IP Library Granted Patent US 11,420,157
Granted Patent B2
US 11,420,157 · App. 15/611,208 · Granted Aug 23, 2022

Automated gas scrubber

Inventor: Eddie Edge (Midland, TX)
Assignee: KUSTOM KONCEPTS, INC.
B01D53/266B01D45/08B01D46/0031B01D2256/24
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Quick Facts
Patent No.
US 11,420,157
App. No.
15/611,208
Granted
Aug 23, 2022
Kind
B2
Abstract

An automated system for the separation of vapor and liquid from a gas and liquid combination entering a separation vessel. A programmable logic control unit module controls a valve and is programmed for periodic release of separated liquid collected within the vessel upon achieving various conditions within the vessel or upon expiration of a pre-established time interval, with separated liquid delivered via an outlet port through a valve controlled by the programmable logic control unit to a storage tank.

Claims (73)

1. An automated system for separating a liquid component from a gas component of a fluid made of gas and entrained liquid, comprising:

an enclosed vessel;

an inlet line disposed on, and below a vapor and liquid separator within the enclosed vessel, and in communication with the interior of the enclosed vessel through which a fluid containing gas made of entrained liquid may enter the enclosed vessel;

a liquid outlet line connected to a liquid level control valve through which the liquid component of the fluid may be discharged from the enclosed vessel, wherein the liquid outlet is located in a section of the enclosed vessel below the inlet line;

at least one process condition sensor capable of directly sensing a process condition, within the enclosed vessel, the process condition selected from a pressure, a liquid weight, a liquid volume, and a liquid level;

wherein the vapor and liquid separator within the enclosed vessel is configured to sealingly engage against the interior diameter of the enclosed vessel thereby forming a liquid barrier; and

wherein the liquid level control valve is controlled by a programmable logic controller programmed to cause the liquid level control valve to release the liquid component from the enclosed vessel based on achieving a predetermined value of the process condition sensed and independently based on achieving a predetermined time interval.

2. The automated system of claim 1 , wherein the vapor and liquid separator is selected from the group consisting of: a mesh, a screen, baffles, foam, a sponge, and a mist pad.

3. The automated system of claim 1 , wherein the liquid level control valve is a solenoid valve.

4. The automated system of claim 1 , wherein the programmable logic controller further comprises a program module on which the predetermined value of the process condition and the predetermined time interval are stored and used by the program module to send a signal to the liquid level control valve to open for release of the liquid component from the enclosed vessel.

5. The automated system of claim 1 , further comprising a power supply connected to a photovoltaic panel to provide power to the programmable logic controller, the process condition sensor, and the liquid level control valve.

6. The automated system of claim 1 , further comprising a gas supply line for delivery of the gas component from the enclosed vessel to a flare stack.

7. The automated system of claim 6 , further comprising a liquid supply line in communication with the liquid level control valve and a liquid storage tank.

8. The automated system of claim 1 , further comprising:

a flare stack in communication with the enclosed vessel having a gas pipeline connected to a flare for burning;

a first pipeline in communication with the enclosed vessel through which the gas is delivered from the enclosed vessel to the flare stack; and

a storage tank in communication with the liquid outlet line into which the separated liquid component is delivered.

9. The automated system of claim 1 , wherein the fluid is a hydrocarbon fluid from a well.

10. The automated system of claim 1 , wherein the enclosed vessel is a pressure vessel.

11. An automated system for disposing of water and vapor separated from a fluid made of vapor and entrained water, comprising:

an enclosed vessel having an upper side, a planar lower side;

an inlet line disposed, and below a vapor and liquid separator within the enclosed vessel, and in communication with the interior of the enclosed vessel through which a fluid made of vapor with entrained water, may enter the enclosed vessel;

a liquid outlet line in communication with the interior of the enclosed vessel and connected to a liquid level control valve through which the separated water may be released from the enclosed vessel, wherein the liquid outlet line and liquid level control valve are located in a section of the enclosed vessel below the inlet line;

