Claims
- 1. A defrost refrigeration system of the type having a main refrigeration circuit, wherein a refrigerant goes through at least a first compressor in a compressing stage, wherein said refrigerant is compressed to a high-pressure gas state to then reach a condensing stage wherein said refrigerant in said high-pressure gas is condensed at least partially to a high-pressure liquid state to then reach an expansion stage, wherein said refrigerant in said high-pressure liquid state is expanded to a first low-pressure liquid state to then reach an evaporator stage, wherein said refrigerant in said first low-pressure liquid state is evaporated at least partially to a first low-pressure gas state by absorbing heat, to then return to said compressing stage, said defrost refrigeration system comprising a first line extending from the compressing stage to the evaporator stage and adapted to receive a portion of said refrigerant in said high-pressure gas state, valves for stopping a flow of said refrigerant in said first low-pressure liquid state to at least one evaporator of the evaporator stage and directing a flow of said portion of said refrigerant in said high-pressure gas state to release heat to defrost the at least one evaporator and thereby changing phase to a second low-pressure liquid state, and at least a dedicated compressor adapted to receive an evaporated gas portion of said refrigerant in said second low-pressure liquid state, the dedicated compressor being connected to the condensing stage for directing a discharge thereof to the condensing stage.
- 2. The defrost refrigeration system according to claim 1, wherein a first pressure reducing device is in the first line for reducing a pressure of said portion of said refrigerant in said high-pressure gas state to a second low-pressure gas state, such that said refrigerant in said second low-pressure gas state is directed to the at least one evaporator to release heat to defrost the at least one evaporator and thereby changing phase at least partially to a said second low-pressure liquid state.
- 3. The defrost refrigeration system according to claim 1, wherein said refrigerant in said second low-pressure liquid state is accumulated in a reservoir, the reservoir being connected to the compressing stage and the condensing stage by a second line.
- 4. The defrost refrigeration system according to claim 3, wherein said evaporated gas portion of said refrigerant is evaporated in said reservoir.
- 5. The defrost refrigeration system according to claim 3, wherein said refrigerant in said second low-pressure liquid state accumulated in said reservoir is directed to one of upstream and downstream of the condensing stage.
- 6. The defrost refrigeration system according to claim 5, wherein said refrigerant is directed to the condensing stage by a pressure differential being created between the compressing stage and the condensing stage by a second pressure reducing device, said refrigerant in said second low-pressure liquid state being mixed with said refrigerant in said high-pressure gas state exiting from said compressing stage to be entrained to the condensing stage.
- 7. A method for defrosting evaporators of a refrigeration system of the type having a main refrigeration circuit, wherein a refrigerant goes through at least a compressing stage having at least a first compressor, wherein said refrigerant is compressed to a high-pressure gas state to then reach a condensing stage, wherein said refrigerant in said high-pressure gas state is condensed at least partially to a high-pressure liquid state to then reach an expansion stage, wherein said refrigerant in said high-pressure liquid state is expanded to a first low-pressure liquid state to then reach an evaporator stage, wherein said refrigerant in said first low-pressure liquid state is evaporated at least partially to a first low-pressure gas state by absorbing heat, to then return to said compressing stage, comprising the steps of:
i) stopping a flow of said refrigerant in said first low-pressure liquid state to at least one evaporator; ii) directing a portion of said refrigerant in said high-pressure gas state to the at least one evaporator to release heat to defrost the at least one evaporator and thereby changing phase at least partially to a second low-pressure liquid state; and iii) directing an evaporated gas portion of said refrigerant in said second low-pressure gas state to a dedicated compressor, the dedicated compressor being connected to the condensing stage for directing a discharge thereof to the condensing stage.
- 8. The method according to claim 7, further comprising the step of reducing a pressure of said portion of said refrigerant in said high-pressure gas state to a second low-pressure gas state between the steps ii) and iii), such that said portion of said refrigerant in said second low-pressure gas state is directed to the at least one evaporator in step iii) to release heat to defrost the at least one evaporator.
- 9. A defrost refrigeration system of the type having a main refrigeration circuit, wherein a refrigerant goes through at least a compressing stage, wherein said refrigerant is compressed to a high-pressure gas state to then reach a condensing stage, wherein said refrigerant in said high-pressure gas state is condensed at least partially to a high-pressure liquid state to then reach an expansion stage, wherein said refrigerant in said high-pressure liquid state is expanded to a first low-pressure liquid state to then reach an evaporator stage, wherein said refrigerant in said first low-pressure liquid state is evaporated at least partially to a first low-pressure gas state by absorbing heat, to then return to said compressing stage, said defrost refrigeration system comprising a first line extending from the compressing stage to the evaporator stage and adapted to receive a portion of said refrigerant in said high-pressure gas state, valves for stopping a flow of said refrigerant in said first low-pressure liquid state to at least one evaporator of the evaporator stage and directing a flow of said refrigerant in said high-pressure gas state to release heat to defrost the at least one evaporator and thereby changing phase at least partially to a second low-pressure liquid state, a second line for directing said refrigerant having released heat to the compressing stage, and pressure control means in said second line for controlling a pressure of said refrigerant reaching the compressing stage.
