IP Library Granted Patent US 12704223
Granted Patent B2
US 12704223 · App. 18/833,788 · Granted Aug 11, 2026

Installation and method for storing liquefied gas

Inventors: Cecile Gondrand (Sassenage, FR); Fabien Durand (Sassenage, FR)
Assignee: L'Air Liquide, Societe Anonyme Pour l'Etude et l'Exploitation des Procedes Georges Claude
F17C1/002F17C2205/0142F17C2205/0326F17C2221/033F17C2223/0161F17C2227/0157F17C2227/0355F17C2250/043F17C2250/0439F17C2265/03F17C2270/0105
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Quick Facts
Patent No.
US 12704223
App. No.
18/833,788
Granted
Aug 11, 2026
Kind
B2
Abstract

An installation and method for storing liquefied gas, comprising a plurality of separate storage tanks each configured to contain liquefied gas, comprising a cooling circuit provided with a refrigeration device, a withdrawal pipe and a plurality of first injection pipes towards each of the tanks in order to cool the withdrawn fluid flow, the tanks comprising a degassing line, the installation comprising a set of controlled valves situated at least in the cooling circuit, wherein the first tank contains liquid and at least one other tank is empty, containing essentially boil-off gas, that is to say containing little or no liquid, wherein there is cooling of the fluid contained in the first tank, re-injection into the first tank, injection of liquid cooled by the refrigeration device into at least one other empty tank and transfer of boil-off gas generated in the or the other tanks to the first tank.

Claims (28)

1 . A storage installation for liquefied gas liquefied natural gas, in particular on board a ship, the installation comprising:

a plurality of storage tanks each designed to contain the liquefied gas, each storage tank comprising a lower portion configured to contain the liquefied gas in a liquid state, and an upper portion configured to contain vapors from the liquefied gas, wherein the plurality of storage tanks comprises a first storage tank, wherein each of the plurality of storage tanks further comprises a degassing line comprising a first end connected to the upper portion of the respective tank and a second end connected to at least one recovery zone, wherein the degassing line of each storage tank, other than the degassing line of the first storage tank, comprises a third end connected to the upper portion of the first storage tank;

a cooling circuit provided with a refrigeration device, the cooling circuit comprising a withdrawal line comprising a first end opening into the lower portion of the first storage tank and a second end connected to an inlet of the refrigeration device, the refrigeration device being configured to cool a fluid flow circulating between the inlet and an outlet of the refrigeration device, the cooling circuit comprising a plurality of first injection lines connecting the outlet of the refrigeration device to each of the plurality of storage tanks respectively,

a set of control valves located at least in the cooling circuit; and

an electronic control member in communication with said control valves, the electronic control member being configured to command an opening and closing of the control valves, wherein the electronic control member comprises a processor and memory coupled to the processor, the memory storing instructions that, when executed by the processor, cause the processor to perform operations comprising:

cooling the fluid contained in the first storage tank via the cooling circuit by drawing liquid from the first storage tank;

cooling said drawn liquid in the refrigeration device to form a cooled liquid;

splitting the cooled liquid into a first stream and a second stream;

reinjecting the first stream into the first storage tank;

identifying an empty storage tank from the plurality of storage tanks; and

injecting the second stream into the identified empty storage tank via the plurality of first injection lines and transferring the boil-off gas generated in the identified empty storage tank to the first storage tank via the third end or ends of the degassing line.

2 . The installation as claimed in claim 1 , wherein each of the first injection lines comprises a first end connected to the outlet of the refrigeration device and a second end opening into an upper portion a respective storage tank.

3 . The installation as claimed in claim 1 , wherein the cooling circuit comprises a second injection line connecting the outlet of the refrigeration device to the lower portion of the first storage tank.

4 . The installation as claimed in claim 3 , wherein the control member is configured to command the opening and closing of the set of control valves to cool the fluid contained in the first storage tank by reinjecting the cooled liquid via the first injection line and/or the second injection line.

5 . The installation as claimed in claim 4 , further comprising a set of pressure sensors in the plurality of storage tanks, the control member being configured to command the opening and closing of the valves to distribute the cooled liquid flow reinjected into the first storage tank between the first injection line and the second injection line as a function of the pressure level measured by the set of pressure sensors.

6 . The installation as claimed in claim 1 , further comprising a set of temperature sensors for the fluid in the plurality of storage tanks, the control member being configured to command the opening and closing of the control valves as a function of the temperature level measured by the set of temperature sensors.

7 . A method for cooling the plurality of storage tanks in the installation as claimed in claim 1 , the method comprising the steps of:

providing the installation as claimed in claim 1 ;

cooling the fluid contained in the first storage tank via the cooling circuit by drawing liquid from the first storage tank, cooling this liquid in the refrigeration device and reinjecting this liquid into the first storage tank;

identifying an empty storage tank from the plurality of storage tanks;

injecting liquid cooled in the refrigeration device into the identified empty tank; and

transferring boil-off gas generated in the identified empty storage tank into the first storage tank.

8 . The method as claimed in claim 7 , wherein, during the cooling step, the fluid contained in the first storage tank is cooled to a temperature equal to or less than a saturation temperature of the fluid at a pressure in the tank.

9 . The method as claimed in claim 7 , wherein the step of transferring boil-off gas to the first storage tank is carried out at least by one of pressure balancing and a compressor.

10 . The method as claimed in claim 7 , wherein the step of injecting liquid cooled in the refrigeration device into the identified empty tank and the step of transferring boil-off gas generated in the identified empty storage tank into the first storage tank are carried out at least partially simultaneously.

11 . The method as claimed in claim 7 , wherein the step of injecting cooled liquid into at least one other empty tank is carried out until the fluid in the other tank or tanks reaches a given temperature a temperature that may be as low as a temperature equal to or less than the saturation temperature of the fluid at the pressure in the tank.

12 . The method as claimed in claim 7 , further comprising, following the step of injecting cooled liquid into the identified empty tank, a step of filling at least one of the other storage tanks with the cooled liquid.

13 . The method as claimed in claim 7 , wherein the fluid is liquefied natural gas.