IP Library Granted Patent US 11,530,823
Granted Patent B2
US 11,530,823 · App. 17/131,202 · Granted Dec 20, 2022

Split dehumidification system with secondary evaporator and condenser coils

Inventors: Steven S. Dingle (Madison, WI); Scott E. Sloan (Sun Prairie, WI); Weizhong Yu (Cottage Grove, WI); Grant M. Lorang (Lake Mills, WI); Todd R. DeMonte (Cottage Grove, WI); Timothy S. O'Brien (DeForest, WI)
Assignee: THERMA-STOR LLC
F24F3/153F24F1/0063F24F1/0083F24F3/1405F25B5/04F25B6/04F25B13/00F24F1/005F24F2003/1452F25B40/02F25B41/39
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Quick Facts
Patent No.
US 11,530,823
App. No.
17/131,202
Granted
Dec 20, 2022
Kind
B2
Abstract

A dehumidification system includes a compressor, a primary evaporator, a primary condenser, a secondary evaporator, and a secondary condenser. The secondary evaporator receives an inlet airflow and outputs a first airflow to the primary evaporator. The primary evaporator receives the first airflow and outputs a second airflow to the secondary condenser. The secondary condenser receives the second airflow and outputs a third airflow to the primary condenser. The primary condenser receives the third airflow and outputs a dehumidified airflow. The compressor receives a flow of refrigerant from the primary evaporator and provides the flow of refrigerant to the primary condenser.

Claims (60)

1. A dehumidification system comprising:

a dehumidification unit comprising:

a primary metering device;

a secondary metering device;

a secondary evaporator operable to:

receive a flow of refrigerant from the primary metering device; and

receive an inlet airflow and output a first airflow, the first airflow comprising cooler air than the inlet airflow, the first airflow generated by transferring heat from the inlet airflow to the flow of refrigerant as the inlet airflow passes through the secondary evaporator;

a primary evaporator operable to:

receive the flow of refrigerant from the secondary metering device; and

receive the first airflow and output a second airflow, the second airflow comprising cooler air than the first airflow, the second airflow generated by transferring heat from the first airflow to the flow of refrigerant as the first airflow passes through the primary evaporator;

a secondary condenser operable to:

receive the flow of refrigerant from the secondary evaporator; and

receive the second airflow and output a third airflow, the third airflow comprising warmer air with a lower relative humidity than the second airflow, the third airflow generated by transferring heat from the flow of refrigerant to the third airflow as the second airflow passes through the secondary condenser;

a sub-cooling coil operable to:

receive the flow of refrigerant from a primary condenser;

output the flow of refrigerant to the primary metering device; and

receive the third airflow and output a dehumidified airflow, the dehumidified airflow comprising warmer air with lower relative humidity than the third airflow, the dehumidified airflow generated by transferring heat from the flow of refrigerant to the dehumidified airflow as the third airflow passes through the sub-cooling coil; and

a first fan operable to blow the dehumidified airflow; and

a condenser unit comprising:

a second fan operable to blow a fourth airflow;

a primary condenser operable to:

receive the flow of refrigerant from the compressor; and

transfer heat from the flow of refrigerant to the fourth airflow as the fourth airflow contacts the primary condenser; and

a compressor operable to receive the flow of refrigerant from the primary evaporator and provide the flow of refrigerant to the primary condenser, the flow of refrigerant provided to the primary condenser comprising a higher pressure than the flow of refrigerant received at the compressor.

2. The dehumidification system of claim 1 , wherein two or more members selected from the group consisting of the secondary evaporator, the primary evaporator, the secondary condenser, and the sub-cooling coil are combined in a single coil pack.

3. The dehumidification system of claim 1 , wherein at least one of the primary evaporator and the secondary evaporator comprises two or more circuits for flow of refrigerant.

4. The dehumidification system of claim 3 , comprising at least one of passive and active metering devices operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

5. The dehumidification system of claim 3 , wherein the primary metering device and the secondary metering device are operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

6. The dehumidification system of claim 1 , wherein the second fan is operable to blow the fourth airflow at an airflow flow rate of between about 2 to about 5 times an airflow rate of the first airflow generated by the first fan.

7. The dehumidification system of claim 1 , wherein the secondary metering device is operated in a substantially open state.

8. The dehumidification system of claim 1 , wherein at least one of the primary evaporator and the secondary evaporator comprises two or more circuits for flow of refrigerant.

