IP Library Granted Patent US 10,247,441
Granted Patent B2
US 10,247,441 · App. 15/511,812 · Granted Apr 2, 2019

Refrigeration cycle apparatus with leak detection and associated air flow control

Inventors: Yasuhiro Suzuki (Tokyo, JP); Takaaki Takishita (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F24F11/89F24F11/36F24F11/74F24F13/15F25B13/00F25B49/02F25B2313/0293F25B2400/12F25B2500/222
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Quick Facts
Patent No.
US 10,247,441
App. No.
15/511,812
Granted
Apr 2, 2019
Kind
B2
Abstract

A refrigeration cycle apparatus includes a refrigeration cycle through which refrigerant is circulated, an indoor unit that accommodates at least a load-side heat exchanger of the refrigeration cycle and is placed indoors, and a controller that controls the indoor unit. The indoor unit includes an indoor air-blowing fan, an air inlet through which indoor air is sucked in, and an air outlet through which the air sucked in from the air inlet is blown indoors. The controller activates the indoor air-blowing fan when leakage of refrigerant is detected. An air passage that allows air to pass through the air outlet is established in the air outlet at least when leakage of refrigerant is detected.

Claims (20)

1. A refrigeration cycle apparatus comprising:

a refrigeration cycle through which refrigerant is circulated;

an indoor unit accommodating at least a load-side heat exchanger of the refrigeration cycle, the indoor unit being placed indoors; and

a controller configured to control the indoor unit, wherein

the indoor unit includes an air-blowing fan, an air inlet through which indoor air is sucked in, an air outlet through which the air sucked in from the air inlet is blown indoors, and airflow direction louvers configured to adjust direction of air blown out of the air outlet and configured to open and close the air outlet,

the controller is configured to actuate all louvers of the indoor unit into a closed state, the air flow direction louvers in the closed state of the louvers are provided offset in an upstream position or a downstream position of an open end of the air outlet with respect to an airflow direction through the air outlet,

an air passage that extends around all louvers of the indoor unit to permit exhaust of refrigerant while all louvers are in the closed state, and

the controller is configured to activate the air-blowing fan in response to detecting a leakage of the refrigerant to exhaust the refrigerant through the air passage that extends around all louvers of the indoor unit.

2. A refrigeration cycle apparatus comprising:

a refrigeration cycle configured to circulate refrigerant;

an indoor unit accommodating at least a load-side heat exchanger of the refrigeration cycle and being placed indoors; and

a controller configured to control the indoor unit, wherein

the indoor unit includes an air-blowing fan, an air inlet through which indoor air is sucked in, an air outlet through which the air sucked in from the air inlet is blown indoors, airflow direction louvers provided to the air outlet and configured to adjust the direction of the air blown out of the air outlet, and a side wall forming an air passage of the air outlet,

the airflow direction louvers are configured to open and close the air outlet,

the controller is configured to actuate all louvers of the indoor unit into a closed state,

the side wall includes, at a portion thereof including an open end of the air outlet, a clearance part protruding away from the airflow direction louvers,

an air passage that extends around all louvers of the indoor unit to permit exhaust of refrigerant while all louvers are in the closed state, the air passage is formed between the clearance part and the air flow direction louver in the closed state, and

the controller is configured to activate the air-blowing fan in response to detecting a leakage of the refrigerant to exhaust the refrigerant through the air passage that extends around all louvers of the indoor unit.

3. The refrigeration cycle apparatus of claim 1 , wherein a notch portion is formed at a corner of the airflow direction louver.

4. The refrigeration cycle apparatus of claim 2 , wherein a notch portion is formed at a corner of the airflow direction louver.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2017
From: SUZUKI, YASUHIRO; TAKISHITA, TAKAAKI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 041597/0358 →
Continuity (1)
Related Publication 20170292744A1 · Oct 12, 2017
Cited By (4)
US 12,392,533 US 12,410,958 US 12,487,008 US 12,716,632