IP Library Granted Patent US 10,145,595
Granted Patent B2
US 10,145,595 · App. 14/872,549 · Granted Dec 4, 2018

Refrigeration cycle apparatus

Inventors: Masafumi Tomita (Tokyo, JP); Kazuki Okada (Tokyo, JP); Masanori Aoki (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F25B49/005F25B13/00F25B49/022F25B2313/006F25B2313/02741F25B2313/0314F25B2500/01F25B2500/222F25B2500/23F25B2500/24F25B2700/04F25B2700/15F25B2700/2106
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Quick Facts
Patent No.
US 10,145,595
App. No.
14/872,549
Granted
Dec 4, 2018
Kind
B2
Abstract

A refrigeration cycle apparatus includes a refrigerant circuit connecting a compressor, a heat source-side heat exchanger, an expansion device, and a use-side heat exchanger to each other by connecting pipes, an outside air temperature sensor configured to detect an outside air temperature, and a controller configured to operate the refrigeration cycle apparatus and to switch between a normal operation mode for controlling the refrigerant circuit based on an operation load of the use-side heat exchanger and a refrigerant amount determining mode for determining whether or not an amount of refrigerant in the refrigerant circuit is appropriate. The controller is configured to switch the normal operation mode to the refrigerant amount determining mode when the outside air temperature detected by the outside air temperature sensor is within a set temperature range.

Claims (27)

1. A refrigeration cycle apparatus, comprising:

a refrigerant circuit connecting a compressor, a heat source-side heat exchanger, an expansion device, and a use-side heat exchanger to each other by connecting pipes;

an outside air temperature sensor configured to detect an outside air temperature; and

a controller configured to operate the refrigeration cycle apparatus and to switch between a normal operation mode for controlling the refrigerant circuit based on an operation load of the use-side heat exchanger and a refrigerant amount determining mode for determining whether or not an amount of refrigerant in the refrigerant circuit is appropriate,

the controller being configured to switch the normal operation mode to the refrigerant amount determining mode when the outside air temperature detected by the outside air temperature sensor is within a temperature range in which the normal operation of the refrigeration cycle apparatus can be performed at 50% or less of an air conditioning capacity of the refrigeration cycle apparatus.

2. The refrigeration cycle apparatus of claim 1 , further comprising

a flow switching device configured to switch a flow passage of refrigerant flowing out from the compressor, wherein,

in the normal operation mode, the controller controls the flow switching device to switch between a heating operation and a cooling operation.

3. The refrigeration cycle apparatus of claim 2 , wherein,

when the heating operation is performed and the outside air temperature detected by the outside air temperature sensor is from 10 degrees C. to 15 degrees C., the controller switches the normal operation mode to the refrigerant amount determining mode.

4. The refrigeration cycle apparatus of claim 2 , wherein,

when the cooling operation is performed and the outside air temperature detected by the outside air temperature sensor is from 15 degrees C. to 25 degrees C., the controller switches the normal operation mode to the refrigerant amount determining mode.

5. The refrigeration cycle apparatus of claim 2 , wherein,

when the heating operation is performed and a previous operation is the cooling operation, or when the cooling operation is performed and the previous operation is the heating operation, the controller determines whether or not the outside air temperature is within the set temperature range.

6. The refrigeration cycle apparatus of claim 1 , further comprising

a storage unit configured to store, as a reference value, an operation state amount of the refrigerant circuit when the normal operation mode is switched to the refrigerant amount determining mode for a first time, and wherein,

in the refrigerant amount determining mode, the controller compares the reference value stored in the storage unit with a current operation state amount.

7. The refrigeration cycle apparatus of claim 6 , wherein

the operation state amount is a degree of subcooling.

8. The refrigeration cycle apparatus of claim 6 , further comprising

a temperature sensor configured to detect a temperature of air subjected to heat exchange at the use-side heat exchanger, wherein

the operation state amount is obtained by dividing a degree of subcooling by a value obtained by subtracting the temperature of the air from a condensing temperature obtained when the use-side heat exchanger functions as a condenser.

9. The refrigeration cycle apparatus of claim 6 , further comprising

a liquid temperature detecting sensor configured to detect, when the use-side heat exchanger functions as a condenser, a liquid temperature at an outlet of the condenser, wherein,

in the refrigerant amount determining mode, the controller controls a rotation speed of the compressor so that a condensing temperature is a target value based on the liquid temperature.

10. The refrigeration cycle apparatus claim 6 , wherein,

in the refrigerant amount determining mode, the controller sets a target value of a degree of suction superheat of the compressor based on the outside air temperature detected by the outside air temperature sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2015
From: TOMITA, MASAFUMI; OKADA, KAZUKI; AOKI, MASANORI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 036704/0968 →
Priority Claims (1)
JP 2014-236744 · Nov 21, 2014 · national
Continuity (1)
Related Publication 20160146521A1 · May 26, 2016