IP Library Granted Patent US 12,644,643
Granted Patent B2
US 12,644,643 · App. 18/926,014 · Granted Jun 2, 2026

Apparatus and systems for liquefaction of natural gas

Inventors: Alex Brigden (Vancouver, CA); Angus Remfry (Vancouver, CA); Glen Cunial (Vancouver, CA); Tom Boguslawski (Vancouver, CA)
Assignee: STEELHEAD LNG (ASLNG) LTD.
F25J1/0022B63B39/03F25J1/004F25J1/0278F25J1/0284F25J2220/64F25J2245/02
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Quick Facts
Patent No.
US 12,644,643
App. No.
18/926,014
Granted
Jun 2, 2026
Kind
B2
Abstract

Described herein are apparatuses and systems related to at-shore liquefaction of natural gas. The at-shore water-based apparatuses can include a hull, an air-cooled electrically-driven refrigeration system (“AER System”), and a plurality of liquefied natural gas (“LNG”) storage tanks that are on a lower deck of the hull. The AER System can be supported by a plurality of support structures extending through an upper deck of the hull.

Claims (29)

1 . An at-shore water-based apparatus for liquefaction of natural gas, the at-shore water-based apparatus configured to be moored at an at-shore location, the apparatus comprising:

a hull defining a bow, a stern, a port side, a starboard side, a centerline axis extending from the bow to the stern, and a mid-ship axis extending between the starboard side to the port side at a middle of the hull, and wherein the hull comprises a plurality of support structures extending through an upper deck of the hull;

an air-cooled electrically-driven refrigeration system (“AER System”) on the upper deck of the hull, the AER System comprising a first refrigeration train and a second refrigeration train, wherein a substantial portion of the first refrigeration train is aft of the mid-ship axis and a substantial portion of the second refrigeration train is forward of the mid-ship axis such that a weight of the first refrigeration train is balanced against a weight of the second refrigeration train about the mid-ship axis;

the first refrigeration train and the second refrigeration train each comprising one or more interconnected, electrically driven modules being supported by the plurality of support structures, the one or more interconnected, electrically driven modules comprising compressors, air coolers, and a cryogenic heat exchanger;

the AER System being operatively configured to (i) receive electricity and feed gas from an external source, the external source being separate from the at-shore water-based apparatus, (ii) perform a refrigeration process for converting the feed gas into a liquefied natural gas (“LNG”) with the received electricity using the compressors and the cryogenic heat exchanger operatively, (iii) discharge substantially all thermal energy from the refrigeration process to ambient air with the air coolers, and (iv) output the LNG; and

a plurality of LNG storage tanks that are on a lower deck of the hull operatively configured to input the LNG from the AER System, and operatively configured to output the LNG to an LNG transport vessel that is separate from the at-shore water-based apparatus.

2 . The apparatus of claim 1 , wherein the at-shore location comprises a jetty, a quayside, or a shoreline.

3 . The apparatus of claim 1 , wherein the at-shore location is selected from the group consisting of a jetty, a quayside, and a shoreline.

4 . The apparatus of claim 1 , wherein the at-shore location comprises a position proximate to a shoreline location.

5 . The apparatus of claim 1 , wherein the at-shore location is a position proximate to a shoreline location.

6 . The apparatus of claim 1 , wherein one of the port side or the starboard side of the at-shore water-based apparatus is moorable to a structure anchored or otherwise affixed or connected to the at-shore location.

7 . The apparatus of claim 1 , wherein one of the port side or the starboard side is engageable with a walkway structure.

8 . The apparatus of claim 1 , wherein the at-shore water-based apparatus does not include a primary power generation system on the at-shore water-based apparatus.

9 . The apparatus of claim 1 , wherein the plurality of LNG storage tanks is spaced apart in a single row along the centerline axis of the hull.

10 . The apparatus of claim 1 , wherein each of the LNG storage tanks has a storage volume and is spaced apart in a single row along the centerline axis of the hull such that the storage volume of each tank is approximately centered on the centerline axis.

11 . The apparatus of claim 1 , wherein a portion of the LNG is routed into the hull from the AER System through an opening extending through the upper deck and out of the hull from the plurality of LNG storage tanks through the opening.

12 . The apparatus of claim 11 , further comprising an IO port that is adjacent to the opening and operatively configured to:

receive the electricity and feed gas; and

output the LNG from the plurality of LNG storage tanks to the LNG transport vessel.

13 . The apparatus of claim 1 , wherein a top surface of each LNG storage tank is spaced apart from the upper deck to define a void space and the void space is sized and shaped to be capable of containing an amount of fluid having a weight that is approximately equal to a weight of the AER System.

14 . The apparatus of claim 1 , wherein each tank of the plurality of LNG storage tanks is a membrane tank.

15 . The apparatus of claim 1 , wherein each refrigeration train of the first refrigeration train and the second refrigeration train comprises a portion of the compressors and a portion of the air coolers; wherein the air coolers are operatively configured on or above the upper deck of the hull; and wherein the air coolers at least or only partially cover the first refrigeration train and the second refrigeration train.

16 . The apparatus of claim 1 , wherein the cryogenic heat exchanger comprises a separate cryogenic heat exchanger for each train of the first refrigeration train and the second refrigeration train.

17 . The apparatus of claim 1 , wherein the first refrigeration train is operatively configured to receive a first portion of the feed gas and output a first portion of the LNG; and the second refrigeration train is operatively configured to receive a second portion of the feed gas and output a second portion of the LNG, and wherein the first refrigeration train is independent of the second refrigeration train.

18 . The apparatus of claim 17 , wherein each of the first refrigeration train and the second refrigeration train comprises a pre-cooling heat exchanger, a warm-mixed refrigeration circuit, a cold-mixed refrigeration circuit, an expander, and an end flash vessel.

19 . The apparatus of claim 1 , further comprising:

a process deck located above the upper deck; and

a containment system that is located between the process deck and the upper deck and operatively configured to collect spills of cryogenic fluid, wherein the containment system comprises channels that are suspended from or formed integral with the process deck to collect the spills of cryogenic fluid.

20 . The apparatus of claim 1 , wherein the plurality of support structures are operatively configured to transfer the weight of the AER System, restrain relative movements between the AER System and the hull, and limit a transfer of vibrations from the AER System to the upper deck.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2026
From: STEELHEAD LNG CORP.
To: STEELHEAD LNG (SALISH) LTD.
Reel/Frame 074472/0414 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2026
From: STEELHEAD LNG (SALISH) LTD.
To: STEELHEAD LNG (ASLNG) LTD.
Reel/Frame 074472/0425 →
Continuity (3)
Continuation 18582449 · Feb 20, 2024
Continuation 17050253
Related Publication 20250052491A1 · Feb 13, 2025
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