Claims
- 1. A refrigeration system comprising:
a compressor; two condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, wherein said compressor, said condensers, said expansion device, and said evaporator are connected in a closed circuit and a mixture of at least a first refrigerant fluid having a first density and a second refrigerant fluid having a second density is circulated around said closed circuit; a separator connected between said input of said condensers and the said compressor; and a storage tank.
- 2. The system of claim 1, wherein said separator is a vortex generator.
- 3. The vortex generator of claim 2 produces centrifugal force large enough to separate refrigerant vapors whose densities are substantially different,
- 4. The system of claim 1 uses a storage tank.
- 5. The system of claim 1 uses said vortex generator to control the composition of said mixture.
- 6. The system of claim 5, wherein said mixture is R-32, R-125 and R-134a.
- 7. The system of claim 1, wherein said second density is greater than said first density.
- 8. The system of claim 1, wherein said second refrigerant fluid is selected from the group consisting of R-134a and R-125, and said first refrigerant fluid is R-32.
- 9. In the system of claim 1, the composition control is executed by storing said first refrigerant fluid in said storage tank for low thermal load applications so that the composition of said second refrigerant fluid is greatly increased in the circulating line for increased EER.
- 10. In the system of claim 1, the composition control is executed by storing second refrigerant fluid in said storage tank for high thermal load applications so that the composition of said first refrigerant fluid is greatly increased in the circulating line for increased cooling capacity.
- 11. The composition control using said vortex generator reduces the energy loss caused by ON/OFF operation of said compressor, thus increasing the compressor efficiency.
- 12. A refrigeration system comprising:
a compressor; two condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, wherein said compressor, said condensers, said expansion device, and said evaporator are connected in a closed circuit and a mixture of at least a first refrigerant fluid having a first density and a second refrigerant fluid having a second density is circulated around said closed circuit; a separator connected between said input of said condensers and the said compressor; and two storage tanks.
- 13. The system of claim 12, wherein said separator is a vortex generator.
- 14. The system of claim 12 uses two 3-way control valves between said output of condensers and said two storage tanks: one 3-way valve is used to control the composition of said first refrigerant fluid in one storage tank independently, whereas the other 3-way valve is used to control the composition of said second refrigerant fluid independently.
- 15. A refrigeration system comprising:
a compressor; three condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, wherein said compressor, said condensers, said expansion device, and said evaporator are connected in a closed circuit and a mixture of at least a first refrigerant fluid having a first density and a second refrigerant fluid having a second density is circulated around said closed circuit; a separator connected between said input of said condensers and the said compressor; and three storage tanks.
- 16. The system of claim 15, wherein said separator is a vortex generator.
- 17. The system of claim 15, wherein said mixture is R-32, R-125 and R-134a.
- 18. The system of claim 15 uses three 3-way control valves between said output of said three condensers and said three storage tanks: said first 3-way valve is used to control the composition of said first refrigerant fluid in one storage tank independently; said second 3-way valve is used to control the composition of said second refrigerant fluid independently; and said third 3-way valve is used to control the composition of said third refrigerant fluid independently.
- 19. The method of operating a refrigeration system, said system having:
a compressor; two condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, wherein said compressor, said condenser, said expansion device, and said evaporator are connected in a closed circuit and a mixture of at least a first refrigerant fluid having a first density and a second refrigerant fluid having a second density is circulated around said closed circuit; a separator connected between said input of said condensers and the said compressor; and a storage tank.
- 20. The method of claim 19, wherein said separator is a vortex generator.
- 21. The vortex generator of claim 20 produces centrifugal force large enough to separate refrigerant vapors whose densities are substantially different,
- 22. The method of claim 19 uses a storage tank.
- 23. The method of claim 19 uses said vortex generator to control the composition of said mixture.
- 24. The method of claim 23, wherein said mixture is R-32, R-125 and R-134a.
- 25. The method of claim 19, wherein said second density is greater than said first density.
