Multiple refrigerant thermal energy storage and cooling system with secondary refrigerant isolation
Disclosed are a method and device for a refrigerant-based thermal storage system wherein a condensing unit and an ice-tank heat exchanger can be isolated through a second heat exchanger. The disclosed embodiments provide a refrigerant-based ice storage system with increased reliability, lower cost components, and reduced power consumption compared to a single phase system such as a glycol system.
1. A refrigerant-based thermal energy storage and cooling system comprising:
a first refrigerant loop containing a first refrigerant;
a second refrigerant loop containing a second refrigerant, said second refrigerant that is a different material than said first refrigerant;
an isolating heat exchanger disposed between said first refrigerant loop and said second refrigerant loop for thermal communication there between; and,
a load heat exchanger within said second refrigerant loop that transfers thermal capacity of said second refrigerant to a load.
2. The system of claim 1 wherein said first refrigerant loop further comprises:
a condensing unit, said condensing unit comprising a compressor and a first condenser.
3. The system of claim 2 further comprising:
an expansion device connected downstream of said condensing unit.
4. The system of claim 3 wherein said expansion device is a thermal expansion valve.
5. The system of claim 3 wherein said first refrigerant loop further comprises:
a refrigerant receiver for accumulation and storage of said first refrigerant.
6. The system of claim 1 wherein said second refrigerant loop further comprises:
a first evaporator on a primary side of an isolating heat exchanger; and,
a second condenser on a secondary side of said isolating heat exchanger.
7. The system of claim 1 further comprising:
a tank filled with a fluid capable of a phase change between liquid and solid and containing a primary heat exchanger therein, said primary heat exchanger in fluid communication with said second condenser and that uses said second refrigerant from said second condenser to cool said fluid and to freeze at least a portion of said fluid within said tank.
8. The system of claim 7 further comprising:
a refrigerant management vessel connected to receive said second refrigerant from said isolating heat exchanger in a first time period, and to receive said second refrigerant from said primary heat exchanger in a second time period.
9. The system of claim 8 wherein said refrigerant management vessel is connected between said secondary side of said isolating heat exchanger and said primary heat exchanger.
10. The system of claim 8 further comprising:
a liquid refrigerant pump for distributing said second refrigerant from said refrigerant management vessel to said primary heat exchanger in said first time period and said load heat exchanger in said second time period.
11. The system of claim 3 wherein said expansion device is a mixed-phase regulator.
12. The system of claim 7 wherein said fluid is a eutectic material.
13. The system of claim 7 wherein said fluid is water.
14. The system of claim 1 wherein said load heat exchanger is at least one mini-split evaporator.