- 10. The defrost refrigeration system according to claim 9, wherein the pressure control means is at least one of a modulating valve, a liquid accumulator, an outlet regulating valve, a pulse valve, and a circuit having heat exchange means and expansion valves.
- 11. The defrost refrigeration system according to claim 10, wherein the heat exchange means is at least one roof-top radiator.
- 12. A defrost refrigeration system of the type having a main refrigeration circuit, wherein a refrigerant goes through at least a compressing stage, wherein said refrigerant is compressed to a high-pressure gas state to then reach a condensing stage, wherein said refrigerant in said high-pressure gas state is condensed at least partially to a high-pressure liquid state to then reach an expansion stage, wherein said refrigerant in said high-pressure liquid state is expanded to a first low-pressure liquid state to then reach an evaporator stage, wherein said refrigerant in said first low-pressure liquid state is evaporated at least partially to a first low-pressure gas state by absorbing heat, to then return to said compressing stage, said defrost refrigeration system comprising a first line extending from the compressing stage to the evaporator stage and adapted to receive a portion of said refrigerant in said high-pressure gas state, valves for stopping a flow of said refrigerant in said first low-pressure liquid state to at least two evaporators of the evaporator stage and directing a flow of said refrigerant in said high-pressure gas state to release heat to defrost the at least two evaporators and thereby changing phase at least partially to a second low-pressure liquid state, a second line for directing said refrigerant having released heat in the at least two evaporators to the compressing stage, and temperature monitor means adapted to monitor an average temperature of said refrigerant in said second line and to reverse an action of the valves when said temperature reaches a predetermined value to re-establish said flow of said refrigerant in said first low-pressure liquid state to the at least two evaporators of the evaporator stage.
- 13. A defrost refrigeration system of the type having a main refrigeration circuit, wherein a refrigerant goes through at least a compressing stage, wherein said refrigerant is compressed to a high-pressure gas state to then reach a condensing stage, wherein said refrigerant in said high-pressure gas state is condensed at least partially to a high-pressure liquid state to then reach an expansion stage, wherein said refrigerant in said high-pressure liquid state is expanded by an expansion valve to a first low-pressure liquid state to then reach an evaporator stage, wherein said refrigerant in said first low-pressure liquid state is evaporated at least partially to a first low-pressure gas state by absorbing heat, to then return to said compressing stage, said defrost refrigeration system comprising a first line extending from the compressing stage to the expansion stage and adapted to receive a portion of said refrigerant in said high-pressure gas state, valves for stopping a flow of said refrigerant in said first low-pressure liquid state to at least one evaporator of the evaporator stage and directing a flow of said refrigerant in said high-pressure gas state around said expansion valve to the at least one evaporator of the evaporator stage to release heat to defrost the at least one evaporator and thereby changing phase at least partially to a second low-pressure liquid state, to then be directed to said compressing stage.
- 14. A defrost refrigeration system of the type having a main refrigeration circuit, wherein a refrigerant goes through at least a compressing stage having at least a first and a second compressor, wherein said refrigerant is compressed to a high-pressure gas state to then reach a condensing stage, wherein said refrigerant in said high-pressure gas state is condensed at least partially to a high-pressure liquid state to then reach an expansion stage, wherein said refrigerant in said high-pressure liquid state is expanded to a first low-pressure liquid state to then reach an evaporator stage, wherein said refrigerant in said first low-pressure liquid state is evaporated at least partially to a first low-pressure gas state by absorbing heat, to then return to said compressing stage, said defrost refrigeration system comprising a first line extending from said first compressor to the evaporator stage and adapted to receive at least a portion of discharged low-pressure refrigerant from said first compressor, valves for stopping a flow of said refrigerant in said first low-pressure liquid state to at least one evaporator of the evaporator stage and directing a flow of said discharged low-pressure refrigerant to release heat to defrost the at least one evaporator and thereby changing phase at least partially to a second low-pressure liquid state, and a second line for directing said refrigerant having released heat to the evaporator stage.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This patent application is a divisional of U.S. patent application Ser. No. 10/189,462, filed on Jul. 8, 2002, by the present Applicant.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10189462 |
Jul 2002 |
US |
Child |
10863495 |
Jun 2004 |
US |