IP Library › Granted Patent US 12,209,580
Granted Patent B2
US 12,209,580 · App. 18/427,358 · Granted Jan 28, 2025

Greenhouse gas reduction with externally pressurized gas seal and gas lubrication for a reciprocating compressor

Inventor: David Thomas Stiles (Austin, TX)
F04B39/0022F04B39/0094F04B39/121
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Quick Facts
Patent No.
US 12,209,580
App. No.
18/427,358
Granted
Jan 28, 2025
Kind
B2
Abstract

Externally pressurized gas is used to provide a gas seal and gas lubrication for a piston rod packing unit of a reciprocating compressor. The externally pressurized gas can also be used to provide gas lubrication for the cylinder via flow of the externally pressurized gas through the piston of the reciprocating compressor. The gas seal and gas lubrication can reduce or eliminate greenhouse gas emissions from a reciprocating compressor used to compress natural gas.

Claims (50)

1. A process comprising:

receiving, by a reciprocating compressor, a process gas having a process pressure;

compressing, by the reciprocating compressor, the process gas to form a compressed gas having a compression pressure, wherein the compression pressure is greater than the process pressure; and

injecting a secondary gas into a first ring of a plurality of packing rings of a piston rod packing unit of the reciprocating compressor at a first injection pressure that is greater than the compression pressure,

wherein each of the plurality of packing rings comprises a porous media that surrounds an outer wall of a piston rod of the reciprocating compressor, wherein the secondary gas passes through the porous media of the first ring, to form a first gas interface between the outer wall of the piston rod and the first ring of the plurality of packing rings.

2. The process of claim 1 , wherein the first gas interface lubricates the first ring of the plurality of packing rings during compressing.

3. The process of claim 2 , wherein the first gas interface provides a first gas seal that prevents the process gas, the compressed gas, or both the process gas and the compressed gas from leaking from a crank side of the piston rod packing unit.

4. The process of claim 1 , wherein the first ring is positioned next to a crank side of the piston rod packing unit.

5. The process of claim 1 , further comprising:

injecting a process compatible gas into a second ring of the plurality of packing rings of the piston rod packing unit of the reciprocating compressor at the first injection pressure or at a second injection pressure that is greater than the compression pressure.

6. The process of claim 5 , wherein the process compatible gas passes through the porous media of the second ring of the plurality of packing rings, to form a second gas interface between the outer wall of the piston rod and the second ring of the plurality of packing rings.

7. The process of claim 6 , wherein the second gas interface lubricates the second ring of the plurality of packing rings during compressing.

8. The process of claim 7 , wherein the second gas interface provides a second gas seal that prevents the process gas, the compressed gas, or both the process gas and the compressed gas from leaking from a crank side of the piston rod packing unit.

9. The process of claim 5 , further comprising:

injecting the process compatible gas into a third ring of the plurality of packing rings of the piston rod packing unit of the reciprocating compressor at the first injection pressure or at the second injection pressure.

10. The process of claim 9 , wherein the process compatible gas passes the porous media of the third ring of the plurality of packing rings, to form a third gas interface between the outer wall of the piston rod and the second ring of the plurality of packing rings.

11. The process of claim 10 , wherein the third gas interface lubricates the third ring of the plurality of packing rings during compressing.

12. The process of claim 11 , wherein the third gas interface provides a third gas seal that prevents the process gas, the compressed gas, or both the process gas and the compressed gas from entering a piston side of the piston rod packing unit.

13. The process of claim 5 , further comprising:

flowing a portion of the process compatible gas into a channel formed in the piston rod of a piston of the reciprocating compressor;

flowing the portion of the process compatible gas from the channel and into one or more gas distribution channels of a piston assembly of the piston; and

forming a third gas interface between a cylinder of the reciprocating compressor and the piston assembly.

14. The process of claim 13 , wherein the third gas interface lubricates the cylinder during compressing.

15. The process of claim 5 , further comprising:

flowing the process compatible gas from a later-stage reciprocating compressor to the piston rod packing unit, wherein the first injection pressure or the second injection pressure of the process compatible gas is equal to a discharge pressure of the later-stage reciprocating compressor.

16. The process of claim 1 , further comprising:

flowing a portion of the secondary gas from the piston rod packing unit into a channel formed in the piston rod of a piston of the reciprocating compressor;

flowing the portion of the secondary gas from the channel and into one or more gas distribution channels of a piston assembly of the piston;

flowing the portion of the secondary gas from the one or more gas distribution channels through the porous media of the piston assembly; and

forming a second gas interface between a cylinder of the reciprocating compressor and the porous media of the piston assembly.

17. The process of claim 16 , wherein the second gas interface lubricates the cylinder during compressing.

18. The process of claim 1 , wherein the secondary gas comprises nitrogen, argon, or a combination thereof.

19. A reciprocating compressor comprising:

a prime mover;

a crank shaft coupled to the prime mover, wherein the prime mover is configured to turn the crank shaft;

a connecting rod having an end coupled to the crank shaft;

a crosshead coupled to an opposite end of the connecting rod;

a piston comprising a piston assembly and a piston rod, the piston rod having an end coupled to the crosshead;

a cylinder having an interior configured for a longitudinal movement of the piston assembly therein;

a process gas inlet fluidly connected to the interior of the cylinder and a compressed gas outlet fluidly connected to the interior of the cylinder; and

a piston rod packing unit comprising:

a rod packing case having a gas inlet port formed therein;

a compression sleeve placed within the rod packing case, wherein an outer wall of the compression sleeve contacts an inner wall of the rod packing case;

a plurality of packing rings placed within the compression sleeve, wherein each of the plurality of packing rings comprises a porous media that surrounds an outer wall of the piston rod;

wherein the gas inlet port fluidly connects with the porous media of at least one of the plurality of packing rings;

wherein the piston rod packing unit receives an externally pressurized secondary gas via the gas inlet port to provide a gas seal between i) one or more of the plurality of packing rings and ii) the piston rod, wherein the gas seal prevents or reduces process gas and compressed gas in the interior of the cylinder from leaking from the piston rod packing unit into a hollow interior of a housing of the reciprocating compressor, while allowing a reciprocating movement of the piston rod in the piston rod packing unit.

20. A piston rod packing unit for a reciprocating compressor, comprising:

a rod packing case having a gas inlet port formed therein; and

a plurality of packing rings placed within the rod packing case, wherein each of the plurality of packing rings comprises a porous media configured to surround an outer wall of a piston rod;

wherein the gas inlet port fluidly connects with the porous media of at least one of the plurality of packing rings.

Assignments (2)
BILL OF SALE Recorded Jul 31, 2026
From: E3 COMPRESSION HOLDINGS LLC; AXIP ENERGY SERVICES, LP; AXIP ENERGY SERVICES MANAGEMENT, LLC; AXIP GAS SOLUTIONS GP, LLC; AXIP GAS SOLUTIONS PARTNERS, LP; AXIP MLP HOLDINGS, LLC; AXIP PRODUCER SERVICES, LLC; AXIP PRODUCER SERVICES - MARCELLUS I, LLC; AXIP HOLDINGS, LLC; AXIP LEASING COMPANY, LLC; AXIP LEASING COMPANY II, LLC; AXIP INTERNATIONAL, LLC
To: E4 ENERGY SERVICES, LLC
Reel/Frame 076117/0672 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 3, 2024
From: STILES, DAVID THOMAS
To: AXIP ENERGY SERVICES, LP
Reel/Frame 066990/0059 →
Continuity (2)
Provisional Application 63482205 · Jan 30, 2023
Related Publication 20240254981A1 · Aug 1, 2024
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