IP Library › Granted Patent US 12,535,061
Granted Patent B2
US 12,535,061 · App. 18/209,729 · Granted Jan 27, 2026

Pump arrangement for providing a saturated liquid

Inventors: Armin Isselhorst (Blagnac, FR); Kei Philipp Behruzi (Blagnac, FR); Peter Friese (Hamburg, DE)
Assignees: Airbus Operations GmbH; Airbus S.A.S.
F04B15/08F02M59/38H01M8/04007F04B2015/0822H01M2250/20
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Quick Facts
Patent No.
US 12,535,061
App. No.
18/209,729
Granted
Jan 27, 2026
Kind
B2
Abstract

A pump arrangement for providing a saturated or subcooled liquid includes a tank for saturated liquid, a heat exchanger for cooling the saturated liquid, a pump, an expansion valve, and an output for feeding saturated or subcooled liquid to a consumer. A tank outlet is in fluid communication with a liquid inlet of the heat exchanger, such that saturated liquid stored inside the tank can flow into the heat exchanger designed to sub-cool the saturated liquid. A liquid outlet of the heat exchanger is in fluid communication with a pump inlet. The expansion valve outlet is in fluid communication with a coolant inlet of the heat exchanger. An expansion valve inlet is arranged for receiving and expanding a fraction of liquid flowing through the pump arrangement and routing it into the coolant input to at least partially evaporate and receive evaporation enthalpy of the liquid to be subcooled.

Claims (42)

1 . A pump arrangement for providing a saturated or subcooled liquid, comprising:

a tank for saturated liquid having a tank outlet;

a heat exchanger for cooling the saturated liquid, the heat exchanger having a liquid inlet, a liquid outlet, a coolant inlet and a coolant outlet;

a pump having a pump inlet and a pump outlet;

an expansion valve having an expansion valve inlet and an expansion valve outlet; and

a pump arrangement output downstream the pump outlet for feeding saturated or subcooled liquid to a consumer,

wherein the tank outlet is in fluid communication with the liquid inlet of the heat exchanger, such that saturated liquid stored inside the tank is able to flow into the heat exchanger,

wherein the heat exchanger is configured to sub-cool the saturated liquid,

wherein the liquid outlet of the heat exchanger is in fluid communication with the pump inlet,

wherein the expansion valve outlet is in fluid communication with the coolant inlet of the heat exchanger, and

wherein the expansion valve inlet is arranged downstream the liquid outlet of the heat exchanger or the tank for receiving and expanding a fraction of liquid flowing through the pump arrangement and routing the liquid into the coolant inlet to evaporate at reduced saturation temperature at least partially and receive evaporation enthalpy of the liquid to be sub-cooled.

2 . The pump arrangement according to claim 1 ,

further comprising a compressor coupled with the coolant outlet.

3 . The pump arrangement according to claim 1 ,

wherein the expansion valve is connected to a fluid line downstream the pump and upstream the coolant inlet.

4 . The pump arrangement according to claim 1 ,

wherein the expansion valve is connected to a fluid line upstream the pump and upstream the coolant inlet.

5 . The pump arrangement according to claim 2 ,

wherein the compressor is connected to a tank inlet.

6 . The pump arrangement according to claim 2 ,

wherein the compressor or coolant outlet is in fluid communication with the environment.

7 . The pump arrangement according to claim 1 ,

wherein the pump arrangement further comprises a jet pump having a primary inlet, a secondary inlet and a jet pump outlet,

wherein the expansion valve is arranged downstream of the liquid outlet of the heat exchanger,

wherein the pump is coupled with the primary inlet, and

wherein the coolant outlet is coupled with the secondary inlet.

8 . The pump arrangement according to claim 7 ,

wherein the jet pump outlet is coupled with a tank inlet.

9 . The pump arrangement according to claim 8 ,

wherein the pump arrangement output is downstream the pump and upstream the primary inlet of the jet pump.

10 . The pump arrangement according to claim 7 ,

wherein the pump arrangement output is connected to the jet pump outlet.

11 . The pump arrangement according to claim 1 ,

wherein the expansion valve has a variable cross-section for controlling the fraction of saturated liquid flowing through the expansion valve.

12 . A method for providing a saturated or subcooled liquid, comprising:

feeding the saturated or subcooled liquid from a tank through a tank outlet to a liquid inlet of a heat exchanger to sub-cool the liquid;

feeding a fraction of the sub-cooled liquid or the saturated or subcooled liquid from the tank to an expansion valve inlet of an expansion valve to evaporate the liquid at reduced saturation temperature relative to the saturation temperature in the tank at least partially, and feed the liquid to a coolant inlet of the heat exchanger for receiving evaporation enthalpy from the liquid flowing into the liquid inlet to substantially evaporate completely feeding the sub-cooled liquid from a liquid outlet of the heat exchanger to a pump inlet of a pump; and

pumping the sub-cooled liquid to a pump arrangement output downstream the pump outlet for feeding saturated liquid to a consumer.

13 . The method according to claim 12 , further comprising:

feeding the evaporated liquid into a tank inlet of the tank for increasing the pressure inside the tank.

14 . A vehicle, comprising at least one pump arrangement according to claim 1 , and at least one consumer coupled with the pump arrangement output of the at least one pump arrangement.

15 . The vehicle according to claim 14 , wherein the vehicle is an aircraft and wherein the at least one consumer comprises a fuel cell and/or a device for conducting a combustion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2023
From: ISSELHORST, ARMIN; BEHRUZI, KEI PHILIPP; FRIESE, PETER
To: AIRBUS OPERATIONS GMBH; AIRBUS S.A.S.
Reel/Frame 064292/0135 →
Priority Claims (1)
EP 22181308 · Jun 27, 2022 · regional
Continuity (1)
Related Publication 20230417230A1 · Dec 28, 2023
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