IP Library Granted Patent US 11,629,895
Granted Patent B2
US 11,629,895 · App. 17/110,710 · Granted Apr 18, 2023

Condensing heat exchanger for air to liquid heat pumps

Inventor: William P. Bernardi (Ligonier Twp., PA)
Assignee: United States ThermoAmp Inc.
F25B39/00E04H4/129F28D7/103F28F1/426F25B39/04
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Quick Facts
Patent No.
US 11,629,895
App. No.
17/110,710
Granted
Apr 18, 2023
Kind
B2
Abstract

A heat exchange device may include a first pipe including a first inlet, a first outlet, and a first sidewall extending therebetween; a second pipe including a second inlet, a second outlet, and a second sidewall extending therebetween; and a plurality of dimples extending between the first sidewall and the second sidewall. The second sidewall may surround and extend about the first sidewall, the first sidewall may define a first fluid passage configured to permit flow of a first fluid, and the second sidewall and the first sidewall may define a second fluid passage configured to permit flow of a second fluid.

Claims (62)

1. A heat exchange device comprising:

a first pipe comprising a first inlet, a first outlet, and a first sidewall extending therebetween;

a second pipe comprising a second inlet, a second outlet, and a second sidewall extending therebetween;

a third pipe comprising a third inlet, a third outlet, and a third sidewall extending therebetween;

a first fitting configured to arrange the first inlet relative to the second inlet;

a second fitting configured to arrange the first outlet relative to the second outlet;

a first water seal weld fitting connected to the first fitting;

a second water seal weld fitting connected to the second fitting;

a first pressure relief tube connecting the second inlet to the first fitting;

a second pressure relief tube connecting the second outlet to the second fitting; and

a plurality of dimples extending between the first sidewall and the second sidewall,

wherein the second sidewall surrounds and extends about the first sidewall,

wherein the third sidewall surrounds and extends about the second sidewall,

wherein the first sidewall defines a first fluid passage configured to permit flow of a first fluid, the second sidewall and the first sidewall define a second fluid passage configured to permit flow of a second fluid, and the third sidewall and the second sidewall define a third fluid passage configured to permit flow of the first fluid, and

wherein the second fluid passage is a micro flow passage.

2. The heat exchange device of claim 1 , wherein the plurality of dimples extend radially from at least one of a radially inner surface of the second pipe or a radially outer surface of the first pipe.

3. The heat exchange device of claim 2 , wherein the plurality of dimples extend from a radially inner surface of the second pipe.

4. The heat exchange device of claim 3 , wherein the plurality of dimples contact the radially outer surface of the first pipe.

5. The heat exchange device of claim 1 , wherein the plurality of dimples comprise at least four dimples extending about a perimeter of the second sidewall.

6. The heat exchange device of claim 5 , wherein the at least four dimples are evenly spaced about the perimeter of the second sidewall.

7. The heat exchange device of claim 6 , wherein one of the at least four dimples radially opposes another of the at least four dimples.

8. The heat exchange device of claim 1 , wherein the plurality of dimples are arranged in rows about a perimeter of the second sidewall.

9. The heat exchange device of claim 1 , wherein the first sidewall and the second sidewall are concentric.

10. The heat exchange device of claim 1 , wherein the first inlet is perpendicular to the second inlet and the first outlet is perpendicular to the second outlet.

11. The heat exchange device of claim 1 , wherein the first pressure relief tube extends about the second inlet defining a first pressure release passage, and the second pressure relief tube extends about the second outlet defining a second pressure release passage.

12. The heat exchange device of claim 11 , wherein the first pressure relief tube is connected to a first pressure tube weld fitting, and the second pressure relief tube is connected to a second pressure tube weld fitting,

wherein first pressure tube weld fitting is threadingly engaged to the first water seal weld fitting and the second pressure tube weld fitting is threadingly engaged to the second water seal weld fitting.

13. The heat exchange device of claim 12 , wherein a first refrigerant weld fitting is disposed between the first pressure tube weld fitting and the first water seal fitting, and a second refrigerant weld fitting is disposed between the second pressure tube weld fitting and the second water seal fitting, and

wherein the first refrigerant weld fitting is configured to accept the second inlet therein and the second refrigerant weld fitting is configured to accept the second outlet therein.

14. The heat exchange device of claim 13 , wherein a first O-ring is disposed between the first pressure relief weld fitting and the first refrigerant weld fitting, and a second O-ring is disposed between the second pressure relief weld fitting and the second refrigerant weld fitting, and

wherein the first and second O-rings are configured to prevent leakage of the first fluid.

15. The heat exchange device of claim 11 , wherein the first fitting is connected to the first pipe by a first weld and connected to the second pipe by a second weld, and

wherein the second fitting is connected to the first pipe by a third weld and connected to the second pipe by a fourth weld.

16. A heat exchange system for a swimming pool heat pump, the heat exchange system comprising:

a refrigerant flow path comprising:

an air moving device;

an evaporating heat exchanger;

a refrigerant compressor;

at least one isolation fitting;

a heat exchanger; and

at least one metering expansion device;

wherein the air moving device, the evaporating heat exchanger, the refrigerant compressor, the at least one isolation fitting, the heat exchanger, and the at least one metering expansion device are in thermal communication,

wherein the heat exchanger comprises:

a first pipe for permitting the flow of water from the swimming pool into the heat exchanger, the first pipe comprising a first inlet, a first outlet, and a first sidewall extending therebetween;

a second pipe for permitting the flow of the refrigerant into the heat exchanger, the second pipe comprising a second inlet, a second outlet, and a second sidewall extending therebetween;

a third pipe comprising a third inlet, a third outlet, and a third sidewall extending therebetween

a first fitting configured to arrange the first inlet relative to the second inlet;

a second fitting configured to arrange the first outlet relative to the second outlet;

a first water seal weld fitting connected to the first fitting;

a second water seal weld fitting connected to the second fitting;

a first pressure relief tube connecting the second inlet to the first fitting;

a second pressure relief tube connecting the second outlet to the second fitting; and

a plurality of dimples extending between the first sidewall and the second sidewall,

wherein the second sidewall surrounds and extends about the first sidewall,

wherein the third sidewall surrounds and extends about the second sidewall,

wherein the first sidewall defines a first fluid passage configured to permit flow of a first fluid, the second sidewall and the first sidewall define a second fluid passage configured to permit flow of a second fluid, and the third sidewall and the second sidewall define a third fluid passage configured to permit flow of the first fluid, and

wherein the second fluid passage is a micro fluid passage.

17. The heat exchange system of claim 16 , wherein the plurality of dimples extend radially inward from the second sidewall toward the first sidewall.

18. The heat exchange system of claim 17 , wherein the plurality of dimples contact a radially outward surface of the first sidewall.

19. The heat exchange system of claim 16 ,

wherein the first pressure relief tube and the second inlet define a first passage, and the second pressure relief tube and the second outlet define a second passage, and

wherein the first passage and the second passage are configured to release pressure from the heat exchange system to the atmosphere.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2026
From: UNITED STATES THERMOAMP INC
To: AMERICAN METAL TECHNOLOGY OF TENNESSEE, LLC
Reel/Frame 075235/0723 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2020
From: BERNARDI, WILLIAM P.
To: UNITED STATES THERMOAMP INC.
Reel/Frame 054534/0143 →
Continuity (2)
Provisional Application 62943482 · Dec 4, 2019
Related Publication 20210172657A1 · Jun 10, 2021