IP Library › Granted Patent US 12,117,200
Granted Patent B2
US 12,117,200 · App. 18/361,456 · Granted Oct 15, 2024

Conduit module coupled with heating or cooling module

Inventors: Charles P. Medlock (Goshen, IN); Christopher P. Medlock (Goshen, IN); Jonathan A. Brock (Syracuse, IN)
Assignee: WaterFurnace International, Inc.
F24F3/06F24D3/1058F24D3/18F24D7/00F25B25/005F25B29/003F24D2200/11F25B2339/047Y02B10/40Y02B30/12
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Quick Facts
Patent No.
US 12,117,200
App. No.
18/361,456
Granted
Oct 15, 2024
Kind
B2
Abstract

A heating and cooling system for use with hot, cold and source fluid circuits. A conduit module couples a heating/cooling module with the fluid circuits. The conduit module includes four three-way valves to communicated fluid from and to the fluid circuits to first and second heat exchangers in the heating/cooling module. The first heat exchanger is used to heat a fluid flow and the second one chills a second fluid flow. The conduit module simultaneously supplies a hot fluid flow to a hot fluid circuit and a cold fluid to a cold fluid circuit. The source fluid is routed by the conduit module. A method of circulating fluid is also disclosed.

Claims (37)

1. A valved fluid flow module to couple a plurality of fluid circuits to a heating/cooling module having a first heat exchanger and a second heat exchanger, comprising:

a first three-way valve configured to receive a first fluid from a first fluid circuit, receive a source fluid from a source fluid circuit, and selectively regulate flow of the first fluid and the source fluid to the first heat exchanger from the first fluid circuit and the source fluid circuit;

a second three-way valve configured to convey the first fluid to the first fluid circuit for a heating load, convey the source fluid to the source fluid circuit, and selectively regulate flow of the first fluid and the source fluid from the first heat exchanger to the first fluid circuit and the source fluid circuit;

a third three-way valve configured to receive a second fluid from a second fluid circuit, receive the source fluid from the source fluid circuit, and selectively regulate flow of the second fluid and the source fluid to the second heat exchanger from the second fluid circuit and the source fluid circuit; and

a fourth three-way valve configured to convey the second fluid to the second fluid circuit for a cooling load, convey the source fluid to the source fluid circuit, and selectively regulate flow of the second fluid and the source fluid from the second heat exchanger to the second fluid circuit and the source fluid circuit.

2. The valved fluid flow module of claim 1 configured as a modular stand-alone unit installable separately from the heating/cooling module.

3. The valved fluid flow module of claim 1 configured to simultaneously convey the first fluid that is heated for use in the first fluid circuit and the second fluid that is chilled for use in the second fluid circuit.

4. The valved fluid flow module of claim 1 , further including a controller configured to control operation of the first three-way valve, the second three-way valve, the third three-way valve, and the fourth three-way valve.

5. The valved fluid flow module of claim 1 , wherein the second three-way valve is configured to receive the first fluid that is heated by the first heat exchanger when the first heat exchanger is operating and receive the first fluid that is unheated by the first heat exchanger when the first heat exchanger is not operating.

6. The valved fluid flow module of claim 1 , wherein the fourth three-way valve is configured to receive the second fluid that is cooled by the second heat exchanger when the second heat exchanger is operating and receive the second fluid that is uncooled by the second heat exchanger when the second heat exchanger is not operating.

7. A valved fluid flow assembly to couple a plurality of fluid circuits to a heating/cooling module having a first heat exchanger and a second heat exchanger, comprising:

a first fluid supply conduit and a first fluid return conduit configured to convey a first fluid to and from a first fluid circuit for a heating load;

a second fluid supply conduit and a second fluid return conduit configured to convey a second fluid to and from a second fluid circuit for a cooling load;

a source fluid supply conduit and a source fluid return conduit configured to convey a thermal transfer source fluid to and from a source fluid circuit;

a first three-way valve configured to receive the first fluid from the first fluid return conduit, receive the source fluid from the source fluid return conduit, and selectively regulate flow of the first fluid and the source fluid to the first heat exchanger from the first fluid return conduit and the source fluid return conduit;

a second three-way valve configured to convey the first fluid to the first fluid supply conduit for the heating load, convey the source fluid to the source fluid supply conduit, and selectively regulate flow of the first fluid and the source fluid from the first heat exchanger to the first fluid supply conduit and the source fluid supply conduit;

a third three-way valve configured to receive the second fluid from the second fluid return conduit, receive the source fluid from the source fluid return conduit, and selectively regulate flow of the second fluid and the source fluid to the second heat exchanger from the second fluid return conduit and the source fluid return conduit; and

a fourth three-way valve configured to convey the second fluid to the second fluid supply conduit for the cooling load, convey the source fluid to the source fluid supply conduit, and selectively regulate flow of the second fluid and the source fluids from the second heat exchanger to the second fluid supply conduit and the source fluid supply conduit.

