IP Library Granted Patent US 11,965,672
Granted Patent B2
US 11,965,672 · App. 17/833,447 · Granted Apr 23, 2024

Water source heat pump dual functioning condensing coil

Inventors: Marcos Locke (Baldwinsville, NY); Benny DiMarco (Clay, NY)
Assignee: DAIKIN APPLIED AMERICAS INC.
F24F3/153F25B13/00F25B30/02F25B30/06F25B49/02F25B2313/004F25B2313/009F25B2313/02731F25B2313/02741F25B2600/2517
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Quick Facts
Patent No.
US 11,965,672
App. No.
17/833,447
Granted
Apr 23, 2024
Kind
B2
Abstract

A heat pump system includes a compressor, a usage side heat exchanger, a heat source side heat exchanger, an expansion mechanism, a main refrigerant flow control valve switchable between cooling and heating modes, a gas reheat heat exchanger, a fan, and a secondary refrigerant flow control device switchable between first, second, and third modes. Refrigerant flows from the compressor discharge line to the main refrigerant flow control device in the first mode. Refrigerant flows from discharge line to gas reheat heat exchanger and then main refrigerant flow control valve in the second mode. Refrigerant flows both from discharge line to gas reheat heat exchanger and then main refrigerant flow control valve, and from discharge line to main refrigerant flow control valve without flowing through the gas reheat heat exchanger in the third mode. Refrigerant flows to the usage side and hot gas reheat heat exchanger in the heating mode.

Claims (91)

1. A heat pump system comprising:

a compressor, the compressor delivering compressed refrigerant to a discharge line and receiving a refrigerant from a suction line;

a usage side heat exchanger;

a heat source side heat exchanger arranged to exchange heat between a heat transfer medium and refrigerant flowing therethrough;

an expansion valve;

a main refrigerant flow control valve switchable between

a cooling mode in which refrigerant is configured to flow from the discharge line through part of a refrigerant circuit, to the heat source side heat exchanger, to the expansion valve and then to the usage side heat exchanger, and

a heating mode in which refrigerant is configured to flow from the discharge line through part of the refrigerant circuit to the usage side heat exchanger, to the expansion valve and then to the heat source side heat exchanger;

a hot gas reheat heat exchanger connected in the refrigerant circuit;

a fan disposed to direct an airflow across the usage side heat exchanger and the hot gas reheat heat exchanger into a target space;

a receiver connected in the refrigerant circuit, the receiver being configured such that refrigerant flows through the receiver to an inlet side of the expansion valve when the main refrigerant flow control valve is in the cooling mode, and configured such that refrigerant does not flow to the receiver when the main refrigerant control valve is in the heating mode; and

at least one secondary refrigerant flow control valve switchable between

a first mode in which refrigerant is configured to flow from the discharge line to the main refrigerant flow control valve,

a second mode in which at least some refrigerant is configured to flow from the discharge line to the hot gas reheat heat exchanger and then flows to the main refrigerant flow control valve, and

a third mode in which refrigerant is configured to flow both

from the discharge line to the hot gas reheat heat exchanger and then flows to the main refrigerant flow control valve, and

from the discharge line to the main refrigerant flow control valve without flowing through the hot gas reheat heat exchanger,

the refrigerant circuit and the main and secondary refrigerant flow control valves being configured such that refrigerant flows to the usage side heat exchanger and the hot gas reheat heat exchanger when the main refrigerant flow control valve is in the heating mode, and

the refrigerant circuit and the main and secondary refrigerant flow control valves being configured such that the refrigerant flows to the hot gas reheat heat exchanger before flowing to the heat source side heat exchanger when the main refrigerant flow control valve is in the cooling mode.

2. The heat pump system according to claim 1 , wherein

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that refrigerant flows to the usage side heat exchanger and the hot gas reheat heat exchanger when the main refrigerant flow control valve is in the cooling mode.

3. The heat pump system according to claim 1 , wherein

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that refrigerant flows to the usage side heat exchanger and the hot gas reheat heat exchanger when the secondary refrigerant flow control valve is in both of the second and third modes,

one of the second and third modes including series flow through the hot gas reheat heat exchanger and the usage side heat exchanger, and

the other of the second and third modes including parallel flow through the usage side heat exchanger and the hot gas reheat heat exchanger.

4. The heat pump system according to claim 1 , wherein

the heat transfer medium of the heat source side heat exchanger is a liquid containing water.

5. The heat pump system according to claim 1 , wherein

the heat source side heat exchanger is a coaxial heat exchanger.

6. The heat pump system according to claim 1 , wherein

the secondary refrigerant flow control valve is a modulating three-way valve.

7. The heat pump system according to claim 1 , wherein

the compressor includes at least one inverter compressor.

8. The heat pump system according to claim 1 , wherein

the refrigerant flows to the receiver when the main refrigerant flow control valve is in the cooling mode.

