wire coils disposed within each of the first and second stator supports; and

a one-piece housing tube cover extending at least from the first stator support to the second stator support and encircling the first and second rotors and the first and second stator supports but for at least one cutout that is parallel to the axis of rotation and that is configured to expose a portion of the plurality of curved blades on only one side of the axis of rotation such that fluid mass flow impinging upon the exposed portion of the plurality of blades through the cutout causes the curved blades to rotate and electrical energy to be induced in the plurality of conductive wire coils.

11. The array of electrical energy generation devices of claim 10 , further comprising:

a dummy housing tube disposed at a bottom of each row of the array, the dummy housing tube being identical to each of the housing tubes of each of the plurality of the constituent electrical energy generation devices of the array, but for a presence of the cutout.

12. The array of electrical energy generation devices of claim 10 , wherein each of the plurality of electrical energy generation devices is configured to independently rotate clockwise or counterclockwise, in or out of phase with other ones of the plurality of electrical energy generation devices.

13. The array of electrical energy generation devices of claim 10 , wherein AC electrical energy is induced in each of the plurality of conductive wire coils and wherein each of the plurality of electrical energy generation devices further comprises an AC to DC converter and wherein a converted DC electrical energy output contribution of each of the plurality of electrical energy generation devices is summed as the output of the array of electrical energy generation devices.

14. A method of generating electrical energy, comprising:

providing a plurality of electrical energy generation devices disposed adjacent to and above and below one another in an array, each of the plurality of electrical energy generation devices comprising:

a turbine assembly comprising a first rotor, a second rotor disposed a distance away from the first rotor along an axis of rotation and a plurality of curved blades spanning the distance between the first and second rotors and solely supporting the first and second rotors in rotation about the axis of rotation; a plurality of magnets disposed within each of the first and second rotors; a first stator support co-axially disposed relative to the first rotor and a second stator support co-axially disposed relative to the second rotor; a plurality of conductive wire coils disposed within each of the first and second stator supports; and a one-piece housing tube cover extending at least from the first stator support to the second stator support and encircling the first and second rotors and the first and second stator supports but for at least one cutout that is parallel to the axis of rotation and that is configured to expose a portion of the plurality of curved blades through the cutout; and

exposing a portion of the plurality of curved blades to fluid mass flow through the cutout; and

inducing electrical energy in the plurality of conductive wire coils as the fluid mass flowing through the at least one cutout causes the curved blades to rotate about the axis of rotation and the plurality of magnets in the first and second rotors rotate past the plurality of conductive wire coils in the first and second stator supports.

15. The method of claim 14 , further comprising providing, in each of the plurality of electrical energy generation devices, at least one support strut centered on the axis of rotation, each support strut being coupled to each of the plurality of curved blades.

16. The method of claim 15 , wherein the turbine comprises empty space along the axis of rotation, except where the at least one support strut crosses the axis of rotation.

17. The method of claim 14 , wherein the turbine assembly is free from any central shaft disposed along the axis of rotation.

18. The method of claim 14 , wherein the diameter of the first and second rotors is larger than a diameter of a volume of revolution circumscribed by the plurality of curved blades as they rotate.

19. The method of claim 14 wherein, in each of the plurality of electrical energy generation devices, the first and second stator supports are each formed of a single piece of material.

20. The method of claim 14 , wherein, in each of the plurality of electrical energy generation devices, the cutout of the housing tube is configured such that a longest direction thereof is parallel to the axis of rotation.

21. The method of claim 14 , wherein, in each of the plurality of electrical generation devices, each of the first and second rotors comprise blade attachment features at 0, 120 and 240 degree positions, respectively, and wherein the plurality of curved blades comprise first to third curved blades attached to the blade attachment features of the first rotor at 0 degrees, 120 degrees and 240 degrees, respectively, and wherein the first to third curved blades are attached to the blade attachment features of the second rotor at 120 degrees, 240 degrees and 0 degrees, respectively.

22. The method of claim 14 , wherein the plurality of curved blades of each of the plurality of electrical energy generation devices is configured to independently rotate clockwise or counterclockwise, in or out of phase with the curved blades of other ones of the plurality of electrical energy generation devices.

23. The method of claim 14 , wherein AC electrical energy is induced in each of the plurality of conductive wire coils of each of the plurality of electrical energy generation devices and wherein the method further comprises:

converting the induced AC electrical energy to DC electrical energy in each of the electrical energy generation devices; and

summing a converted DC electrical energy output contribution of each of the plurality of electrical energy generation devices to generate an output of the array of electrical energy generation devices.

24. An electrical energy generation device, comprising:

a turbine assembly comprising a first rotor, a second rotor disposed a distance away from the first rotor along an axis of rotation and a plurality of curved, ribbon-shaped blades spanning the distance between the first and second rotors and solely supporting the first and second rotors in rotation about the axis of rotation, ends of each of the plurality of blades being attached to the first rotor in respectively different first radial orientations and to the second rotor in respectively different radial second orientations that are each angularly offset relative to the first orientations so as to impart a helical twist on each of the plurality of ribbon-shapes blades;

a plurality of magnets disposed within each of the first and second rotors;

a first stator support co-axially disposed relative to the first rotor and a second stator support co-axially disposed relative to the second rotor;

a plurality of conductive wire coils disposed within each of the first and second stator supports; and

a one-piece housing tube cover extending at least from the first stator support to the second stator support and encircling the first and second rotors and the first and second stator supports but for at least one cutout configured to expose a portion of the plurality of curved blades on only one side of the axis of rotation such that fluid mass flow impinging upon the exposed portion of the plurality of blades through the cutout causes the curved blades to rotate and electrical energy to be induced in the plurality of conductive wire coils.

25. An electrical energy generation device, comprising:

a turbine assembly comprising a first rotor, a second rotor disposed a distance away from the first rotor along an axis of rotation and a plurality of curved blades spanning the distance between the first and second rotors and solely supporting the first and second rotors in rotation about the axis of rotation such that the turbine assembly is free from any central shaft disposed along the axis of rotation;

a plurality of magnets disposed within each of the first and second rotors;

a first stator support co-axially disposed relative to the first rotor and a second stator support co-axially disposed relative to the second rotor;

a plurality of conductive wire coils disposed within each of the first and second stator supports; and

a one-piece housing tube cover extending at least from the first stator support to the second stator support and encircling the first and second rotors and the first and second stator supports but for at least one cutout configured to expose a portion of the plurality of curved blades on only one side of the axis of rotation such that fluid mass flow impinging upon the exposed portion of the plurality of blades through the cutout causes the curved blades to rotate and electrical energy to be induced in the plurality of conductive wire coils.

Continuity (1)
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