IP Library Granted Patent US 11,473,821
Granted Patent B2
US 11,473,821 · App. 16/621,948 · Granted Oct 18, 2022

Refrigeration cycle apparatus

Inventors: Makoto Wada (Tokyo, JP); Takuya Matsuda (Tokyo, JP); Katsuhiro Ishimura (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F25B49/02F25B13/00F25B1/00F25B2313/02741F25B2313/0314F25B2400/0401F25B2500/222F25B2600/2501F25B2600/2513F25B2700/1931F25B2700/1933F25B2700/21152
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Quick Facts
Patent No.
US 11,473,821
App. No.
16/621,948
Granted
Oct 18, 2022
Kind
B2
Abstract

Upon detection of a leakage of refrigerant, a refrigerant recovery operation is performed for operating a compressor in a state where an outdoor expansion valve is closed. The refrigerant suctioned from an indoor unit passes through an outdoor heat exchanger so as to be liquefied and accumulated in an outdoor unit. When a low-pressure detection value by a pressure sensor decreases below a reference value, a termination condition for the refrigerant recovery operation is satisfied, and the compressor is stopped. Furthermore, when an abnormality in the refrigerant recovery operation is detected based on a behavior of the low-pressure detection value obtained until the termination condition is satisfied, the compressor is stopped to thereby end the refrigerant recovery operation. Also, guidance information for notification about an abnormality is output to a user.

Claims (86)

1. A refrigeration cycle apparatus equipped with an outdoor unit and at least one indoor unit, the refrigeration cycle apparatus comprising:

a compressor;

an outdoor heat exchanger provided in the outdoor unit;

an indoor heat exchanger provided in the indoor unit;

a refrigerant pipe configured to connect the compressor, the outdoor heat exchanger, and the indoor heat exchanger in a circulation manner;

a first flow interruption valve provided in a portion of a refrigerant circulation path that does not pass through the compressor and that connects the outdoor heat exchanger and the indoor heat exchanger, the refrigerant circulation path being a path that includes the compressor, the outdoor heat exchanger, the indoor heat exchanger, and the refrigerant pipe;

a leakage sensor configured to detect a leakage of refrigerant that flows through the refrigerant pipe; and

a notification output configured to output information to a user, wherein

when the leakage sensor detects a leakage of the refrigerant, a refrigerant recovery operation is performed until a termination condition based on a predetermined state amount is satisfied,

in the refrigerant recovery operation, the first flow interruption valve interrupts a flow of the refrigerant and the compressor is operated in a state where the refrigerant circulation path is formed in a direction in which the refrigerant discharged from the compressor passes through the outdoor heat exchanger and subsequently passes through the indoor heat exchanger, and

when an abnormality in the refrigerant recovery operation is detected during the refrigerant recovery operation, the notification output outputs guidance information for notifying the user about the abnormality,

the refrigeration cycle apparatus further comprises a pressure detector disposed on a suction side of the compressor,

a state amount is a pressure detection value by the pressure detector,

the termination condition is satisfied when the state amount decreases to the predetermined state amount,

a predetermined reference time period is set in a time period until the refrigerant recovery operation normally ends, and

when the state amount after a lapse of the predetermined reference time period is greater than the predetermined state amount, the notification output outputs the guidance information.

2. The refrigeration cycle apparatus according to claim 1 , wherein

the notification output is configured to output the guidance information when the refrigerant recovery operation does not end after a lapse of:

the predetermined reference time period from when the refrigerant recovery operation is started until when the refrigerant recovery operation ends in a state where the refrigerant recovery operation is normally performed; or

a second reference time period longer than the predetermined reference time period.

3. The refrigeration cycle apparatus according to claim 2 , wherein the predetermined reference time period or the second reference time period is set to be shorter at a lower temperature in accordance with a temperature state in each of the indoor unit and the outdoor unit.

4. The refrigeration cycle apparatus according to claim 1 , wherein

a change amount of the predetermined state amount per unit time in the refrigerant recovery operation normally performed is defined as a reference change amount, and

when the predetermined change amount of the state amount per unit time is less than the reference change amount, the notification output outputs the guidance information.

5. A refrigeration cycle apparatus equipped with an outdoor unit and at least one indoor unit, the refrigeration cycle apparatus comprising:

a compressor;

an outdoor heat exchanger provided in the outdoor unit;

an indoor heat exchanger provided in the indoor unit;

a refrigerant pipe configured to connect the compressor, the outdoor heat exchanger, and the indoor heat exchanger in a circulation manner;

a first flow interruption valve provided in a portion of a refrigerant circulation path that does not pass through the compressor and that connects the outdoor heat exchanger and the indoor heat exchanger, the refrigerant circulation path being a path that includes the compressor, the outdoor heat exchanger, the indoor heat exchanger, and the refrigerant pipe;

a leakage sensor configured to detect a leakage of refrigerant that flows through the refrigerant pipe; and

a notification output configured to output information to a user, wherein

when the leakage sensor detects a leakage of the refrigerant, a refrigerant recovery operation is performed until a termination condition based on a predetermined state amount is satisfied,

in the refrigerant recovery operation, the first flow interruption valve interrupts a flow of the refrigerant and the compressor is operated in a state where the refrigerant circulation path is formed in a direction in which the refrigerant discharged from the compressor passes through the outdoor heat exchanger and subsequently passes through the indoor heat exchanger,

when an abnormality in the refrigerant recovery operation is detected during the refrigerant recovery operation, the notification output outputs guidance information for notifying the user about the abnormality,

the leakage sensor is configured to detect a refrigerant concentration of the refrigerant in atmosphere,

a state amount is a detection value of the refrigerant concentration, and

the termination condition is satisfied when the refrigerant concentration decreases to the predetermined state amount.

