IP Library Granted Patent US 11,396,829
Granted Patent B2
US 11,396,829 · App. 16/494,054 · Granted Jul 26, 2022

Apparatus and method of utilizing thermal energy using multi fluid direct contact hydraulic cycles

Inventor: Darrell Ford (Spruce Grove, CA)
F01K27/00F01K13/00F03D9/22F03G6/003F03G7/00F03G7/04F28C3/08F05B2220/301F05B2220/706
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Quick Facts
Patent No.
US 11,396,829
App. No.
16/494,054
Granted
Jul 26, 2022
Kind
B2
Abstract

Apparatus for extracting useful work or electricity from low grade thermal sources comprising a chamber, a source of heated dense heat transfer fluid in communication with the chamber, a source of motive fluid in communication with the chamber, wherein the motive fluid comprises a liquid phase, a flow control mechanism cooperating with the source of heated dense heat transfer fluid and with the source of motive fluid to deliver said fluids into the chamber in a manner that said fluids come into direct contact with each other in the chamber to effect a phase change of the motive fluid from liquid to gas to increase the pressure within the chamber to yield pressurized fluids, and a work extracting mechanism in communication with the chamber that extracts work from the pressurized fluids by way of pressure let down.

Claims (14)

1. An apparatus for extracting useful work or electricity from low grade thermal sources comprising:

a chamber;

a source of heated dense heat transfer fluid in communication with the chamber;

a source of motive fluid in communication with the chamber, wherein the motive fluid comprises a liquid phase;

a flow control mechanism cooperating with the source of heated dense heat transfer fluid and with the source of motive fluid to deliver said fluids into the chamber in a manner that said fluids come into direct contact with each other in the chamber to effect a phase change of the motive fluid from liquid to gas to increase the pressure within the chamber to yield pressurized fluids;

the flow control mechanism comprises a rotary valve having a first pocket to receive a volume of heated dense heat transfer fluid and a second pocket to receive a volume of motive fluid, the rotary valve being operable to expose the first pocket and the second pocket to the chamber to bring said fluids into direct contact; and

a work extracting mechanism in communication with the chamber that extracts work from the pressurized fluids by way of pressure let down.

2. The apparatus as claimed in claim 1 further comprising a density separator downstream of the work extracting mechanism to separate the dense heat transfer fluid from the motive fluid.

3. The apparatus as claimed in claim 2 , further comprising a condenser downstream of the work extracting mechanism to condense the motive fluid into liquid phase.

4. The apparatus as claimed in claim 3 , further comprising a first recirculating conduit to the source of motive fluid.

5. The apparatus as claimed in claim 4 , further comprising a second recirculating conduit to recirculate the dense heat transfer fluid to the source of heated dense heat transfer fluid.

6. The apparatus as claimed in claim 5 , further comprising a heat exchanger communicating with a thermal source and the second recirculating conduit to transfer heat energy from the thermal source to the dense heat transfer fluid to provide the source of heated dense heat transfer fluid.

7. The apparatus as claimed in claim 1 , wherein the work extracting mechanism comprises a turbine that is driven by the pressurized fluids to rotate an output shaft to produce work.

8. The apparatus as claimed in claim 1 , wherein the work extracting mechanism comprises a reciprocating piston that is driven by the pressurized fluids to rotate an output shaft to produce work.

Assignments (2)
CHANGE OF NAME Recorded Apr 2, 2024
From: BOUNDARY TURBINES INC
To: BOUNDARY ENERGY INC.
Reel/Frame 066982/0778 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2024
From: FORD, DARRELL
To: BOUNDARY TURBINES INC
Reel/Frame 066228/0662 →
Continuity (2)
Provisional Application 62471109 · Mar 14, 2017
Related Publication 20200386122A1 · Dec 10, 2020