Claims
- 1. In an air source heat pump for temperature conditioning a comfort zone, including an outdoor heat exchanger, an indoor heat exchanger, a compressor connected to a reversing valve by a refrigerant suction line, and means for moving air through the outdoor and indoor heat exchangers in heat transfer relation therewith, a control for desfrosting the outdoor heat exchanger to melt ice and frost accumulated thereon during operation of the heat pump in a heating mode, said control comprising
- (a) means for sensing a condition indicative of the relative water vapor content of the outdoor ambient air;
- (b) means for sensing frost and ice accumulation on the outdoor heat exchanger;
- (c) a sensor for sensing the temperature in the comfort zone; and
- (d) control means, responsive to said condition sensing means, to said means for sensing frost and ice accumulation, and to the comfort zone temperature sensor, and operative to initiate: (i) a deferred defrost cycle wherein defrost of the outdoor heat exchanger begins after a fixed time interval has elapsed, if said condition sensing means indicates that the water vapor content of the outdoor air is relatively low; and (ii) an immediate defrost cycle when frost and ice have accumulated on the outdoor heat exchanger sufficiently to degrade heat transfer efficiencey to an optimum permissible limit, determined as a function of the comfort zone temperature.
- 2. The control of claim 1, wherein the condition sensing means include means for sensing one of the suction line, the outdoor heat exchanger, and the outdoor ambient air temperatures, said one of the temperatures being indicative of the water vapor content of the outdoor ambient air.
- 3. The control of claim 1 wherein the condition sensing means include means for sensing the temperature of both the suction line and the outdoor heat exchanger, and the control means are operative to defer initiating the defrost cycle for the fixed time interval if one of the suction line and outdoor heat exchanger temperatures is less than a predetermined value, said one temperature being indicative of a relatively low water vapor content of the outdoor ambient air if said one temperature is less than 0.degree. F., and wherein the predetermined value is less than 0.degree. F.
- 4. The control of claim 2 wherein the control means are further operative to initiate the defrost cycle if the one of the suction line, outdoor heat exchanger, and outdoor ambient air temperature is greater than a predetermined value, even prior to the lapse of said fixed time interval for deferring the defrost cycle.
- 5. The control of claim 3 wherein the control means are further operative to initiate the defrost cycle if the one of the suction line and outdoor heat exchanger temperatures is greater than the predetermined value, even prior to the lapse of said fixed time interval for deferring the defrost cycle.
- 6. In an air source heat pump for temperature conditioning a comfort zone, including an outdoor heat exchanger, an indoor heat exchanger, a compressor connected to a reversing valve by a refrigerant suction line, and means for moving air through the outdoor and indoor heat exchangers in heat transfer relation therewith, a method for defrosting the outdoor heat exchanger to melt ice and frost accumulated thereon during operation of the heat pump in a heating mode, said method comprising the steps of
- (a) sensing a condition indicative of the water vapor content of the outdoor ambient air;
- (b) sensing frost and ice accumulation on the outdoor heat exchanger;
- (c) sensing the temperature in the comfort zone; and
- (d) initiating a deferred defrost cycle wherein defrost of the outdoor heat exchanger begins after a fixed time interval has elapsed, if said condition indicates that the water vapor content of the outdoor air is relatively low; and initiating a defrost cycle in response to the comfort zone temperature when frost and ice have accumulated on the outdoor heat exchanger sufficiently to degrade heat transfer efficiency to an optimum permissible limit.
- 7. The method of claim 6, wherein the step of sensing a condition includes the step of sensing one of the suction line, the outdoor heat exchanger, and the outdoor ambient air temperatures, said one of the temperatures being indicative of the water vapor content of the outdoor ambient air.
- 8. The method of claim 6 wherein the step of sensing a condition includes the step of sensing the temperature of both the suction line and the outdoor heat exchanger, and wherein said method further comprises the step of deferring initiation of the defrost cycle for the fixed time interval if one of the suction line temperature and outdoor heat exchanger temperatures is less than a predetermined value, said one temperature being indicative of a relatively low water vapor content of the outdoor ambient air if said one temperature is less than 0.degree. F., and wherein the predetermined value is less than 0.degree. F.
