IP Library Granted Patent US 10,539,335
Granted Patent B2
US 10,539,335 · App. 15/535,529 · Granted Jan 21, 2020

Regenerative air conditioner

Inventors: Kouichi Yasuo (Osaka, JP); Shuuji Fujimoto (Osaka, JP); Kebi Chen (Osaka, JP); Takuya Nakao (Osaka, JP)
Assignee: Daikin Industries, Ltd.
F24F5/001F24F5/00F24F5/0017F24F11/89F25B13/00F25B41/04F25B49/022F25B2313/006F25B2313/009F25B2313/0232F25B2313/0233F25B2313/02731F25B2400/13F25B2400/24F25B2600/0253Y02B30/741
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Quick Facts
Patent No.
US 10,539,335
App. No.
15/535,529
Granted
Jan 21, 2020
Kind
B2
Abstract

To avoid decline in the efficiency of a compressor at a low load, the thermal storage air conditioner has an operation controller which, if a rotational speed of the compressor is slowed down to a predetermined lower reference value in a simple cooling operation, switches operation of the thermal storage air conditioner from the simple cooling operation to a cooling and cold thermal energy storage operation to increase the rotational speed of the compressor. During the simple cooling operation refrigerant is condensed in the outdoor heat exchanger and evaporates in the indoor heat exchanger, and during a cooling and cold thermal energy storage operation the refrigerant is condensed in the outdoor heat exchanger, evaporates in the indoor heat exchanger, and the thermal storage medium in the thermal storage section is cooled by the refrigerant.

Claims (9)

1. A thermal storage air conditioner, comprising:

a refrigerant circuit which has a compressor, an outdoor heat exchanger, and an indoor heat exchanger and performs a refrigeration cycle;

a thermal storage section which has a thermal storage medium and exchanges heat between the thermal storage medium and a refrigerant of the refrigerant circuit; and

a controller configured to

control the refrigerant circuit such that the thermal storage air conditioner performs a simple cooling operation in which in the refrigerant circuit, the refrigerant is condensed in the outdoor heat exchanger and evaporates in the indoor heat exchanger; and a cooling and cold thermal energy storage operation in which in the refrigerant circuit, the refrigerant is condensed in the outdoor heat exchanger and evaporates in the indoor heat exchanger, and in which the thermal storage medium in the thermal storage section is cooled by the refrigerant; and

switch, if a rotational speed of the compressor is slowed down to a predetermined lower reference value during the simple cooling operation, operation of the thermal storage air conditioner from the simple cooling operation to the cooling and cold thermal energy storage operation to increase the rotational speed of the compressor.

2. The thermal storage air conditioner of claim 1 , wherein the controller is further configured to switch the operation of the thermal storage air conditioner from the cooling and cold thermal energy storage operation to the simple cooling operation to reduce the rotational speed of the compressor if the rotational speed of the compressor increases to a predetermined upper reference value during the cooling and cold thermal energy storage operation.

3. The thermal storage air conditioner of claim 1 , wherein when the controller switches the operation of the thermal storage air conditioner from the simple cooling operation to the cooling and cold thermal energy storage operation, the rotational speed of the compressor is increased by a value equal to a lowest rotational speed of the compressor.

4. The thermal storage air conditioner of claim 2 , wherein when the controller switches the operation of the thermal storage air conditioner from the simple cooling operation to the cooling and cold thermal energy storage operation, the rotational speed of the compressor is increased by a value equal to a lowest rotational speed of the compressor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2017
From: YASUO, KOUICHI; FUJIMOTO, SHUUJI; CHEN, KEBI; NAKAO, TAKUYA
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 042703/0537 →
Priority Claims (1)
JP 2014-265594 · Dec 26, 2014 · national
Continuity (1)
Related Publication 20170336085A1 · Nov 23, 2017
Cited By (2)
US 12,624,874 US 12,669,257