IP Library Granted Patent US 10,060,406
Granted Patent B2
US 10,060,406 · App. 15/211,763 · Granted Aug 28, 2018

Apparatuses, methods and systems for harnessing fluid flow with flexible mechanical transducers

Inventors: Benjamin Pietro Filardo (New York, NY); Daniel S. Zimmerman (Brooklyn, NY); Michael I. Weaker (Brooklyn, NY)
Assignee: Pliant Energy Systems LLC
F03B13/10F03B17/061F05B2220/706F05B2240/31Y02E10/22Y02E10/28
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Quick Facts
Patent No.
US 10,060,406
App. No.
15/211,763
Granted
Aug 28, 2018
Kind
B2
Abstract

The APPARATUSES, METHODS AND SYSTEMS FOR HARNESSING FLUID FLOW WITH FLEXIBLE MECHANICAL TRANSDUCERS include mechanisms that include flexible elements with strained deformations. In some implementations, oscillations of strained deformations in fins are excited by a moving fluid. By coupling the fin structure to an electrical generator and/or pump, energy from the moving fluid can be converted into electrical energy or used to perform useful mechanical work. In some implementations, the fin may be coupled to a motor or other actuator which causes the strained deformations to move, thereby imparting force onto the fluid to move or mix fluid or perform other useful work.

Claims (54)

1. An apparatus, comprising:

at least one restraining element;

two crenated strips coupled to each other along respective inner edges to form a double-crenated strip;

a first edge-coupling component fixed to the at least one restraining element and coupled to a first edge of the double-crenated strip, wherein the first edge of the double-crenated strip is held in fixed orientation by the first edge-coupling component;

a second edge-coupling component fixed to the at least one restraining element and coupled to a second edge of the double-crenated strip, wherein the second edge of the double-crenated strip is held with rotational freedom by the second edge-coupling component;

a boom fixed to the first edge-coupling member and attached at one end to a chassis that is fixed to a supporting member;

an axial shaft fixed to the second edge-coupling member and configured to rotate in response to rotation of the second edge of the double-crenated strip, the axial shaft housed in the boom; and

at least one generator coupled to the axial shaft, wherein rotation of the axial shaft powers the generator.

2. The apparatus of claim 1 , wherein the at least one generator is coupled to the second edge of the double-crenated strip, wherein the generator is configured to convert oscillations of the second edge of the double-crenated strip into electrical energy.

3. The apparatus of claim 1 , further comprising:

at least one pump coupled to the second edge of the double-crenated strip, wherein the pump is configured to convert oscillations of the second edge of the double-crenated strip into pumping force.

4. The apparatus of claim 1 , further comprising:

at least one motor coupled to the second edge of the double-crenated strip, wherein the motor is configured to convert electrical energy into oscillations of the second edge of the double-crenated strip.

5. The apparatus of claim 1 , wherein the at least one generator is coupled to the axial shaft via a gearbox housed in the chassis.

6. The apparatus of claim 1 , further comprising:

a tether attached at a first end to a fixed substrate and at a second end to the first edge-coupling component;

a first axial member attached at a first end to the first edge-coupling component and at a second end to a first generator; and

a second axial member attached at a first end to the second edge-coupling component and at a second end to a second generator.

7. The apparatus of claim 6 , wherein the first generator and the second generator are different, and further comprising:

at least one additional axial member connecting the first generator and the second generator.

8. The apparatus of claim 7 , wherein the at least one additional axial member comprises a plurality of additional axial members connecting the first generator to the second generator via at least a third generator intermediate between the first generator and second generator.

9. An apparatus, comprising:

at least one restraining element;

two crenated strips coupled to each other along respective inner edges to form a double-crenated strip;

a first edge-coupling component fixed to the at least one restraining element and coupled to a first edge of the double-crenated strip; and

at least one power take-off pod coupled to at least one of the two crenated strips;

wherein the at least one power take-off pod comprises:

an outer body comprising at least one fin coupling member coupled to the at least one of the two crenated strips;

a cross-bar coupled to and fixed with respect to the outer body;

a weighted pendulum rotationally coupled to the cross-bar;

a generator fixed to the weighted pendulum and comprising at least one shaft;

a wheel fixed to the cross-bar and coupled to the at least one shaft of the generator such that rotations of the wheel with respect to the weighted pendulum induce rotations of the at least one shaft of the generator.

10. The apparatus of claim 9 , wherein the at least one power take-off pod is coupled by at least two fin coupling members to both of the two crenated strips.

11. An apparatus, comprising:

at least one restraining element;

two crenated strips coupled to each other along respective inner edges to form a double-crenated strip;

a first edge-coupling component fixed to the at least one restraining element and coupled to a first edge of the double-crenated strip, wherein the first edge of the double-crenated strip is held with rotational freedom by the by the first edge-coupling component; and

a second edge-coupling component fixed to the at least one restraining element and coupled to a second edge of the double-crenated strip, wherein the second edge of the double-crenated strip is held with rotational freedom by the second edge-coupling component;

first and second axial members, wherein each of the first and second axial members is connected at a first end to, respectively, the first and second edge-coupling members and at a second end to a gear mechanism;

a chassis attached to a supporting member and coupled to each of the first and second axial members, wherein the first and second axial members are supported by the chassis but are free to rotate; and

at least one generator or at least one motor coupled to the gear mechanism.

12. The apparatus of claim 11 , wherein the at least one generator is coupled to the second edge of the double-crenated strip, wherein the generator is configured to convert oscillations of the second edge of the double-crenated strip into electrical energy.

13. The apparatus of claim 11 , further comprising:

at least one pump coupled to the second edge of the double-crenated strip, wherein the pump is configured to convert oscillations of the second edge of the double-crenated strip into pumping force.

14. The apparatus of claim 11 , wherein the at least one motor is coupled to the second edge of the double-crenated strip, wherein the motor is configured to convert electrical energy into oscillations of the second edge of the double-crenated strip.

15. The apparatus of claim 11 , wherein the first and second axial members are coupled to the chassis via one or more bearings.

16. The apparatus of claim 11 , wherein the gear mechanism comprises a gearbox having beveled gears and counter-rotating output shafts.

17. The apparatus of claim 11 , wherein the at least one generator comprises:

a first generator coupled to the first edge of the double-crenated strip, wherein the first generator is configured to convert oscillations of the first edge of the double-crenated strip into electrical energy; and

a second generator coupled to the second edge of the double-crenated strip, wherein the second generator is configured to convert oscillations of the second edge of the double-crenated strip into electrical energy.

18. The apparatus of claim 11 , wherein the at least one motor comprises:

a first motor coupled to the first edge of the double-crenated strip, wherein the first motor is configured to convert electrical energy into oscillations of the first edge of the double-crenated strip; and

a second motor coupled to the second edge of the double-crenated strip, wherein the second motor is configured to convert electrical energy into oscillations of the second edge of the double-crenated strip.

19. The apparatus of claim 11 , wherein rotational freedom of the second edge of the double-crenated strip is limited by at least one mechanical stopper.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2016
From: FILARDO, BENJAMIN PIETRO; ZIMMERMAN, DANIEL S.; WEAKER, MICHAEL I.
To: PLIANT ENERGY SYSTEMS LLC
Reel/Frame 039258/0353 →
Continuity (2)
Provisional Application 62194110 · Jul 17, 2015
Related Publication 20170016424A1 · Jan 19, 2017