IP Library Granted Patent US 11,333,412
Granted Patent B2
US 11,333,412 · App. 16/811,657 · Granted May 17, 2022

Climate-control system with absorption chiller

Inventor: Kamalakkannan Muthusubramanian (Bangalore, IN)
Assignee: Emerson Climate Technologies, Inc.
F25B15/008F24F5/0017F25B17/00B01D53/1425B01D53/263B01D61/36Y02E60/14
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Quick Facts
Patent No.
US 11,333,412
App. No.
16/811,657
Granted
May 17, 2022
Kind
B2
Abstract

A climate-control system may include a first fluid circuit, a desiccant system, and a second fluid circuit. The first fluid circuit may include a desorber, an absorber, and an evaporator. A first fluid exits the desorber through a first outlet and flows through the evaporator and a first inlet of the absorber. A second fluid exits the desorber through a second outlet and may flow through a second inlet of the absorber. The desiccant system includes a conditioner and a regenerator. The conditioner includes a first desiccant flow path. The regenerator includes a second desiccant flow path in communication with the first desiccant flow path. The second fluid circuit circulates a third fluid that is fluidly isolated from the first and second fluids and desiccant in the desiccant system. The second fluid circuit may be in heat transfer relationships with the first fluid and the first desiccant flow path.

Claims (84)

1. A climate-control system comprising:

a first fluid circuit including:

a desorber,

an absorber,

an evaporator disposed between the desorber and the absorber, and

an expansion device disposed between the desorber and the evaporator,

wherein the desorber includes an inlet, a first outlet, and a second outlet,

wherein the absorber includes an outlet, a first inlet, and a second inlet,

wherein a first fluid flows through the first outlet of the desorber, through the expansion device, through the evaporator, and through the first inlet of the absorber,

wherein a second fluid exits the desorber through the second outlet of the desorber and flows through the second inlet of the absorber;

a desiccant system including:

a conditioner,

a regenerator,

a first conduit, and

a fan,

wherein the first conduit extends between the conditioner and the regenerator and communicates a desiccant between the conditioner and the regenerator,

wherein the fan forces air across the conditioner such that the desiccant in the conditioner absorbs water from the air; and

a second fluid circuit circulating a third fluid that is fluidly isolated from the first and second fluids in the first fluid circuit and the desiccant in the desiccant system,

wherein the second fluid circuit includes a coil that receives the third fluid and is in a heat transfer relationship with the first fluid in the evaporator, and

wherein the conditioner includes a membrane that is permeable to water and impermeable to the desiccant in a liquid form.

2. The climate-control system of claim 1 , wherein the first conduit of the desiccant system partially defines a closed-loop liquid desiccant circuit.

3. The climate-control system of claim 1 , wherein the second fluid circuit includes a flow path that extends through the conditioner and receives the third fluid from the coil.

4. The climate-control system of claim 3 , wherein the conditioner includes a desiccant flow path that is fluidly isolated from the flow path of the second fluid circuit.

5. The climate-control system of claim 3 , wherein the second fluid circuit includes:

an air-handler coil disposed within an air handler; and

a control valve in fluid communication with the air-handler coil and the flow path extending through the conditioner,

wherein the control valve is movable between a first position allowing fluid flow to the flow path and restricting fluid flow to the air-handler coil and a second position restricting fluid flow to the flow path and allowing fluid flow to the air-handler coil.

6. The climate-control system of claim 1 , wherein the first fluid is water, the second fluid is an absorbent, and the third fluid is water.

7. The climate-control system of claim 1 , further comprising a heat source providing heat to the desorber and the regenerator.

8. The climate-control system of claim 1 , wherein the first fluid circuit includes a condenser disposed between the first outlet of the desorber and the expansion device, and wherein the condenser is in a heat transfer relationship with a heat energy storage device.

9. A climate-control system comprising:

a first fluid circuit including:

a desorber,

an absorber,

an evaporator disposed between the desorber and the absorber, and

an expansion device disposed between the desorber and the evaporator,

wherein the desorber includes an inlet, a first outlet, and a second outlet,

wherein the absorber includes an outlet, a first inlet, and a second inlet,

wherein a first fluid flows through the first outlet of the desorber, through the expansion device, through the evaporator, and through the first inlet of the absorber,

wherein a second fluid exits the desorber through the second outlet of the desorber and flows through the second inlet of the absorber;

a desiccant system including:

a conditioner,

a regenerator,

a first conduit, and

a fan,

wherein the first conduit extends between the conditioner and the regenerator and communicates a desiccant between the conditioner and the regenerator,

