IP Library Granted Patent US 11,506,178
Granted Patent B2
US 11,506,178 · App. 17/187,869 · Granted Nov 22, 2022

Friction limiting turbine generator gyroscope method and apparatus

Inventors: Jesse Antoine Marcel (Veradale, WA); Jeffrey Scott Chimenti (The Woodlands, TX)
Assignee: Airborne Motor Works Inc.
F03D9/25F03D7/0236F03D7/04F03D80/70H02K7/1823F05B2240/511F05B2260/305F05B2270/101
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Quick Facts
Patent No.
US 11,506,178
App. No.
17/187,869
Granted
Nov 22, 2022
Kind
B2
Abstract

A friction limiting turbine gyroscope is a compact and efficient means to convert the energy of a moving fluid into electrical energy. The gyroscope's flywheel rotates when a fluid passes through its spokes while magnets located along the perimeter act upon proximate movable field coils to produce electricity. The spokes of the flywheel are optimized for the flow and density of the fluid with the ability to trans mutate using shaped memory alloys as well as rotate about their center of pressure allowing the flywheel to capture more of the energy from the fluid passing over their surfaces in all conditions. Mechanical energy losses are reduced because of the inherent stabilizing effects created by the gyroscope. Because of the stabilization, a magnetic bearing field effectively supports the gyroscope eliminating mechanical interference in rotation.

Claims (14)

1. An electric energy creating turbine gyroscope, comprising:

a plurality of blades mounted on a central rotatable hub, wherein the shape of each blade is configurable;

a perimeter ring surrounding the tips of the plurality of blades and configured to rotate with said hub and said blades;

a plurality of permanent magnets integrated into the perimeter ring;

an enclosure surrounding the perimeter ring and integrated magnets, the enclosure including a plurality of field coils on a non-rotatable hub, wherein the distance between the plurality of field coils and the plurality of permanent magnets integrated into the perimeter ring is configurable; and

a computer device configured to monitor and adjust the shape of the plurality of blades and the distance between the plurality of field coils and the plurality of permanent magnets integrated into the perimeter ring to maximize the extracted energy.

2. The gyroscope of claim 1 , wherein each blade has a leading edge and a trailing edge defining a surface for receiving wind.

3. The gyroscope of claim 1 , further comprising a nose cone covering the hub, which cone is configured to transfer an air mass approaching the gyroscope to be directed around the hub and into the plurality of blades.

4. The gyroscope of claim 1 , wherein the magnets integrated in the magnetic ring stabilize the gyroscope.

5. The gyroscope of claim 1 ,

wherein the central rotatable hub further comprises an axle having at least one axle magnet generating a magnetic field;

the gyroscope interacts with a supporting structure having at least one supporting structure magnet generating a magnetic field,

wherein the interaction between magnetic fields of the axel magnet and the structure magnet cause the central rotatably hub to float relative to the support structure.

6. The gyroscope of claim 1 , wherein the shape of each blade is configurable by changing the cross section thickness of the blade.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2021
From: MARCEL, JESSE ANTOINE; CHIMENTI, JEFFREY SCOTT
To: AIRBORNE MOTOR WORKS INC.
Reel/Frame 055439/0245 →
Continuity (2)
Provisional Application 62983547 · Feb 28, 2020
Related Publication 20210277870A1 · Sep 9, 2021