IP Library Granted Patent US 9,574,796
Granted Patent B2
US 9,574,796 · App. 14/589,239 · Granted Feb 21, 2017

Electrochemical refrigeration systems and appliances

Inventor: Michael John Kempiak (Osceola, IN)
Assignee: Haier US Appliance Solutions, Inc.
F25B1/00
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Quick Facts
Patent No.
US 9,574,796
App. No.
14/589,239
Granted
Feb 21, 2017
Kind
B2
Abstract

Refrigeration systems and appliances are provided. A refrigeration system includes a refrigerant, the refrigerant including a working fluid and an electrochemically active fluid. The refrigeration system further includes a condenser, an evaporator, and an electrochemical compressor in fluid communication with the condenser and the evaporator. The refrigeration system can further include various components which advantageously reduce the energy consumption and increase the predicatability and efficiency of the refrigeration system.

Claims (36)

1. A refrigeration system, comprising:

a refrigerant, the refrigerant comprising a working fluid and an electrochemically active fluid;

a condenser;

an evaporator;

an electrochemical compressor in fluid communication with the condenser and the evaporator, the electrochemical compressor comprising a housing, a first electrochemical cell disposed within the housing, and a second electrochemical cell disposed within the housing;

a first phase separator in fluid communication with and disposed downstream of the condenser, the first phase separator comprising an inlet, a first outlet and a second outlet, the first outlet configured to exhaust the working fluid, the second outlet configured to exhaust the electrochemically active fluid, wherein the electrochemically active fluid exhausted from the second outlet bypasses the evaporator; and

a second phase separator in fluid communication with and disposed downstream of the first outlet of the first phase separator, the second phase separator comprising an inlet, a first outlet and a second outlet, the first outlet configured to exhaust a liquid portion of the working fluid, the second outlet configured to exhaust a gaseous portion of the working fluid, wherein the gaseous portion exhausted from the second outlet bypasses the evaporator; and

wherein the working fluid exhausted from the first outlet of the second phase separator is flowed through the evaporator.

2. The refrigeration system of claim 1 , wherein the working fluid is water.

3. The refrigeration system of claim 1 , wherein the electrochemically active fluid is hydrogen.

4. The refrigeration system of claim 1 , wherein the electrochemically active fluid exhausted from the second outlet of the first phase separator is combined with the working fluid exhausted from the first outlet of the second phase separator downstream of the evaporator.

5. The refrigeration system of claim 4 , wherein the electrochemically active fluid exhausted from the second outlet of the first phase separator is combined with the working fluid exhausted from the first outlet of the second phase separator upstream of the electrochemical compressor.

6. The refrigeration system of claim 1 , wherein the working fluid exhausted from the second outlet of the second phase separator bypasses the first electrochemical cell.

7. The refrigeration system of claim 6 , wherein the working fluid exhausted from the second outlet of the second phase separator is combined with the working fluid exhausted from the first outlet of the second phase separator between the first electrochemical cell and the second electrochemical cell.

8. The refrigeration system of claim 1 , wherein the first phase separator and the second phase separator each comprise a vessel extending between a top surface and a bottom surface, wherein the first outlet of the first phase separator is defined in the top surface of the first phase separator and the second outlet of the first phase separator is defined in the bottom surface of the first phase separator, and wherein the first outlet of the second phase separator is defined in the top surface of the second phase separator and the second outlet of the second phase separator is defined in the bottom surface of the second phase separator.

9. The refrigeration system of claim 1 , further comprising a first expansion device disposed between the first phase separator and second phase separator and a second expansion device disposed between the second phase separator and the evaporator.

10. The refrigeration system of claim 1 , wherein the first electrochemical cell and the second electrochemical cell each comprise an anode, a cathode, and an electrolyte disposed between and in electrical contact with the anode and the cathode.

11. An appliance, comprising:

a housing defining a compartment; and

a refrigeration system in communication with the compartment for cooling the chamber, the refrigeration system comprising:

a refrigerant, the refrigerant comprising a working fluid and an electrochemically active fluid;

a condenser;

an evaporator;

an electrochemical compressor in fluid communication with the condenser and the evaporator, the electrochemical compressor comprising a housing, a first electrochemical cell disposed within the housing, and a second electrochemical cell disposed within the housing;

a first phase separator in fluid communication with and disposed downstream of the condenser, the first phase separator comprising an inlet, a first outlet and a second outlet, the first outlet configured to exhaust the working fluid, the second outlet configured to exhaust the electrochemically active fluid, wherein the electrochemically active fluid exhausted from the second outlet bypasses the evaporator; and

a second phase separator in fluid communication with and disposed downstream of the first outlet of the first phase separator, the second phase separator comprising an inlet, a first outlet and a second outlet, the first outlet configured to exhaust a liquid portion of the working fluid, the second outlet configured to exhaust a gaseous portion of the working fluid, wherein the gaseous portion exhausted from the second outlet bypasses the evaporator; and

wherein the working fluid exhausted from the first outlet of the second phase separator is flowed through the evaporator.

12. The appliance of claim 11 , wherein the working fluid is water.

13. The appliance of claim 11 , wherein the electrochemically active fluid is hydrogen.

14. The appliance of claim 11 , wherein the electrochemically active fluid exhausted from the second outlet of the first phase separator is combined with the working fluid exhausted from the first outlet of the second phase separator downstream of the evaporator.

15. The appliance of claim 14 , wherein the electrochemically active fluid exhausted from the second outlet of the first phase separator is combined with the working fluid exhausted from the first outlet of the second phase separator upstream of the electrochemical compressor.

16. The appliance of claim 11 , wherein the working fluid exhausted from the second outlet of the second phase separator bypasses the first electrochemical cell.

17. The appliance of claim 16 , wherein the working fluid exhausted from the second outlet of the second phase separator is combined with the working fluid exhausted from the first outlet of the second phase separator between the first electrochemical cell and the second electrochemical cell.

18. The appliance of claim 11 , wherein the first phase separator and the second phase separator each comprise a vessel extending between a top surface and a bottom surface, wherein the first outlet of the first phase separator is defined in the top surface of the first phase separator and the second outlet of the first phase separator is defined in the bottom surface of the first phase separator, and wherein the first outlet of the second phase separator is defined in the top surface of the second phase separator and the second outlet of the second phase separator is defined in the bottom surface of the second phase separator.

19. The appliance of claim 11 , wherein the refrigeration system further comprises a first expansion device disposed between the first phase separator and second phase separator and a second expansion device disposed between the second phase separator and the evaporator.

20. The appliance of claim 11 , wherein the first electrochemical cell and the second electrochemical cell each comprise anode, a cathode, and an electrolyte disposed between and in electrical contact with the anode and the cathode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: GENERAL ELECTRIC COMPANY
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 038964/0253 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2015
From: KEMPIAK, MICHAEL JOHN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 034634/0359 →
Continuity (1)
Related Publication 20160195308A1 · Jul 7, 2016