IP Library › Granted Patent US 11,255,553
Granted Patent B2
US 11,255,553 · App. 16/550,446 · Granted Feb 22, 2022

Variable refrigerant flow system with reheating of dehumidified air

Inventors: Der-Kai Hung (Dallas, TX); Lin Lan (Colleyville, TX); Christopher John Drury (Frisco, TX)
Assignee: Lennox Industries Inc.
F24F3/06F24F11/84F25B13/00F25B41/20F25B2400/0419
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,255,553
App. No.
16/550,446
Granted
Feb 22, 2022
Kind
B2
Abstract

An apparatus includes a compressor, a first heat exchanger, a reheater, a first valve, a second heat exchanger, and a blower. The compressor compresses a refrigerant. The blower moves air proximate the second heat exchanger to the reheater. During a first mode of operation: the first heat exchanger removes heat from a first portion of the refrigerant from the compressor, the first valve opens such that a second portion of the refrigerant from the compressor flows to the reheater, the second heat exchanger uses the first portion of the refrigerant from the first heat exchanger and the second portion of the refrigerant from the reheater to cool air proximate the second heat exchanger, and the reheater uses the second portion of the refrigerant from the compressor to heat the air moved by the blower.

Claims (74)

1. An apparatus comprising:

a compressor configured to compress a refrigerant;

a first heat exchanger;

a reheater;

a first valve;

a second heat exchanger;

a four-way valve;

a cap tube; and

a blower configured to move air proximate the second heat exchanger to the reheater,

during a first mode of operation:

the first heat exchanger configured to remove heat from a first portion of the refrigerant from the compressor;

the first valve configured to open such that a second portion of the refrigerant from the compressor flows to the reheater;

the second heat exchanger configured to use the first portion of the refrigerant from the first heat exchanger and the second portion of the refrigerant from the reheater to cool air proximate the second heat exchanger; and

the reheater configured to use the second portion of the refrigerant from the compressor to heat the air moved by the blower;

during a second mode of operation:

the first heat exchanger configured to remove heat from the refrigerant from the compressor;

the first valve configured to close to prevent refrigerant from the compressor from flowing to the reheater; and

the second heat exchanger configured to use the refrigerant from the first heat exchanger to cool the air proximate the second heat exchanger; and

during a heating mode of operation:

the four-way valve configured to direct refrigerant from the compressor to the second heat exchanger;

the second heat exchanger configured to use the refrigerant from the compressor to heat air proximate the second heat exchanger; and

the cap tube configured to allow refrigerant to bypass the reheater.

2. The apparatus of claim 1 , further comprising a flow restrictor configured to control a flow of the second portion of the refrigerant from the reheater to the second heat exchanger.

3. The apparatus of claim 1 , wherein the second heat exchanger is further configured to reduce a humidity level of the air when the second heat exchanger cools the air.

4. The apparatus of claim 1 , wherein the first mode of operation transitions to the second mode of operation when a temperature of the air proximate the second heat exchanger is above a threshold.

5. The apparatus of claim 1 , wherein the first portion of the refrigerant is larger than the second portion of the refrigerant.

6. A method comprising:

compressing, by a compressor, a refrigerant;

during a first mode of operation:

removing, by a first heat exchanger, heat from a first portion of the refrigerant from the compressor;

opening a first valve such that a second portion of the refrigerant from the compressor flows to a reheater;

using, by a second heat exchanger, the first portion of the refrigerant from the first heat exchanger and the second portion of the refrigerant from the reheater to cool air proximate the second heat exchanger;

moving, by a blower, air proximate the second heat exchanger to the reheater; and

using, by the reheater, the second portion of the refrigerant from the compressor to heat air moved by the blower;

during a second mode of operation:

removing, by the first heat exchanger, heat from the refrigerant from the compressor;

closing the first valve to prevent refrigerant from the compressor from flowing to the reheater;

using, by the second heat exchanger, the refrigerant from the first heat exchanger to cool the air proximate the second heat exchanger; and

moving, by the blower, air proximate the second heat exchanger to the reheater;

and

during a heating mode of operation:

adjusting a four-way valve to direct refrigerant from the compressor to the second heat exchanger;

using, by the second heat exchanger, the refrigerant from the compressor to heat air proximate the second heat exchanger; and

allowing, by a cap tube, refrigerant to bypass the reheater.

7. The method of claim 6 , further comprising controlling, by a flow restrictor, a flow of the second portion of the refrigerant from the reheater to the second heat exchanger.

8. The method of claim 6 , further comprising, reducing, by the second heat exchanger, a humidity level of the air when the second heat exchanger cools the air.

9. The method of claim 6 , further comprising transitioning from the first mode of operation to the second mode of operation when a temperature of the air proximate the second heat exchanger is above a threshold.

10. The method of claim 6 , wherein the first portion of the refrigerant is larger than the second portion of the refrigerant.

11. The method of claim 6 , wherein a speed of a flow of the refrigerant through one or more of the compressor, first heat exchanger, and second heat exchanger is variable.

12. A system comprising:

a compressor configured to compress a refrigerant;

a first heat exchanger;

a reheater;

a first valve;

a second heat exchanger;

a four-way valve; and

a cap tube;

during a first mode of operation:

the first heat exchanger configured to remove heat from a first portion of the refrigerant from the compressor;

the first valve configured to open such that a second portion of the refrigerant from the compressor flows to the reheater;

the second heat exchanger configured to use the first portion of the refrigerant from the first heat exchanger and the second portion of the refrigerant from the reheater to cool air proximate the second heat exchanger; and

the reheater configured to use the second portion of the refrigerant from the compressor to heat the air cooled by the second heat exchanger; and

during a second mode of operation:

the first heat exchanger configured to remove heat from the refrigerant from the compressor;

the first valve configured to close to prevent refrigerant from the compressor from flowing to the reheater; and

the second heat exchanger configured to use the refrigerant from the first heat exchanger to cool the air proximate the second heat exchanger; and

during a heating mode of operation:

the four-way valve configured to direct refrigerant from the compressor to the second heat exchanger;

the second heat exchanger configured to use the refrigerant from the compressor to heat air proximate the second heat exchanger; and

the cap tube configured to allow refrigerant to bypass the reheater.

13. The system of claim 12 , further comprising a flow restrictor configured to control a flow of the second portion of the refrigerant from the reheater to the second heat exchanger.

14. The system of claim 12 , wherein the second heat exchanger is further configured to reduce a humidity level of the air when the second heat exchanger cools the air.

15. The system of claim 12 , wherein the first mode of operation transitions to the second mode of operation when a temperature of the air proximate the second heat exchanger is above a threshold.

16. The system of claim 12 , wherein the first portion of the refrigerant is larger than the second portion of the refrigerant.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2019
From: HUNG, DER-KAI; LAN, LIN; DRURY, CHRISTOPHER JOHN
To: LENNOX INDUSTRIES INC.
Reel/Frame 050161/0993 →
Continuity (1)
Related Publication 20210063030A1 · Mar 4, 2021