IP Library Patent Application 15169141
Patent Application
App. No. 15/169,141

METHODS AND SYSTEM FOR ENHANCING FLOW OF A GAS LIFTED WELL

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Quick Facts
Patent No.
US None
App. No.
15/169,141
Abstract

A system for enhancing a flow of a fluid induced by a gas lift system includes one or more sensors and a gas lift control unit configured to control the flow of the fluid induced by the gas lift system. The gas lift control unit is configured to: (a) receiving signals representing measured data from the one or more sensors, (b) calculating a desired gas injection rate and its associated flow of fluid based, at least in part, on the measured data, (c) regulating at least one operating characteristic of a compressor associated with the gas lift system based, at least in part, on the desired gas injection rate, (d) receiving measured data representing production data, and (e) determining a subsequent adjustment based on a comparison of the desired flow of fluid and the production data.

Claims (37)

1 . A system for enhancing a flow of a fluid induced by a gas lift system, said system comprising:

one or more sensors configured to monitor one or more conditions of the gas lift system and generate signals representing measured data based on the one or more conditions; and

a gas lift control unit comprising a processor and a memory coupled to said processor, said gas lift control unit in communication with said one or more sensors, said gas lift control unit configured to control the flow of the fluid induced by the gas lift system by:

(a) receiving signals representing measured data from the one or more sensors;

(b) calculating a desired gas injection rate and its associated flow of fluid based, at least in part, on the measured data;

(c) regulating at least one operating characteristic of a compressor associated with the gas lift system based, at least in part, on the desired gas injection rate;

(d) receiving measured data representing production data; and

(e) determining a subsequent adjustment based on a comparison of the desired flow of fluid and the production data.

2 . The system in accordance with claim 1 , wherein said gas lift control unit is further configured to regulate a gas injection control valve based on the comparison.

3 . The system in accordance with claim 1 , wherein said gas lift control unit is further configured to regulate a compressor suction control valve associated with the compressor based on the comparison.

4 . The system in accordance with claim 1 , wherein said gas lift control unit is further configured to regulate a compressor recycle control valve associated with the compressor based on the comparison.

5 . The system in accordance with claim 1 , wherein the at least one operating characteristic of the compressor includes a speed of the compressor.

6 . The system in accordance with claim 1 , wherein the one or more sensors include at least one of a flow tubing pressure sensor, an oil production meter, a water production meter, a gas production meter, a multi-phase production meter, a buy back meter, a gas injection meter, an injection pressure meter, and an injection temperature sensor.

7 . The system in accordance with claim 1 , wherein the one or more sensors include at least one of a down hole pressure meter and a down hole temperature sensor.

8 . A computer-based method for controlling a flow of a fluid induced by a gas lift system, said method implemented using a gas lift control unit including at least one processor in communication with a memory, said method comprising:

(a) receiving signals representing measured data from one or more sensors, wherein the one or more sensors are configured to monitor one or more conditions of the gas lift system and generate signals representing measured data based on the one or more conditions;

(b) calculating a desired flow of fluid based, at least in part, on the measured data;

(c) regulating at least one operating characteristic of a compressor associated with the gas lift system based, at least in part, on the desired gas injection rate;

(d) receive measured data representing production data; and

(e) determining a subsequent adjustment based on a comparison of the desired flow of fluid and the production data.

9 . The method in accordance with claim 8 further comprising regulating a gas injection control valve based on the comparison.

10 . The method in accordance with claim 8 further comprising regulating a compressor suction control valve associated with the compressor based on the comparison.

11 . The method in accordance with claim 8 further comprising regulating a compressor recycle control valve associated with the compressor based on the comparison.

12 . The method in accordance with claim 8 , wherein the at least one operating characteristic of the compressor includes a speed of the compressor.

13 . The method in accordance with claim 8 , wherein receiving signals representing measured data further comprises receiving signals from one or more of a flow tubing pressure sensor, an oil production meter, a water production meter, a gas production meter, a multi-phase production meter, a buy back meter, a gas injection meter, an injection pressure meter, and an injection temperature sensor.

14 . The method in accordance with claim 8 , wherein receiving signals representing measured data further comprises receiving signals from one or more of a down hole pressure meter and a down hole temperature sensor.

15 . A computer-readable storage device having processor-executable instructions embodied thereon, for enhancing a flow of a fluid induced by a gas lift system, wherein when executed by a gas lift control unit communicatively coupled to a memory, the processor-executable instructions cause the gas lift control unit to:

(a) receive signals representing measured data from one or more sensors, wherein the one or more sensors are configured to monitor one or more conditions of the gas lift system and generate signals representing measured data based on the one or more conditions;

(b) calculate a desired gas injection rate and its associated flow of fluid based, at least in part, on the measured data;

(c) regulate at least one operating characteristic of a compressor associated with the gas lift system based, at least in part, on the desired gas injection rate;

(d) receive measured data representing production data; and

(e) determine a subsequent adjustment based on a comparison of the desired flow of fluid and the production data.

16 . The computer readable storage device of claim 15 , wherein the processor-executable instructions cause the gas lift control unit to regulate a gas injection control valve based on the comparison and regulate gas injection into the well.

17 . The computer readable storage device of claim 15 , wherein the processor-executable instructions cause the gas lift control unit to regulate a compressor suction control valve associated with the compressor based on the comparison.

18 . The computer readable storage device of claim 15 , wherein the processor-executable instructions cause the gas lift control unit to regulate a compressor recycle control valve associated with the compressor based on the comparison.

19 . The computer readable storage device of claim 15 wherein the at least one operating characteristic of the compressor includes a speed of the compressor.

20 . The computer readable storage device of claim 15 wherein the one or more sensors include at least one of a flow tubing pressure sensor, an oil production meter, a water production meter, a gas production meter, a multi-phase production meter, a buy back meter, a gas injection meter, an injection pressure meter, an injection temperature sensor, a down hole pressure meter, and a down hole temperature sensor.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2020
From: GENERAL ELECTRIC COMPANY
To: BAKER HUGHES OILFIELD OPERATIONS, LLC
Reel/Frame 051708/0186 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: GENERAL ELECTRIC COMPANY
To: BAKER HUGHES OILFIELD OPERATIONS, LLC
Reel/Frame 051620/0304 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2016
From: ZHANG, JINFENG; ARAVIND, DEEPAK; ACACIO, VICTOR JOSE; MARKES, JARED; COPE, JEWELL; STRODER, SAM MARSH; HOLLAND, JAMES; ESTERHELD, JOHN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 038753/0239 →