IP Library Granted Patent US 11,549,496
Granted Patent B2
US 11,549,496 · App. 17/097,369 · Granted Jan 10, 2023

Reconfigurable multi-stage gas compressor

Inventors: William Elmer, Jr. (Tyler, TX); Will Nelle (San Angelo, TX)
Assignee: ESTIS COMPRESSION, LLC
F04B1/143F04B53/08F04B47/00
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Quick Facts
Patent No.
US 11,549,496
App. No.
17/097,369
Granted
Jan 10, 2023
Kind
B2
Abstract

Disclosed embodiments include a reconfigurable multi-stage gas compressor having a first-stage compression cylinder, a second-stage compression cylinder, and two stepped cylinders. Each of the stepped cylinders include first and second compression cylinders. The gas flow paths through the stepped cylinders are configured in a user-selectable configuration to be in series or in parallel so that the reconfigurable multi-stage gas compressor functions as one of: a three-stage compressor, as a four-stage compressor, and as a hybrid three/four stage compressor. In first and second configurations, the system generates four stages of compression and outputs 4-stage compressed gas through a single exit port, and through dual exit ports, respectively. In a third configuration, the system outputs hot and cooled 3-stage compressed gas through first and second ports and 4-stage compressed gas through a third port. In a fourth configuration, the system outputs hot and cooled 3-stage compressed gas with no 4-stage compressed gas.

Claims (29)

1. A reconfigurable multi-stage gas compressor system, comprising:

a first-stage compression cylinder;

a second-stage compression cylinder; and

two stepped cylinders, each stepped cylinder having first and second compression cylinders,

wherein the first-stage compression cylinder is configured to generate a first-stage compressed gas from an inlet gas, the second-stage cylinder is configured to generate a second-stage compressed gas from the first-stage compressed gas and to feed the second-stage compressed gas to the two stepped cylinders, wherein the two stepped cylinders are configured to further compress the second-stage compressed gas received from the second stage compression cylinder,

wherein gas flow paths through the stepped cylinders are configured in a user-selectable configuration to be in series or in parallel so that the reconfigurable multi-stage gas compressor functions as one of: a three-stage compressor, as a four-stage compressor, and as a hybrid three/four stage compressor

wherein in a configuration where the gas flow paths flow through the stepped cylinders in a series configuration:

respective first compression cylinders of the stepped cylinders are configured to generate a third-stage compressed gas from the second-stage compressed gas; and

respective second compression cylinders of the stepped cylinders are configured to generate a fourth-stage compressed gas from the third-stage compressed gas; and

first, second, and third coolers are configured to respectively cool the first-stage compressed gas, the second-stage compressed gas, and a first portion of the third-stage compressed gas; and

the fourth-stage compressed gas is configured to exit the system through a first discharge outlet,

the cooled first portion of third-stage compressed gas is configured to exit the system through a third discharge outlet, and

a second portion of uncooled third-stage compressed gas is configured to exit the system through a second discharge outlet.

2. The compressor of claim 1 , wherein the fourth-stage compressed gas is configured to exit the system through a single discharge outlet.

3. The compressor of claim 1 , wherein the fourth-stage compressed gas is configured to exit the system through dual discharge outlets.

4. The compressor of claim 1 , wherein the fourth-stage compressed gas is configured to exit the system through a first discharge outlet, and the third-stage compressed gas is configured to exit the system through a second discharge outlet.

5. The compressor of claim 1 , further comprising:

first, second, and third scrubbers configured to process the cooled first-stage compressed gas, the cooled second-stage compressed gas, and the cooled first portion of third-stage compressed gas.

6. A reconfigurable multi-stage gas compressor system, comprising:

a first-stage compression cylinder;

a second-stage compression cylinder; and

two stepped cylinders, each stepped cylinder having first and second compression cylinders,

wherein the first-stage compression cylinder is configured to generate a first-stage compressed gas from an inlet gas, the second-stage cylinder is configured to generate a second-stage compressed gas from the first-stage compressed gas and to feed the second-stage compressed gas to the two stepped cylinders, wherein the two stepped cylinders are configured to further compress the second-stage compressed gas received from the second stage compression cylinder,

wherein gas flow paths through the stepped cylinders are configured in a user-selectable configuration to be in series or in parallel so that the reconfigurable multi-stage gas compressor functions as one of: a three-stage compressor, as a four-stage compressor, and as a hybrid three/four stage compressor,

wherein in a configuration where the gas flow paths flow through the stepped cylinders in a parallel configuration,

respective first compression cylinders of the stepped cylinders are configured to generate a first portion of third-stage compressed gas from a first portion of the second-stage compressed gas;

respective second compression cylinders of the stepped cylinders are configured to generate a second portion of third-stage compressed gas from a second portion of the second-stage compressed gas; and

first, second, and third coolers that are configured to respectively cool the first-stage compressed gas, the second-stage compressed gas, and the first portion of the third-stage compressed gas,

wherein the first portion of cooled third-stage compressed gas is configured to exit the system through a first discharge outlet, and the second portion of uncooled third-stage compressed gas is configured to exit the system through a second discharge outlet.

Assignments (2)
SECURITY INTEREST Recorded Aug 23, 2024
From: ESTIS COMPRESSION, LLC; FLOWCO PRODUCTIONS LLC; PATRIOT ARTIFICIAL LIFT, LLC; INDTRIAL VALVE MANUFACTURING LLC DBA JMI MANUFACTURING; FLOGISTIX, LP
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 068762/0857 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2021
From: NELLE, WILL
To: ESTIS COMPRESSION, LLC
Reel/Frame 058433/0253 →
Cited By (1)
US 12,680,652