IP Library Granted Patent US 12,228,020
Granted Patent B2
US 12,228,020 · App. 18/531,122 · Granted Feb 18, 2025

Devices, systems, and methods for gas lift gas

Inventor: Billy Joe Ellis, Jr. (Granbury, TX)
Assignee: Liftrock, LLC
E21B43/122E21B43/40
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Quick Facts
Patent No.
US 12,228,020
App. No.
18/531,122
Granted
Feb 18, 2025
Kind
B2
Abstract

Devices, systems, and methods are disclosed concerning gas lift gas recovery. A gas lift gas recovery system can include an inlet separator system, charge system, and sump system for facilitating recovery of gas lift gas. The inlet separator system can be configured to receive production fluid for separation of liquids therefrom to recover gas lift gas. The charge system can include a high pressure (HP) leg for holding an HP portion of fluid and a low pressure (LP) leg for holding an LP portion of fluid. The sump system can be configured for holding liquids from at least one of the inlet separator system and the charge system.

Claims (45)

1. A gas lift gas recovery system comprising:

an inlet separator system configured to receive production fluid for separation of liquids therefrom to recover gas lift gas, the inlet separator system comprising at least one separator vessel for separation of liquids from gas, the at least one separator vessel including a production inlet to receive production fluid from a well, a gas lift gas outlet for connection with a gas lift gas compressor system, and a liquid outlet;

a charge system including a high pressure (HP) leg for holding an HP portion of fluid and a low pressure (LP) leg for holding an LP portion of fluid, a liquid inlet for selective communication with the liquid outlet of the inlet separator to receive liquids; and

a sump system for holding liquids from at least one of the inlet separator system and the charge system, the sump system comprising a sump vessel arranged for selective communication with the charge system via a vapor line to transfer vaporous release to the charge system; and

a control system for operation to conduct selective communication of fluids, wherein the control system is configured to selectively communicate the sump system with at least one of the inlet separator system and the charge system to transfer liquids to the sump system.

2. The gas lift gas recovery system of claim 1 , wherein the control system includes a charge gas valve for communicating pressurized charge gas to the sump system and a sump outlet valve for purging liquids from the sump system, wherein the control system is configured to open the sump outlet valve and the charge gas valve in response to a threshold sump fluid level within the sump vessel to purge liquids from the sump vessel.

3. The gas lift gas recovery system of claim 1 , wherein the control system includes a sump vapor control valve operable between a closed position to block against communication of vaporous release to the charge system and an open position to fluidly communicate the sump system with the charge system to transfer vaporous fluids to the charge system.

4. The gas lift gas recovery system of claim 3 , wherein the control system is configured to close the sump vapor control valve in response to sump purging operations.

5. The gas lift gas recovery system of claim 3 , wherein the control system is configured to close one or more valves arranged for selective communication of liquid to the sump system in response to the sump purging operations.

6. The gas lift gas recovery system of claim 1 , wherein the sump system is arranged to receive selective communication of liquid from at least one of a fuel gas scrubber system, a suction scrubber, a first interstage scrubber, and a drain of a gas lift gas compressor system.

7. The gas lift gas recovery system of claim 6 , wherein the liquid from the at least one of a fuel gas scrubber system, a suction scrubber, a first interstage scrubber, and a drain of a gas lift gas compressor system is an LP liquid for selective communication to the sump system via a valve of the control system.

8. The gas lift gas recovery system of claim 1 , wherein the charge system is arranged to receive selective communication of liquid from at least one of a second interstage scrubber and a third interstage scrubber.

9. The gas lift gas recovery system of claim 8 , wherein the liquid from the at least one of a second interstage scrubber and a third interstage scrubber is an HP liquid for selective communication to the HP leg of the charge system.

10. The gas lift gas recovery system of claim 9 , wherein the liquid from the at least one of a second interstage scrubber and a third interstage scrubber is arranged for selective communication from the HP leg of the charge system to the sump system via an HP sump valve of the control system.

11. The gas lift gas recovery system of claim 1 , wherein the inlet separator system is arranged in selective communication with the sump system to provide liquids via a separator sump valve of the control system.

12. The gas lift gas recovery system of claim 11 , wherein the inlet separator system is arranged in selective communication with the charge system, and the control system is configured to selectively communicate liquids from the inlet separator system to the charge system in response to threshold liquid level within the inlet separator system during dump cycle operation of the sump system for purging liquids from the sump vessel.

13. The gas lift gas recovery system of claim 1 , wherein the gas lift gas recovery system is skid mounted.

14. The gas lift gas recovery system of claim 1 , further comprising a methane recovery system for recovering hydrocarbon gas.

15. The gas lift gas recovery system of claim 14 , wherein the methane recovery system includes a methane recovery compressor for increasing pressure of recovered gas.