8. The valved fluid flow assembly of claim 7 , wherein the source fluid circuit is a geothermal fluid circuit.

9. The valved fluid flow assembly of claim 7 configured to simultaneously convey the first fluid to the first fluid circuit for the heating load and the second fluid to the second fluid circuit for the cooling load.

10. The valved fluid flow assembly of claim 9 , wherein the first fluid circuit is heated and the second fluid is chilled.

11. The valved fluid flow assembly of claim 10 , wherein the first heat exchanger is configured to exchange heat between the first fluid and the source fluid to heat the first fluid, and wherein the second heat exchanger is configured to exchange heat between the second fluid and the source fluid to cool the second fluid.

12. The valved fluid flow assembly of claim 7 , wherein the source fluid is configured to exchange heat with a geothermal source.

13. A heating and cooling system, comprising:

a heating and cooling module including a first heat exchanger and a second heat exchanger; and

a valved conduit module comprising:

a first three-way valve configured to receive a first fluid from a first fluid circuit, receive a source fluid from a source fluid circuit, and selectively regulate flow of the first fluid and the source fluid to the first heat exchanger from the first fluid circuit and the source fluid circuit;

a second three-way valve configured to convey the first fluid to the first fluid circuit for a heating load, convey source fluid to the source fluid circuit, and selectively regulate flow of the first fluid and the source fluid from the first heat exchanger to the first fluid circuit and the source fluid circuit;

a third three-way valve configured to receive a second fluid from a second fluid circuit, receive the source fluid from the source fluid circuit, and selectively regulate flow of the second fluid and the source fluid to the second heat exchanger from the second fluid circuit and the source fluid circuit; and

a fourth three-way valve configured to convey the second fluid to the second fluid circuit for a cooling load, convey the source fluid to the source fluid circuit, and selectively regulate flow of the second fluid and the source fluid from the second heat exchanger to the second fluid circuit and the source fluid circuit.

14. The heating and cooling system of claim 13 , wherein the valved conduit module includes a first inlet conduit configured to convey the first fluid to the first heat exchanger and a first outlet conduit configured to convey the first fluid from the first heat exchanger.

15. The heating and cooling system of claim 13 , wherein the valved conduit module includes a second inlet conduit configured to convey the second fluid to the second heat exchanger and a second outlet conduit configured to convey the second fluid from the second heat exchanger.

16. The heating and cooling system of claim 13 , wherein the heating and cooling module is a heat pump.

17. The heating and cooling system of claim 13 , wherein the first heat exchanger is a condenser and the second heat exchanger is an evaporator.

18. The heating and cooling system of claim 13 , wherein the heating and cooling module excludes a reversing valve.

19. The heating and cooling system of claim 13 , wherein the valved conduit module and the heating and cooling module define a heating mode, a cooling mode, and a simultaneous heating and cooling mode.

20. The heating and cooling system of claim 19 , wherein the valved conduit module and the heating and cooling module further define a primary heating with some cooling mode and a primary cooling with some heating mode.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2023
From: MEDLOCK, CHARLES P.; MEDLOCK, CHRISTOPHER P.; BROCK, JONATHAN A.
To: CHILLIT CHILLERS LLC
Reel/Frame 064425/0360 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2023
From: MEDLOCK, CHARLES P.
To: CHILLIT CHILLERS, LLC
Reel/Frame 064426/0860 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2023
From: CHILLIT CHILLERS, LLC
To: WATERFURNACE INTERNATIONAL, INC.
Reel/Frame 064426/0874 →
Continuity (7)
Continuation 17157754 · Jan 25, 2021
Continuation 16162866 · Oct 17, 2018
Continuation 15663336 · Jul 28, 2017
Continuation 15410659 · Jan 19, 2017
Division 14094465 · Dec 2, 2013
Provisional Application 61732871 · Dec 3, 2012
Related Publication 20230375198A1 · Nov 23, 2023
Cited By (2)
US 12,496,881 US 12,578,124