- 9. The method of claim 7 further comprising the step of initiating the defrost cycle if the one of the suction line, outdoor heat exchanger, and outdoor ambient air temperatures is greater than a predetermined value, even prior to the lapse of said fixed time interval for deferring the defrost cycle.
- 10. The method of claim 8 further comprising the step of initiating the defrost cycle if the one of the suction line and outdoor heat exchanger temperatures is greater than the predetermined value, even prior to the lapse of said fixed time interval for deferring the defrost cycle.
- 11. In an air source heat pump for temperature conditioning a comfort zone, including an outdoor heat exchanger, an indoor heat exchanger, a compressor connected to a reversing valve by a refrigerant suction line, and means for moving air through the outdoor and indoor heat exchangers in heat transfer relation therewith, a control for defrosting the outdoor heat exchanger to melt ice and frost accumulated thereon during operation of the heat pump in a heating mode, said control comprising
- a. a sensor for sensing the temperature in the comfort zone;
- b. a suction line temperature sensor; and
- c. control means responsive to the comfort zone and suction line temperature sensors and operative to initiate a defrost cycle as a function of the comfort zone temperature, but only if the suction line temperature is less than a predetermined maximum and greater than a predetermined minimum, and if less than the predetermined minimum, the control means are further operative to defer initiating the defrost cycle for a fixed time interval.
- 12. In an air source heat pump for temperature conditioning a comfort zone, including an outdoor heat exchanger, indoor heat exchanger, a compressor connected to a reversing valve by a refrigerant suction line, and means for moving air through the outdoor and indoor heat exchangers in heat transfer relation therewith, a control for defrosting the outdoor heat exchanger to melt ice and frost accumulated thereon during operation of the heat pump in a heating mode, said control comprising
- a. a sensor for sensing the temperature in the comfort zone;
- b. an outdoor heat exchanger temperature sensor; and
- c. control means responsive to the comfort zone and outdoor heat exchanger temperature sensors and operative to initiate a defrost cycle as a function of the comfort zone temperature, but only if the outdoor heat exchanger temperature is less than a predetermined maximum and greater than a predetermined minimum, and if less than the predetermined minimum, the control means are further operative to defer initiating the defrost cycle for a fixed time interval.
- 13. In an air source heat pump for temperature conditioning a comfort zone, including an outdoor heat exchanger, an indoor heat exchanger, a compressor connected to a reversing valve by a refrigerant suction line, and means for moving air through the outdoor and indoor heat exchangers in heat transfer relation therewith, a method for defrosting the outdoor heat exchanger to melt ice and frost accumulated thereon during operation of the heat pump in a heating mode, said method comprising the steps of:
- a. sensing the temperature in the comfort zone;
- b. sensing the suction line temperature; and
- c. initiating a defrost cycle as a function of the temperature of the comfort zone, but only if the suction line temperature is less than a predetermined maximum and greater than a predetermined minimum, and if less than the predetermined minimum, deferring the initiation of the defrost cycle for a fixed time interval.
- 14. In an air source heat pump for temperature conditioning a comfort zone, including an outdoor heat exchanger, an indoor heat exchanger, a compressor connected to a reversing valve by a refrigerant suction line, and means for moving air through the outdoor and indoor heat exchangers in heat transfer relation therewith, a method for defrosting the outdoor heat exchanger to melt ice and frost accumulated thereon during operation of the heat pump in a heating mode, said method comprising the steps of:
- a. sensing the temperature in the comfort zone;
- b. sensing the outdoor heat exchanger temperature; and
- c. initiating a defrost cycle as a function of the temperature of the comfort zone, but only if the outdoor heat exchanger temperature is less than a predetermined maximum and less than a predetermined minimum, and if less than the predetermined minimum, deferring the initiation of the defrost cycle for a fixed time interval.
Parent Case Info
This application is a division of application Ser. No. 123,308, filed Feb. 21, 1980 now U.S. Pat. No. 4,338,790.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3777505 |
Otaki |
Dec 1973 |
|
4209994 |
Mueller et al. |
Jul 1980 |
|
4302947 |
Mueller et al. |
Dec 1981 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
53-138563 |
Dec 1978 |
JPX |
54-72544 |
Jun 1979 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
123308 |
Feb 1980 |
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