wherein the fan forces air across the conditioner such that the desiccant in the conditioner absorbs water from the air; and

a second fluid circuit circulating a third fluid that is fluidly isolated from the first and second fluids in the first fluid circuit and the desiccant in the desiccant system,

wherein the second fluid circuit includes a coil that receives the third fluid and is in a heat transfer relationship with the first fluid in the evaporator,

wherein the second fluid circuit includes a flow path that extends through the conditioner and receives the third fluid from the coil,

wherein the second fluid circuit includes:

an air-handler coil disposed within an air handler; and

a control valve in fluid communication with the air-handler coil and the flow path extending through the conditioner,

wherein the control valve is movable between a first position allowing fluid flow to the flow path and restricting fluid flow to the air-handler coil and a second position restricting fluid flow to the flow path and allowing fluid flow to the air-handler coil.

10. The climate-control system of claim 9 , wherein the conditioner includes a desiccant flow path that is fluidly isolated from the flow path of the second fluid circuit.

11. The climate-control system of claim 9 , wherein the conditioner includes a membrane that is permeable to water and impermeable to the desiccant.

12. A climate-control system comprising:

a first fluid circuit including:

a desorber,

an absorber, and

an evaporator disposed between the desorber and the absorber,

wherein a first fluid exits the desorber through a first outlet of the desorber and flows through the evaporator and a first inlet of the absorber, and

wherein a second fluid exits the desorber through a second outlet of the desorber and flows through a second inlet of the absorber;

a desiccant system including:

a conditioner, and

a regenerator,

wherein the conditioner includes a first desiccant flow path, and

wherein the regenerator includes a second desiccant flow path in communication with the first desiccant flow path; and

a second fluid circuit circulating a third fluid that is fluidly isolated from the first and second fluids in the first fluid circuit and fluidly isolated from desiccant in the desiccant system,

wherein the second fluid circuit is in a first heat transfer relationship with the first fluid in the evaporator and a second heat transfer relationship with the first desiccant flow path in the conditioner,

wherein the second fluid circuit includes a fluid flow path that extends through the conditioner and is fluidly isolated from the first desiccant flow path, and

wherein the conditioner includes a membrane that is permeable to water and impermeable to the desiccant in a liquid form, and wherein the membrane at least partially defines the first desiccant flow path.

13. The climate-control system of

claim 12 , wherein the second fluid circuit includes:

an air-handler coil disposed within an air handler; and

a control valve in fluid communication with the air-handler coil and the fluid flow path extending through the conditioner,

wherein the control valve is movable between a first position allowing fluid flow to the fluid flow path and restricting fluid flow to the air-handler coil and a second position restricting fluid flow to the fluid flow path and allowing fluid flow to the air-handler coil.

14. The climate-control system of claim 12 , wherein the first fluid is water, the second fluid is an absorbent, and the third fluid is water.

15. The climate-control system of claim 12 , further comprising a heat source providing heat to the desorber and the regenerator.

16. The climate-control system of claim 12 , wherein the first fluid circuit includes a condenser disposed between the first outlet of the desorber and the evaporator, and wherein the condenser is in a heat transfer relationship with a heat energy storage device.

17. The climate-control system of claim 12 , wherein the conditioner includes a first conditioner inlet, a first conditioner outlet, a second conditioner inlet, and a second conditioner outlet, wherein the desiccant flows through the first conditioner inlet and the first conditioner outlet, wherein the third fluid flows through the second conditioner inlet and the second conditioner outlet.

18. The climate-control system of claim 12 , wherein the desiccant system includes a fan that forces air across the conditioner such that the desiccant in the conditioner absorbs water from the air.

19. The climate-control system of claim 18 , wherein the desiccant system includes another fan that forces air across the regenerator such that water in the desiccant in the regenerator is transferred to air.

20. The climate-control system of claim 12 , wherein the second fluid circuit includes a coil that receives the third fluid and is in a heat transfer relationship with the first fluid in the evaporator.

Assignments (6)
SECURITY INTEREST Recorded Jul 9, 2024
From: COPELAND LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 068241/0264 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 064278/0598 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 064279/0327 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 064280/0695 →
ENTITY CONVERSION Recorded Jun 22, 2023
From: EMERSON CLIMATE TECHNOLOGIES, INC.
To: COPELAND LP
Reel/Frame 064058/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: MUTHUSUBRAMANIAN, KAMALAKKANNAN
To: EMERSON CLIMATE TECHNOLOGIES, INC.
Reel/Frame 052041/0345 →
Cited By (4)
US 12,434,194 US 12,434,195 US 12,434,196 US 12,434,197