IP Library Granted Patent US 9,709,305
Granted Patent B2
US 9,709,305 · App. 14/549,511 · Granted Jul 18, 2017

Liquefier for a heat pump and heat pump

Inventors: Holger Sedlak (Lochhofen/Sauerlach, DE); Oliver Kniffler (Sauerlach, DE)
Assignee: Efficient Energy GmbH
F25B30/02B23P15/26F24D3/08F24D3/18F24D11/0214F24D17/02F24J3/00F25B1/10F25B39/02F25B39/04F25B30/06F25B2339/047F25B2400/072F25B2500/01Y02B30/12Y02B30/126Y10T29/49355Y10T29/49359
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Quick Facts
Patent No.
US 9,709,305
App. No.
14/549,511
Granted
Jul 18, 2017
Kind
B2
Abstract

A liquefier for a heat pump includes a liquefier space and a process water tank. The process water tank is arranged within the liquefier space such that it is substantially surrounded by liquefied working fluid. A wall of the process water tank, however, is spaced from a wall of the process water tank so that a gap formed to communicate with the region of the heat pump in which compressed gas is present is obtained, so that the process water tank is thermally insulated from the space for liquefied working fluid via this gas-filled gap. The liquefier itself may also be surrounded by the gas region, in order to provide for inexpensive insulation of the liquefier.

Claims (26)

1. A heat pump, comprising:

an evaporator;

a liquefier with an outer liquefier wall limiting the liquefier to the outside; and

a gas region extending from the evaporator to the liquefier, wherein the gas region is formed to hold working fluid evaporated in the evaporator,

wherein the liquefier is configured to liquefy evaporated working fluid entering the liquefier from the gas region, such that heat is transferred to liquid working fluid in the liquefier,

wherein the gas region extends along the outer liquefier wall, and

wherein the gas region is located in a gap between the outer liquefier wall and an outer environment of the heat pump such that the gas region provides a thermal insulation property for the outer liquefier wall.

2. The heat pump according to claim 1 , wherein the liquefier wall comprises a bottom region and a lateral region;

wherein the gas region extends both along the bottom region and along the lateral region.

3. The heat pump according to claim 1 , wherein the gas region is formed so that, with the liquefier filled, at least 70% of the entire liquefier wall, which is in contact with liquefied working fluid on one side, is in contact with evaporated working fluid on the other side.

4. The heat pump according to claim 1 , wherein a pressure in the gas region is smaller than or equal to 100 mbar where the gas region extends along the liquefier wall.

5. The heat pump according to claim 1 , wherein the liquefier comprises a circular or elliptical cross-section, and

wherein the gas region extends, annularly in cross section, at least up to the level of the liquefied working fluid in the liquefier, when the liquefier is filled, around the entire liquefier.

6. The heat pump according to claim 1 , wherein the gas region extends between a first compressor, which is arranged below the liquefier, and a second compressor, which is arranged above the liquefier.

7. The heat pump according to claim 1 , wherein the working fluid is water and the evaporator is formed to maintain a pressure of less than 50 mbar, and the gas region is formed to maintain a pressure of less than 200 mbar.

8. The heat pump according to claim 1 , wherein the liquefier is above the evaporator in a setup direction of the heat pump.

9. A method of manufacturing a heat pump with an evaporator, a liquefier with an outer liquefier wall limiting the liquefier to the outside and a gas region extending from the evaporator to the liquefier, comprising:

arranging the gas region so that the gas region extends along the outer liquefier wall, wherein the gas region is located in a gap between the outer liquefier wall and an outer environment of the heat pump such that the gas region provides a thermal insulation property for the outer liquefier wall.

10. The method of manufacturing according to claim 9 , wherein producing comprises plastics injection molding to produce the liquefier space and a process water tank.

11. A heat pump, comprising:

a liquefier for a heat pump, comprising: a liquefier space comprising a working fluid space filled up to a filling level when liquefied working fluid is filled in, and capable of being filled with gaseous working fluid in a gas region above the filling level; a process water tank formed so that a content of the process water tank is separated from the liquefied working fluid in the working fluid space in terms of liquid, wherein the process water tank comprises a process water inflow for cold process water and a process water outflow for heated process water, wherein the process water tank is arranged at least partially in the working fluid space, and wherein the process water tank comprises a wall spaced from a wall of the working fluid space, wherein a gap formed so as to communicate with the gas region and hold at least partially gaseous working fluid in operation is acquired; and

an evaporator,

wherein the evaporator is arranged below the liquefier in a setup direction of the heat pump.

12. A method of manufacturing a liquefier for a heat pump with a liquefier space comprising a working fluid space, which is filled up to a filling level when liquefied working fluid is filled in, and which can be filled with gaseous working fluid above the filling level in a gas region, and a process water tank formed so that a content of the process water tank is separated from the liquefied working fluid in the working fluid space in terms of liquid, wherein the process water tank comprises a process water inflow for cold process water and a process outflow for heated process water, comprising:

producing the liquefier space and the process water tank so that the process water tank is arranged at least partially within the working fluid space,

wherein, in producing, a wall of the process water tank is manufactured such that it is spaced from a wall of the working fluid space, wherein a gap formed to communicate with the gas region and hold at least partially gaseous working fluid in operation is acquired.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY DATA PREVIOUSLY RECORDED AT REEL: 066154 FRAME: 0071. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 25, 2024
From: EFFICIENT ENERGY GMBH
To: VERTIV S.R.L.
Reel/Frame 066370/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2024
From: EFFICIENT ENERGY GMBH
To: VERTIV S.R.L.
Reel/Frame 066154/0071 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2015
From: SEDLAK, HOLGER; KNIFFLER, OLIVER
To: EFFICIENT ENERGY GMBH
Reel/Frame 035361/0527 →
Priority Claims (1)
DE 10 2008 016 663 · Apr 1, 2008 · national
Continuity (2)
Division 12935756
Related Publication 20150075214A1 · Mar 19, 2015