at least one process condition sensor capable of directly sensing a process condition, within the enclosed vessel, the process condition selected from a pressure, a liquid weight, a liquid volume, and a liquid level;

wherein the vapor and liquid separator within the enclosed vessel is configured to sealingly engage against the interior diameter of the enclosed vessel thereby forming a liquid barrier; and

a liquid level control valve controlled by a programmable logic controller programmed to release separated water from the enclosed vessel, wherein the release of the separated water is based on achieving a predetermined value of a process condition within the enclosed vessel,

wherein the process condition is directly sensed by the process condition sensor and is selected from a vessel pressure that is not a differential pressure, a liquid weight, a liquid level, and a liquid volume,

and independently based on achieving a predetermined time interval.

12. The automated system of claim 11 , wherein the programmable logic controller further comprises a program module on which the predetermined value of the process condition and the predetermined time interval are stored and used by the program module to send a signal to the liquid level control valve to open for release of the liquid from the enclosed vessel.

13. The automated system of claim 11 , further comprising a power supply connected to a photovoltaic panel.

14. The automated system of claim 11 , further comprising a vapor and liquid separator within the enclosed vessel configured to sealingly engage against the interior diameter of the enclosed vessel thereby forming a liquid barrier and wherein the vapor and liquid separator is selected from the group consisting of: a mesh, a screen, baffles, foam, a sponge, and a mist pad.

15. The automated system of claim 11 , wherein the liquid level control valve is a solenoid valve.

16. The automated system of claim 11 , further comprising:

a flare stack in communication with the enclosed vessel having a vapor pipeline connected to a flare for burning;

a vapor pipeline in communication with the enclosed vessel through which the vapor is delivered from the enclosed vessel to the flare stack; and

a storage tank in communication with the liquid outlet line into which the separated water is delivered.

17. The automated system of claim 11 , wherein the enclosed vessel is a pressure vessel.

18. An automated system to separate liquid and vapor, from a fluid made of vapor and entrained liquid, comprising:

an enclosed vessel having an upper side and a planar lower side;

an inlet line, below a vapor and liquid separator within the enclosed vessel, and in communication with the interior of the enclosed vessel through which a fluid made of vapor and entrained liquid may enter the enclosed vessel;

a liquid outlet line in communication with an interior of the enclosed vessel through which the liquid may be discharged from the enclosed vessel via a liquid level control valve, wherein the liquid outlet line is located below the inlet line;

at least one process condition sensor capable of directly sensing a process condition, within the enclosed vessel, the process condition selected from a pressure, a liquid weight, a liquid volume, and a liquid level;

wherein the vapor and liquid separator within the enclosed vessel is configured to sealingly engage against the interior diameter of the enclosed vessel thereby forming a liquid barrier; and

a programmable logic controller adapted to control the liquid level control valve to release liquid from the enclosed vessel based on the directly sensed process condition and independently based on achieving a predetermined time interval.

19. The automated system of claim 18 , wherein the programmable logic controller further comprises a program module capable of being reprogrammed in the event of changing process conditions causing different criteria for discharge of liquid from the enclosed vessel.

20. The automated system of claim 18 , wherein the programmable logic controller program module is capable of being remotely programmed to control the opening or closing of the liquid level control valve.

21. The automated system of claim 18 , wherein the vapor and liquid separator is selected from the group consisting of: a mesh, a screen, baffles, foam, a sponge, and a mist pad.

22. The automated system of claim 18 , wherein the programmable logic controller further comprises a program module on which the predetermined value of the directly sensed process condition and predetermined time interval are stored and used by the program module to send a signal to the liquid level control valve to open for release of the liquid from the enclosed vessel.