6. The refrigeration cycle apparatus according to claim 5 , wherein

the notification output is configured to output the guidance information when the refrigerant recovery operation does not end after a lapse of:

a first reference time period from when the refrigerant recovery operation is started until when the refrigerant recovery operation ends in a state where the refrigerant recovery operation is normally performed; or

a second reference time period longer than the first reference time period.

7. The refrigeration cycle apparatus according to claim 6 , wherein the first reference time period or the second reference time period is set to be shorter at a lower temperature in accordance with a temperature state in each of the indoor unit and the outdoor unit.

8. The refrigeration cycle apparatus according to claim 5 , wherein

the predetermined state amount after a lapse of a third reference time period from start of the refrigerant recovery operation in the refrigerant recovery operation normally performed is defined as a reference state amount,

the third reference time period is set in a time period until the refrigerant recovery operation ends, and

when the state amount after a lapse of the third reference time period is greater than the predetermined state amount, the notification output outputs the guidance information.

9. A refrigeration cycle apparatus equipped with an outdoor unit and at least one indoor unit, the refrigeration cycle apparatus comprising:

a compressor;

an outdoor heat exchanger provided in the outdoor unit;

an indoor heat exchanger provided in the indoor unit;

a refrigerant pipe configured to connect the compressor, the outdoor heat exchanger, and the indoor heat exchanger in a circulation manner;

a first flow interruption valve provided in a portion of a refrigerant circulation path that does not pass through the compressor and that connects the outdoor heat exchanger and the indoor heat exchanger, the refrigerant circulation path being a path that includes the compressor, the outdoor heat exchanger, the indoor heat exchanger, and the refrigerant pipe;

a leakage sensor configured to detect a leakage of refrigerant that flows through the refrigerant pipe; and

a notification output configured to output information to a user, wherein

when the leakage sensor detects a leakage of the refrigerant, a refrigerant recovery operation is performed until a termination condition based on a predetermined state amount is satisfied,

in the refrigerant recovery operation, the first flow interruption valve interrupts a flow of the refrigerant and the compressor is operated in a state where the refrigerant circulation path is formed in a direction in which the refrigerant discharged from the compressor passes through the outdoor heat exchanger and subsequently passes through the indoor heat exchanger,

when an abnormality in the refrigerant recovery operation is detected during the refrigerant recovery operation, the notification output outputs guidance information for notifying the user about the abnormality,

the refrigeration cycle apparatus further comprises:

a pressure detector disposed on a discharge side of the compressor;

an accumulator in which the refrigerant in a liquid state is accumulated, the accumulator being disposed between the outdoor heat exchanger and the first flow interruption structure in the refrigerant circulation path; and

a temperature detector disposed between the accumulator and the first flow interruption valve in the refrigerant circulation path,

a state amount is a degree of supercooling calculated using a pressure detection value obtained by the pressure detector and a temperature detection value obtained by the temperature detector, and

the termination condition is satisfied when the degree of supercooling increases to the predetermined state amount.

10. The refrigeration cycle apparatus according to claim 9 , wherein

the notification output is configured to output the guidance information when the refrigerant recovery operation does not end after a lapse of:

a first reference time period from when the refrigerant recovery operation is started until when the refrigerant recovery operation ends in a state where the refrigerant recovery operation is normally performed; or

a second reference time period longer than the first reference time period.

11. The refrigeration cycle apparatus according to claim 10 , wherein the first reference time period or the second reference time period is set to be shorter at a lower temperature in accordance with a temperature state in each of the indoor unit and the outdoor unit.

12. The refrigeration cycle apparatus according to claim 9 , wherein

the predetermined state amount after a lapse of a third reference time period from start of the refrigerant recovery operation in the refrigerant recovery operation normally performed is defined as a reference state amount,

the third reference time period is set in a time period until the refrigerant recovery operation ends, and

when the state amount after a lapse of the third reference time period is less than the predetermined state amount, the notification device outputs the guidance information.

13. The refrigeration cycle apparatus according to claim 9 , further comprising a four-way valve having a first port, a second port, a third port, and a fourth port, wherein

the four-way valve is controlled to bring about one of:

a first state allowing communication between the first port and the fourth port and allowing communication between the second port and the third port; and

a second state allowing communication between the first port and the second port and allowing communication between the third port and the fourth port,

the first port of the four-way valve is connected to a suction side of the compressor,

the second port of the four-way valve is connected to a path leading to the outdoor heat exchanger,

the third port of the four-way valve is connected to a discharge side of the compressor,

the fourth port of the four-way valve is connected to a path leading to the indoor heat exchanger, and

the four-way valve is controlled to bring about the first state in the refrigerant recovery operation.

14. The refrigeration cycle apparatus according to claim 13 , further comprising a second interruption valve disposed between the fourth port and the indoor heat exchanger in the refrigerant circulation path, wherein

the second flow interruption valve is controlled to bring about an interruption state when the compressor is stopped to end the refrigerant recovery operation.

15. The refrigeration cycle apparatus according to claim 13 , further comprising an accumulator disposed between the first port and the suction side of the compressor, wherein

the four-way valve is controlled to bring about the second state when the compressor is stopped to end the refrigerant recovery operation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2019
From: WADA, MAKOTO; MATSUDA, TAKUYA; ISHIMURA, KATSUHIRO
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 051265/0143 →
Continuity (1)
Related Publication 20200166257A1 · May 28, 2020