US2019293333A1PendingUtilityA1

Refrigeration cycle apparatus

Assignee: MITSUBISHI ELECTRIC CORPPriority: Dec 15, 2016Filed: Dec 15, 2016Published: Sep 26, 2019
Est. expiryDec 15, 2036(~10.4 yrs left)· nominal 20-yr term from priority
F25B 2600/2501F25B 13/00F25B 41/00F25B 49/02F25B 2600/0253F25B 49/022F25B 41/04F25B 1/00F25B 41/20Y02B30/70
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Claims

Abstract

A refrigeration cycle apparatus according to the present invention performs cooling by circulation of refrigerant. The refrigeration cycle apparatus includes an evaporator, a condenser, a pump, a compressor, and a control device. The evaporator is arranged in a first space. The condenser is arranged in a second space. The pump is configured to compress refrigerant from the condenser and output the refrigerant to the evaporator. The compressor is configured to compress refrigerant from the evaporator and output the refrigerant to the condenser. The control device is configured to control the pump and the compressor to cool the first space. The control device is configured to turn on the pump after turn-on of the compressor while a temperature of the first space is higher than a temperature of the second space.

Claims

exact text as granted — not AI-modified
1 . A refrigeration cycle apparatus which performs cooling by circulation of refrigerant, the refrigeration cycle apparatus comprising:
 an evaporator arranged in a first space;   a condenser arranged in a second space;   a pump configured to compress the refrigerant from the condenser and output the refrigerant to the evaporator;   a compressor configured to compress the refrigerant from the evaporator and output the refrigerant to the condenser; and   a control device configured to control the pump and the compressor to cool the first space,   the control device being configured to   turn on the pump after turn-on of the compressor while a temperature of the first space is higher than a temperature of the second space and,   control the pump to increase over time an amount of the refrigerant discharged per unit time by the pump after turn-on of the pump.   
     
     
         2 . The refrigeration cycle apparatus according to  claim 1 , further comprising a bypass flow path configured to
 connect a first flow path between the evaporator and the compressor and a second flow path between the compressor and the condenser to each other, and   allow the refrigerant to pass when a pressure of the refrigerant in the first flow path is higher than a pressure of the refrigerant in the second flow path.   
     
     
         3 . The refrigeration cycle apparatus according to  claim 2 , wherein
 the bypass flow path comprises a check valve configured to allow the refrigerant to pass when a pressure of the refrigerant in the first flow path is higher than a pressure of the refrigerant in the second flow path.   
     
     
         4 . The refrigeration cycle apparatus according to  claim 1 , wherein
 the control device is configured to turn on the pump when a degree of supercooling of the refrigerant suctioned by the pump is higher than a reference value.   
     
     
         5 . The refrigeration cycle apparatus according to  claim 4 , further comprising a temperature sensor arranged in a third flow path between the condenser and the pump, the temperature sensor being configured to measure a temperature of the refrigerant in the third flow path, wherein
 the control device is configured to calculate the degree of supercooling by using the temperature.   
     
     
         6 . The refrigeration cycle apparatus according to  claim 1 , wherein
 the control device is configured to turn on the pump in succession to an operation of the compressor which continues for a reference period of time.   
     
     
         7 . The refrigeration cycle apparatus according to  claim 1 , wherein
 the control device controls the compressor to decrease over time an amount of the refrigerant discharged per unit time by the compressor after turn-on of the pump.   
     
     
         8 . The refrigeration cycle apparatus according to  claim 1 , further comprising:
 a first blower apparatus configured to send air to the evaporator; and   a second blower apparatus configured to send air to the condenser.   
     
     
         9 . The refrigeration cycle apparatus according to  claim 1 , further comprising a first pressure regulation valve connected between the evaporator and the pump, wherein
 a degree of opening of the first pressure regulation valve is larger after turn-on than before turn-on of the compressor.   
     
     
         10 . The refrigeration cycle apparatus according to  claim 9 , wherein
 a degree of opening of the first pressure regulation valve is set to a first reference degree of opening at turn-on of the compressor.   
     
     
         11 . The refrigeration cycle apparatus according to  claim 9 , further comprising a second pressure regulation valve connected between the compressor and the condenser, wherein
 a degree of opening of the second pressure regulation valve is larger after turn-on than before turn-on of the compressor.   
     
     
         12 . The refrigeration cycle apparatus according to  claim 11 , wherein
 a degree of opening of the second pressure regulation valve is set to a second reference degree of opening at turn-on of the compressor.   
     
     
         13 . The refrigeration cycle apparatus according to  claim 1 , further comprising a pressure regulation valve connected between the compressor and the condenser, wherein
 a degree of opening of the pressure regulation valve is larger after turn-on than before turn-on of the compressor.   
     
     
         14 . The refrigeration cycle apparatus according to  claim 13 , wherein
 a degree of opening of the pressure regulation valve is set to a reference degree of opening at turn-on of the compressor.   
     
     
         15 . A refrigeration cycle apparatus which performs cooling by circulation of refrigerant, the refrigeration cycle apparatus comprising:
 an evaporator arranged in a first space;   a condenser arranged in a second space;   a pump configured to compress the refrigerant from the condenser and output the refrigerant to the evaporator;   a compressor configured to compress the refrigerant from the evaporator and output the refrigerant to the condenser;   a control device configured to control the pump and the compressor to cool the first space; and   a pressure regulation valve connected between the compressor and the condenser,   the control device being configured to turn on the pump after turn-on of the compressor while a temperature of the first space is higher than a temperature of the second space, and   a degree of opening of the pressure regulation valve being larger after turn-on than before turn-on of the compressor.

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