9. A heat pump system comprising:

a compressor, the compressor delivering compressed refrigerant to a discharge line and receiving a refrigerant from a suction line;

an indoor heat exchanger;

an outdoor heat exchanger arranged to exchange heat between a heat transfer medium and refrigerant flowing therethrough;

an expansion valve;

a main refrigerant flow control valve switchable between

a cooling mode in which refrigerant is configured to flow from the discharge line through part of a refrigerant circuit, to the outdoor heat exchanger, to the expansion valve and then to the indoor heat exchanger, and

a heating mode in which refrigerant is configured to flow from the discharge line through part of the refrigerant circuit to the indoor heat exchanger, to the expansion valve and then to the outdoor heat exchanger;

a hot gas reheat heat exchanger connected in the refrigerant circuit;

a fan disposed to direct an airflow across the indoor heat exchanger and the hot gas reheat heat exchanger into a target space;

a receiver connected in the refrigerant circuit, the receiver being configured such that refrigerant flows through the receiver to an inlet side of the expansion valve when the main refrigerant flow control valve is in the cooling mode, and configured such that refrigerant does not flow to the receiver when the main refrigerant control valve is in the heating mode; and

a secondary refrigerant flow control valve switchable between

a first mode in which refrigerant is configured to flow from the discharge line to the main refrigerant flow control valve, and

a second mode in which refrigerant is configured to flow both

from the discharge line to the hot gas reheat heat exchanger and then flows to the main refrigerant flow control valve, and

from the discharge line to the main refrigerant flow control valve without flowing through the hot gas reheat heat exchanger,

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that the refrigerant flows to the hot gas reheat heat exchanger before flowing to the outdoor heat exchanger when the main refrigerant flow control valve is in the cooling mode.

10. The heat pump system according to claim 9 , wherein

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that refrigerant flows to the indoor heat exchanger and the hot gas reheat heat exchanger when the secondary refrigerant flow control valve is in the second mode.

11. The heat pump system according to claim 9 , wherein

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that refrigerant flows to the indoor heat exchanger and the hot gas reheat heat exchanger when the main refrigerant flow control valve is in the cooling mode.

12. The heat pump system according to claim 9 , wherein

the receiver is an inclined tube receiver configured to promote phase separation and to ensure a liquid seat is maintained at the expansion valve.

13. A heat pump system comprising:

a compressor, the compressor delivering compressed refrigerant to a discharge line and receiving a refrigerant from a suction line;

a usage side heat exchanger;

a heat source side heat exchanger arranged to exchange heat between a heat transfer medium and refrigerant flowing therethrough;

an expansion valve;

a main refrigerant flow control valve switchable between

a cooling mode in which refrigerant is configured to flow from the discharge line through part of a refrigerant circuit, to the heat source side heat exchanger, to the expansion valve and then to the usage side heat exchanger, and

a heating mode in which refrigerant is configured to flow from the discharge line through part of the refrigerant circuit to the usage side heat exchanger, to the expansion valve and then to the heat source side heat exchanger;

a hot gas reheat heat exchanger connected in the refrigerant circuit;

a fan disposed to direct an airflow across the usage side heat exchanger and the hot gas reheat heat exchanger into a target space;

a receiver connected in the refrigerant circuit, the receiver being configured such that refrigerant flows through the receiver to an inlet side of the expansion valve when the main refrigerant flow control valve is in the cooling mode, and configured such that refrigerant does not flow to the receiver when the main refrigerant control valve is in the heating mode; and

at least one secondary refrigerant flow control valve switchable between

a first mode in which refrigerant is configured to flow from the discharge line to the main refrigerant flow control valve,

a second mode in which at least some refrigerant is configured to flow from the discharge line to the hot gas reheat heat exchanger and then flows to the main refrigerant flow control valve, and

a third mode in which refrigerant is configured to flow both

from the discharge line to the hot gas reheat heat exchanger and then flows to the main refrigerant flow control valve, and

from the discharge line to the main refrigerant flow control valve without flowing through the hot gas reheat heat exchanger,

the refrigerant circuit and the main and secondary refrigerant flow control valves being configured such that refrigerant flows to the usage side heat exchanger when the main refrigerant flow control valve is in the heating mode, and

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that the refrigerant flows to the hot gas reheat heat exchanger before flowing to the heat source side heat exchanger when the main refrigerant flow control valve is in the cooling mode.

14. The heat pump system according to claim 13 , wherein

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that refrigerant flows to the usage side heat exchanger and the hot gas reheat heat exchanger when the main refrigerant flow control valve is in the cooling mode.

15. The heat pump system according to claim 13 , wherein

the refrigerant circuit and the main and secondary refrigerant flow control valves are configured such that refrigerant flows to the usage side heat exchanger and the hot gas reheat heat exchanger when the secondary refrigerant flow control valve is in both of the second and third modes,

one of the second and third modes including series flow through the hot gas reheat heat exchanger and the usage side heat exchanger, and

the other of the second and third modes including parallel flow through the usage side heat exchanger and the hot gas reheat heat exchanger.

16. The heat pump system according to claim 13 , wherein

the compressor output is controlled by an electronic controller based on saturated suction temperature on a suction side of the compressor.

17. The heat pump system according to claim 16 , wherein

the refrigerant circuit includes at least one of a suction pressure sensor and a suction temperature sensor configured to determine the saturated suction temperature.

18. The heat pump system according to claim 16 , wherein

the refrigerant circuit includes a suction pressure sensor and a suction temperature sensor disposed on the suction side of the compressor configured to determine the saturated suction temperature.

19. The heat pump system according to claim 13 , wherein

the heat pump is configured to heat 0 degree air to 65 degrees or more when the main refrigerant flow control valve is in a heating mode and the secondary refrigerant flow control valve is in the second position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2022
From: LOCKE, MARCOS; DIMARCO, BENNY
To: DAIKIN APPLIED AMERICAS INC.
Reel/Frame 060113/0183 →
Continuity (3)
Continuation 16146001 · Sep 28, 2018
Provisional Application 62569188 · Oct 6, 2017
Related Publication 20220299215A1 · Sep 22, 2022
Cited By (2)
US 12,392,508 US 12,578,124