16. The gas lift gas recovery system of claim 15 , wherein pressurized gas from the methane recovery compressor is provided to the inlet separator for combination with recovered gas lift gas.

17. The gas lift gas recovery system of claim 14 , wherein the methane recovery system includes a cooling system, the cooling system comprising a heat transfer fluid circulating in thermal communication to remove heat from the methane recovery system and provide recovered heat to the sump system.

18. The gas lift gas recovery system of claim 17 , wherein the sump system includes a heat exchanger arranged to provide thermal communication between the heat transfer fluid and the sump vessel to provide heat to the liquids within the sump vessel for encouraging vaporization.

19. The gas lift gas recovery system of claim 1 , wherein the control system is configured to selectively communicate the sump system with the inlet separator system to transfer liquids to the sump system in response to threshold liquid level within the at least one of the inlet separator system.

20. The gas lift gas recovery system of claim 19 , wherein, during sump purging operation, the control system is configured to divert fluids from the inlet separator system to the LP leg in response to threshold liquid level within the inlet separator system during sump purging operations.

21. The gas lift gas recovery system of claim 20 , wherein the control system is configured to maintain communication of liquid from the LP leg to the sump system outside of sump purging operations.

22. The gas lift gas recovery system of claim 1 , wherein the control system is configured to selectively communicate the sump system with the HP leg of the charge system to transfer liquids to the sump system in response to threshold liquid level within the HP leg.

23. A gas lift gas recovery system comprising:

an inlet separator system configured to receive production fluid for separation of liquids therefrom to recover gas lift gas, the inlet separator system comprising at least one separator vessel for receiving production fluid from a well and separating liquids from gas within the production fluid;

a charge system including a high pressure (HP) leg for holding an HP portion of fluid and a low pressure (LP) leg for holding an LP portion of fluid, a liquid inlet for selective communication with the inlet separator system to receive liquids; and

a sump system for holding liquids from at least one of the inlet separator system and the charge system, the sump system comprising a sump vessel arranged for selective communication with the charge system to transfer vaporous release to the charge system;

a control system for operation to conduct selective communication of fluids, wherein the control system is configured to selectively communicate the sump system with at least one of the inlet separator system and the charge system to transfer liquids to the sump system; and

a methane recovery system for recovering methane from at least one of the sump system and the charge system.

24. The gas lift gas recovery system of claim 23 , wherein the methane recovery system includes a methane recovery compressor for increasing pressure of recovered gas.

25. The gas lift gas recovery system of claim 24 , wherein pressurized gas from the methane recovery compressor is provided to the inlet separator for combination with recovered gas lift gas.

26. The gas lift gas recovery system of claim 23 , wherein the gas lift gas recovery system includes a skid on which at least the inlet separator system, the charge system, and the sump system are mounted.

27. The gas lift gas recovery system of claim 26 , wherein the methane recovery system is mounted on the skid.

28. The gas lift gas recovery system of claim 26 , wherein the control system is mounted on the skid.

29. A gas lift gas preparation system comprising:

a gas lift gas recovery system for recovering gas lift gas from well production fluid, the gas lift gas recovery system comprising:

an inlet separator system configured to receive production fluid for separation of liquids therefrom to recover gas lift gas, the inlet separator system comprising at least one separator vessel for receiving production fluid from a well and separating liquids from gas within the production fluid;

a charge system including a high pressure (HP) leg for holding an HP portion of fluid and a low pressure (LP) leg for holding an LP portion of fluid, a liquid inlet for selective communication with the inlet separator system to receive liquids;

a sump system for holding liquids from at least one of the inlet separator system and the charge system, the sump system comprising a sump vessel arranged for selective communication with the charge system to transfer vaporous release to the charge system; and

a control system for operation to conduct selective communication of fluids, wherein the control system is configured to selectively communicate the sump system with at least one of the inlet separator system and the charge system to transfer liquids to the sump system;

and

a gas compression system for compression of recovered gas lift gas from the inlet separator system, the gas compression system including at least one compressor arranged for communication with the inlet separator system to receive recovered gas lift gas, and in communication to provide compressed gas lift gas for gas lift.

Assignments (3)
SECURITY INTEREST Recorded Aug 7, 2026
From: FLATROCK COMPRESSION LLC; LIFTROCK LLC
To: TEXAS CAPITAL BANK, AS ADMINISTRATIVE AGENT
Reel/Frame 075578/0377 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2025
From: ELLIS, BILLY JOE, JR.
To: LIFTROCK, LLC
Reel/Frame 069957/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2024
From: ELLIS, BILLY JOE, JR.
To: LIFTROCK, LLC
Reel/Frame 069005/0769 →
Continuity (2)
Provisional Application 63431493 · Dec 9, 2022
Related Publication 20240191606A1 · Jun 13, 2024
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