IP Library › Granted Patent US 8,893,520
Granted Patent B2
US 8,893,520 · App. 12/971,127 · Granted Nov 25, 2014

CO

Inventors: Bernd Heinbokel (Cologne, DE); Siegfried Haaf (Cologne, DE); Neelkanth S. Gupte (Katy, TX); Ulf J. Jonsson (South Windsor, CT); Tobias H. Sienel (Wiesbaden, DE)
Assignee: Carrier Corporation
F25B1/10F25B9/008F25B2339/047F25D21/10F25B2400/22F25B29/003F25B2309/061F25D21/12F25B29/00F25B2400/075
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Quick Facts
Patent No.
US 8,893,520
App. No.
12/971,127
Granted
Nov 25, 2014
Kind
B2
Abstract

A refrigeration device containing CO 2 a refrigerant to be circulated, including a compressor, a heat-rejecting heat exchanger, an expansion, and an evaporator which are connected to one another. The refrigeration device includes a first portion and a second portion, the second portion having a higher temperature relative to the first portion when the refrigeration device is in operation. A heat-reclaim heat exchanger is provided at a given location in the second portion, provided to transfer heat to a fluid for further use as a source of heated fluid.

Claims (22)

1. A refrigeration circuit having a mono- or multi-component refrigerant circulating therein, the refrigeration circuit enabling an overcritical operation, the refrigeration circuit, in the direction of flow, comprising: a condenser/gas cooler; an intermediate relief device; a collecting container; a refrigerating relief device connected downstream of the collecting container; an evaporator connected downstream of the refrigerating relief device; and a compressor unit connected to the evaporator by a suction line, wherein gas space of the collecting container is connected or connectable by a connection line to an input of the compressor unit, wherein the connection line joins into the suction line at a position before the compressor unit, wherein the collecting container is further connected to at least one freezing consumer having a freezing relief valve connected between the collecting container and the at least one freezing consumer, and a deep-freeze compressor unit including an inlet side and an outlet side, wherein the inlet side of the deep-freeze compressor is connected to the at least one freezing consumer and the outlet side is connected to the input of the compressor unit, and wherein a heat-reclaim heat exchanger, provided to transfer heat to a fluid for further use, is arranged in at least one of the lines between the compressor unit and the condenser/gas cooler, between the condenser/gas cooler and the intermediate relief device, between the collecting container and the refrigerating relief device, and between the deep-freeze compressor unit and the compressor unit.

2. The refrigeration device as recited in claim 1 wherein at least one of the compressor units is comprised of a multistage compressor with a first compressor stage and a second compressor stage.

3. The refrigeration device as recited in claim 1 further including a display cabinet to be refrigerated.

4. The refrigeration device as recited in claim 1 wherein the evaporator includes evaporator coils.

5. The refrigeration device as recited in claim 1 wherein the fluid is selected from the group consisting of water and an anti-freeze liquid.

6. The refrigeration device as recited in claim 1 further including one member of the group consisting of a control valve and a variable speed pump for controlling a temperature of the heated fluid exiting the heat-reclaim heat exchanger.

7. The refrigeration device as recited in claim 1 further including a storage tank for the heated fluid.

8. The refrigeration device as recited in claim 1 further including a circuit for circulating the fluid.

9. The refrigeration device as recited in claim 1 further including a fluid path for directing at least part of the heated fluid to the evaporator for defrosting the evaporator.

10. The refrigeration device as recited in claim 1 further including at least one member of the group consisting of nozzles for spraying at least part of the heated fluid onto the evaporator coils and conduits for passing at least part of the heated fluid in heat exchange relationship with the evaporator.

11. The refrigeration device as recited in claim 3 further including a fluid path for circulating at least part of the heated fluid adjacent to windows of the display cabinet for defogging the windows.

12. The refrigeration device as recited in claim 3 further including a fluid path for circulating at least part of the heated fluid to fluid channels provided near a surface of the display cabinet, thereby raising a surface temperature above a dew point of water.

13. The refrigeration device as recited in claim 1 further including a fluid path for directing at least part of the heated fluid to a radiator for space heating.

14. The refrigeration device as recited in claim 1 wherein the heat-reclaim heat exchanger is provided to transfer heat to usable water and including a fluid path for directing at least part of the water to a location where usable warm water is consumed.

15. The refrigeration device as recited in claim 1 wherein the refrigerant is carbon dioxide.

16. A method for operating a refrigeration device, the method comprising the steps of: circulating a mono- or multi-component refrigerant in a refrigeration circuit, the refrigeration circuit enabling an overcritical operation and including, in a direction of flow, a condenser/gas cooler, an intermediate relief device, a collecting container, a refrigerating relief device connected downstream of the collecting container, an evaporator connected downstream of the refrigerating relief device, and a compressor unit connected to the evaporator by a suction line, wherein gas space of the collecting container is connected or connectable by a connection line to an input of the compressor unit, wherein a relief valve is provided in the connection line between the gas space of the collecting container and the input of the compressor unit, the connection line joins into the suction line at a position before the compressor unit, the collecting container is further connected to at least one freezing consumer having a freezing relief valve connected between the collecting container and the at least one freezing consumer, and a deep-freeze compressor unit including an inlet side and an outlet side, wherein the inlet side of the deep-freeze compressor is connected to the at least one freezing consumer and the outlet side is connected to the input of the compressor unit; and transferring heat from a heat-reclaim heat exchanger to a fluid, the heat-reclaim heat exchanger being provided in at least one of the lines between the compressor unit and the condenser/gas cooler, between the condenser/gas cooler and the intermediate relief device, between the collecting container and the relief device, and between the deep-freeze compressor unit and the compressor unit.

17. The method for operating a refrigeration device according to claim 16 including the step of directing at least part of the heated fluid to the evaporator for defrosting the evaporator.

18. The method for operating a refrigeration device according to claim 16 including the step of directing at least part of the heated fluid to a radiator for space heating.

19. The method for operating a refrigeration device according to claim 16 including the step of directing at least part of the heated fluid adjacent to windows of a refrigerated display cabinet for defogging the windows.

20. The method for operating a refrigeration device according to claim 16 wherein the fluid is usable water, including the step of directing at least part of the water to a location where usable warm water is consumed.

21. The method according to claim 16 wherein the refrigerant is carbon dioxide.

22. The refrigeration device as recited in claim 1 wherein the evaporator and the at least one freezer consumer are connected in parallel.

Continuity (2)
Continuation 11816337
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