9. The dehumidification system of claim 8 , comprising at least one of passive and active metering devices operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

10. The dehumidification system of claim 8 , wherein the primary metering device and the secondary metering device are operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

11. A dehumidification system comprising:

a dehumidification unit comprising:

a primary metering device;

a secondary metering device;

a secondary evaporator that outputs a first airflow comprising cooler air than an inlet airflow, wherein the first airflow is generated by transferring heat from the inlet airflow to a flow of refrigerant received from the primary metering device;

a primary evaporator that outputs a second airflow comprising cooler air than the first airflow, wherein the second airflow is generated by transferring heat from the first airflow to a flow of refrigerant received from the secondary metering device;

a secondary condenser that outputs a third airflow comprising warmer air with a lower relative humidity than the second airflow, wherein the third airflow is generated by transferring heat to the third airflow from a flow of refrigerant received from the secondary evaporator;

a sub-cooling coil operable to:

receive the flow of refrigerant from a primary condenser;

output the flow of refrigerant to the primary metering device; and

receive the third airflow and output a dehumidified airflow, the dehumidified airflow comprising warmer air with lower relative humidity than the third airflow, the dehumidified airflow generated by transferring heat from the flow of refrigerant to the dehumidified airflow; and

a first fan operable to blow the dehumidified airflow; and

a condenser unit comprising:

a second fan operable to blow a fourth airflow;

a primary condenser operable to:

receive the flow of refrigerant from the compressor; and

transfer heat from the flow of refrigerant to the fourth airflow as the fourth airflow contacts the primary condenser; and

a compressor operable to receive the flow of refrigerant from the primary evaporator and provide the flow of refrigerant to the primary condenser, the flow of refrigerant provided to the primary condenser comprising a higher pressure than the flow of refrigerant received at the compressor.

12. The dehumidification system of claim 11 , wherein two or more members selected from the group consisting of the secondary evaporator, the primary evaporator, the secondary condenser, and the sub-cooling coil are combined in a single coil pack.

13. The dehumidification system of claim 11 , wherein at least one of the primary evaporator and the secondary evaporator comprises two or more circuits for flow of refrigerant.

14. The dehumidification system of claim 13 , comprising at least one of passive and active metering devices operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

15. The dehumidification system of claim 13 , wherein the primary metering device and the secondary metering device are operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

16. The dehumidification system of claim 11 , wherein the second fan is operable to blow the fourth airflow at an airflow flow rate of between about 2 to about 5 times an airflow rate of the first airflow generated by the first fan.

17. The dehumidification system of claim 11 , wherein the secondary metering device is operated in a substantially open state.

18. The dehumidification system of claim 11 , wherein at least one of the primary evaporator and the secondary evaporator comprises two or more circuits for flow of refrigerant.

19. The dehumidification system of claim 18 , comprising at least one of passive and active metering devices operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

20. The dehumidification system of claim 18 , wherein the primary metering device and the secondary metering device are operable to provide subdivided flow of refrigerant to at least one of the primary evaporator and the secondary evaporator.

Assignments (3)
SECURITY INTEREST Recorded Jun 22, 2021
From: BROAN-NUTONE LLC; NORTEK AIR SOLUTIONS, LLC; NORTEK GLOBAL HVAC, LLC; THERMA-STOR LLC; ADDISON HVAC LLC; NOVELAIRE TECHNOLOGIES, L.L.C.; ROBERTS-GORDON LLC; STERIL-AIRE LLC; UNITED COOLAIR LLC; AIRXCHANGE, INC.
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 056647/0868 →
SECURITY INTEREST Recorded Jun 22, 2021
From: BROAN-NUTONE LLC; NORTEK AIR SOLUTIONS, LLC; NORTEK GLOBAL HVAC, LLC; THERMA-STOR LLC; ADDISON HVAC LLC; NOVELAIRE TECHNOLOGIES, L.L.C.; ROBERTS-GORDON LLC; STERIL-AIRE LLC; UNITED COOLAIR LLC; AIRXCHANGE, INC.
To: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 056650/0303 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2020
From: DINGLE, STEVEN S.; SLOAN, SCOTT E.; YU, WEIZHONG; LORANG, GRANT M.; DEMONTE, TODD R.; O'BRIEN, TIMOTHY S.
To: THERMA-STOR LLC
Reel/Frame 054732/0124 →