23. The automated system of claim 18 , further comprising a power supply connected to a photovoltaic panel.

24. The automated system of claim 18 , further comprising:

a flare stack in communication with the enclosed vessel having a vapor pipeline connected to a flare for burning;

a vapor pipeline in communication with the enclosed vessel through which the vapor is delivered from the enclosed vessel to the flare stack; and

a storage tank in communication with the liquid outlet line into which the separated liquid is delivered.

25. The automated system of claim 18 , wherein the fluid is a hydrocarbon fluid from a well.

26. The automated system of claim 18 , wherein the enclosed vessel is a pressure vessel.

27. An automated system to process a hydrocarbon fluid from a well, made of gas and entrained liquid, by separating the gas component from the liquid component of the hydrocarbon fluid, comprising:

an enclosed vessel;

an inlet line, disposed on, and below a vapor and liquid separator within the enclosed vessel, and in communication with the interior of the enclosed vessel through which a hydrocarbon fluid may enter the enclosed vessel;

wherein the vapor and liquid separator within the enclosed vessel is configured to sealingly engage against the interior diameter of the enclosed vessel thereby forming a liquid barrier;

a liquid outlet line in communication with the interior of the enclosed vessel through which the liquid component that has been separated from the hydrocarbon fluid may be discharged through a liquid level control valve connected to the liquid outlet line;

at least one process condition sensor capable of directly sensing a process condition, within the enclosed vessel, the process condition selected from a pressure, a liquid weight, a liquid volume, and a liquid level; and

a programmable logic controller capable of being programmed and adapted to open and close the liquid level control valve, wherein the programmable logic controller receives an input signal corresponding to the directly sensed process condition generated from the process condition sensor and sends an output signal, based on a predetermined value of the process condition and independently based on achieving a predetermined time interval, to actuate the liquid level control valve.

28. The automated system of claim 27 , wherein the programmable logic controller further comprises a program module capable of being reprogrammed in the event of changing process conditions causing different criteria for discharge of liquid from the enclosed vessel.

29. The automated system of claim 27 , wherein the programmable logic controller program module is programmed to control the actuation of the liquid level control valve.

30. The automated system of claim 27 , wherein the vapor and liquid separator is selected from the group consisting of: a mesh, a screen, baffles, foam, a sponge, and a mist pad.

31. The automated system of claim 27 , wherein the liquid level control valve is a solenoid valve.

32. The automated system of claim 27 , wherein the programmable logic controller further comprises a program module on which the predetermined value of the process condition and predetermined time interval are stored and used by the program module to send a signal to the liquid level control valve to open for release of the liquid from the enclosed vessel.

33. The automated system of claim 27 , further comprising:

a flare stack in communication with the enclosed vessel having a gas pipeline connected to a flare for burning;

a vapor pipeline in communication with the enclosed vessel through which the gas is delivered from the enclosed vessel to the flare stack; and

a storage tank in communication with the liquid outlet line into which the separated liquid is delivered.

34. The automated system of claim 27 , further comprising a power supply connected to a photovoltaic panel.

35. The automated system of claim 27 , wherein the enclosed vessel is a pressure vessel.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2021
From: TRI-POINT OIL & PRODUCTION SYSTEMS, LLC
To: KUSTOM KONCEPTS, INC.
Reel/Frame 057731/0008 →
PATENT SECURITY AGREEMENT Recorded Feb 14, 2020
From: TRI-POINT OIL & GAS PRODUCTION SYSTEMS, LLC
To: FR XIII CHARLIE AIV, L.P.
Reel/Frame 051935/0562 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2017
From: EDGE, EDDY
To: EDGE MANUFACTURING & TECHNOLOGY
Reel/Frame 043005/0115 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2017
From: EDGE MANUFACTURING & TECHNOLOGY
To: TRI-POINT OIL & GAS PRODUCTION SYSTEMS, LLC
Reel/Frame 043005/0172 →
Continuity (2)
Provisional Application 62344103 · Jun 1, 2016
Related Publication 20170348635A1 · Dec 7, 2017