IP Library › Granted Patent US 10,801,767
Granted Patent B2
US 10,801,767 · App. 16/308,646 · Granted Oct 13, 2020

Refrigeration cycle apparatus

Inventor: Kota Morimoto (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F25B49/025F24F11/86F24F11/871F25B1/00F25B13/00F25B39/04F25B49/027G05B13/048F24F2110/12F24F2110/40F25B2313/0294F25B2313/031F25B2339/04F25B2500/19F25B2500/31F25B2600/112F25B2700/1931F25B2700/1933F25B2700/21F25B2700/2106F25B2700/2117F25B2700/21161Y02B30/743
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Quick Facts
Patent No.
US 10,801,767
App. No.
16/308,646
Granted
Oct 13, 2020
Kind
B2
Abstract

A refrigeration cycle apparatus includes a refrigerant circuit, a high-side pressure sensor, an outside air temperature sensor, an outdoor fan, a fan driving unit, and a controller. The controller includes a pressure prediction unit that predicts, based on a high-side pressure detected by the high-side pressure sensor, a predicted value of high-side pressure at the elapse of a set time, a fan rotation speed control unit that, during cooling operation in which an indoor heat exchanger acts as an evaporator, adjusts the rotation speed of the fan driving unit based on the outside air temperature detected by the outside air temperature sensor and the operating capacity of an indoor unit, and an intermittent fan control unit that, if the fan driving unit is running at a set lower limit rotation speed, and if the high-side pressure is below a target value, controls the fan driving unit to perform intermittent operation, the intermittent operation being performed by setting an ON time and an OFF time such that the predicted value predicted by the pressure prediction unit approaches the target value.

Claims (32)

1. A refrigeration cycle apparatus comprising:

a refrigerant circuit in which a compressor, a flow switching device, an outdoor heat exchanger, a pressure reducing device, and an indoor heat exchanger are connected via a refrigerant pipe;

a high-side pressure sensor disposed on a discharge side of the compressor to detect a high-side pressure of refrigerant;

an outdoor fan that supplies air to the outdoor heat exchanger;

a fan driving unit that drives the outdoor fan; and

a controller configured to control a rotation speed of the fan driving unit,

wherein the controller is configured to

predict, based on the high-side pressure detected by the high-side pressure sensor, a predicted value of high-side pressure at an elapse of a set time, and

if the fan driving unit is running at a set lower limit rotation speed, and if the detected high-side pressure is below a target value, control the fan driving unit to perform intermittent operation, the intermittent operation being performed by setting an ON time, during which the outdoor fan is driven, and an OFF time, during which the outdoor fan is stopped, such that the predicted value approaches the target value.

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

an outside air temperature sensor that detects an outside air temperature; and

the controller, during cooling operation in which the indoor heat exchanger acts as an evaporator, controls the fan driving unit to perform continuous operation, the continuous operation being performed by adjusting a rotation speed of the fan driving unit based on the outside air temperature detected by the outside air temperature sensor and an operating capacity of an indoor unit.

3. The refrigeration cycle apparatus of claim 1 ,

wherein the controller repeatedly sets the ON time, and

wherein the ON time is adjusted from the ON time set last time, such that the predicted value approaches the target value.

4. The refrigeration cycle apparatus of claim 1 ,

wherein the controller repeatedly sets the OFF time, and

wherein the OFF time is adjusted from the OFF time set last time, such that the predicted value approaches the target value.

5. The refrigeration cycle apparatus of claim 1 ,

wherein the controller, during the intermittent operation, controls the compressor to operate at a rotation speed equal to or lower than a set upper limit.

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

a low-side pressure sensor disposed on a suction side of the compressor to detect a low-side pressure of the refrigerant,

wherein during the intermittent operation, the controller corrects the set ON time or the set OFF time such that the low-side pressure detected by the low-side pressure sensor is greater than a freezing pressure.

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

an evaporator temperature sensor that detects an evaporator temperature of the indoor heat exchanger,

wherein during the intermittent operation, the controller corrects the set ON time or the set OFF time such that the evaporator temperature detected by the evaporator temperature sensor is higher than a freezing temperature.

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

a board temperature sensor that detects a board temperature of the controller,

wherein the outdoor fan supplies air to the outdoor heat exchanger, and cools the controller, and

wherein during the intermittent operation, the controller corrects the set ON time or the set OFF time such that the board temperature detected by the board temperature sensor is lower than a set threshold.

9. The refrigeration cycle apparatus of claim 1 ,

wherein during the intermittent operation, the controller corrects the set ON time or the set OFF time such that the high-side pressure is less than a set threshold.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2018
From: MORIMOTO, KOTA
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 047728/0188 →
Continuity (1)
Related Publication 20190271494A1 · Sep 5, 2019