- 26. The method of claim 19, wherein said second refrigerant fluid is selected from the group consisting of R-134a and R-125, and said first refrigerant fluid is R-32.
- 27. In the method of claim 19, the composition control is executed by storing said first refrigerant fluid in said storage tank for low thermal load applications so that the composition of said second refrigerant fluid is greatly increased in the circulating line for increased EER.
- 28. In the method of claim 19, the composition control is executed by storing second refrigerant fluid in said storage tank for high thermal load applications so that the composition of said first refrigerant fluid is greatly increased in the circulating line for increased cooling capacity.
- 29. The composition control using said vortex generator reduces the energy loss caused by ON/OFF operation of said compressor, thus increasing the compressor efficiency.
- 30. The method of operating a refrigeration system, said system having:
a compressor; two condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, wherein said compressor, said condenser, said expansion device, and said evaporator are connected in a closed circuit and a mixture of at least a first refrigerant fluid having a first density and a second refrigerant fluid having a second density is circulated around said closed circuit; a separator connected between said input of said condensers and the said compressor; and two storage tanks.
- 31. The method of claim 30, wherein said separator is a vortex generator.
- 32. The method of claim 30 uses two 3-way control valves between said output of condensers and said two storage tanks: one 3-way valve is used to control the composition of said first refrigerant fluid in one storage tank independently, whereas the other 3-way valve is used to control the composition of said second refrigerant fluid independently.
- 33. The method of operating a refrigeration system, said system having:
a compressor; three condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, wherein said compressor, said condenser, said expansion device, and said evaporator are connected in a closed circuit and a mixture of at least a first refrigerant fluid having a first density and a second refrigerant fluid having a second density is circulated around said closed circuit; a separator connected between said input of said condensers and the said compressor; and three storage tanks.
- 34. The method of claim 33, wherein said separator is a vortex generator.
- 35. The method of claim 33, wherein said mixture is R-32, R-125 and R-134a.
- 36. The method of claim 33 uses three 3-way control valves between said output of said three condensers and said three storage tanks: said first 3-way valve is used to control the composition of said first refrigerant fluid in one storage tank independently; said second 3-way valve is used to control the composition of said second refrigerant fluid independently; and said third 3-way valve is used to control the composition of said third refrigerant fluid independently.
- 37. A refrigeration system comprising:
a compressor; a plurality of condensers, positioned in parallel, each having an input and an output; an expansion device; an evaporator, said compressor, said condensers, said expansion device, and said evaporator being connected in a closed circuit and being operative to circulate a refrigerant fluid comprised of a first component having a first density and a second component having a second density; a separator having an input connected to an output of said compressor and outputs connected to the inputs of said condensers; a storage tank; a plurality of first valves selectively connecting the outputs of the condensers as inputs to the storage tank; and a second valve operative to selectively feed the contents of the storage tank into the closed circuit.
- 38. A refrigeration system comprising:
fluid compressor means; a plurality of fluid condenser means, positioned in parallel, each having an input and an output; fluid expansion means; evaporator means; said compressor means, said condenser means, said expansion means, and said evaporator means being connected in a closed circuit and being operative to circulate a refrigerant fluid comprised of a first component having a first density and a second component having a second density; fluid separator means having an input connected to an output of said compressor means and outputs connected to the inputs of said condenser means; fluid storage means; a plurality of first valve means selectively connecting the outputs of the condenser means as inputs to the storage means; and second valve means operative to selectively feed the contents of the storage means into the closed circuit.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is based on and claims benefit of U.S. Provisional Patent Application No. 60/303,198 filed Jul. 5, 2001 entitled ENERGY SAVING REFRIGERATION SYSTEM USING COMPOSITION CONTROL WITH MIXED REFRIGERANTS, the disclosure of which is hereby incorporated by reference and to which a claim of priority is hereby made.
Provisional Applications (1)
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Number |
Date |
Country |
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60303198 |
Jul 2001 |
US |