IP Library › Granted Patent US 11,795,794
Granted Patent B2
US 11,795,794 · App. 17/521,520 · Granted Oct 24, 2023

Gas-lift system with paired controllers

Inventor: Jason Williams (Fort Worth, TX)
Assignee: Epic Lift Systems LLC
E21B43/122E21B34/066E21B43/40F04B9/1273F04B47/02F04B47/12F04B49/065F04B53/12F04B2201/0201F04B2207/043
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Quick Facts
Patent No.
US 11,795,794
App. No.
17/521,520
Granted
Oct 24, 2023
Kind
B2
Abstract

Systems and methods for controlling operation of a well, of which the method includes receiving an operation setting for operation of a system that provides lift gas into and produces gas from the well, monitoring operation of the system using a first controller, determining, using the first controller, that the system is not operating at the operation setting, and in response to determining that the system is not operating at the operation setting, sending, using a two-way communication link from the first controller to a second controller, a control signal to the second controller. The control signal is configured to cause the second controller to modify an operation of a compressor of the system.

Claims (65)

1. A method for controlling operation of a well, comprising:

introducing a gas into a pressure vessel;

transmitting the gas into a compressor and compressing the gas;

assessing when a plunger in the well is at a first predetermined position in the well;

generating a signal from a wellhead controller when the plunger is assessed to be at the first predetermined position in the well;

transmitting the signal from the wellhead controller to a compressor controller;

receiving the signal at the compressor controller;

based at least in part upon receiving the signal at the compressor controller, changing the speed or suction pressure of the compressor;

descending the plunger into the well;

assessing when the plunger reaches a second predetermined position in the well;

generating a second signal from the wellhead controller after the plunger is assessed to have reached the second predetermined position in the well;

transmitting the second signal from the wellhead controller to the compressor controller;

receiving the second signal at the compressor controller;

based at least in part upon receiving the second signal at the compressor controller, changing the speed or suction pressure of the compressor and injecting the gas compressed by the compressor into the well; and

lifting the plunger from the second predetermined position in the well to the first predetermined position in the well with the aid of the gas compressed by the compressor and injected into the well.

2. The method according to claim 1 , wherein the gas is a mixture of natural gases.

3. The method according to claim 1 , wherein the gas is introduced into the pressure vessel through a first inlet.

4. The method according to claim 1 , further comprising:

removing particles from the gas in the pressure vessel.

5. The method according to claim 1 , wherein the first predetermined position in the well is at a highest elevation of a plunger within the well.

6. The method according to claim 1 , wherein the first predetermined position in the well is the plunger contacting a first actuator.

7. The method according to claim 1 , wherein the first predetermined position in the well is the plunger contacting a lubricator.

8. The method according to claim 1 , wherein the transmitting the signal is through one of wirelessly or through a wire.

9. The method according to claim 1 , wherein the assessing when the plunger in the well is at the first predetermined position in the well is through use of a sensor.

10. The method according to claim 9 , wherein the sensor is pressure transducer.

11. The method according to claim 1 , wherein the compressed gas exits the compressor and enters an annulus of the well.

12. A method for controlling operation of a well, comprising:

introducing a gas into a pressure vessel;

transmitting the gas into a compressor and compressing the gas;

determining when a plunger in the well is at a first predetermined position in the well;

generating a signal from a wellhead controller when the plunger is at the first predetermined position in the well;

transmitting the signal from the wellhead controller to a compressor controller;

receiving the signal at the compressor controller;

based at least in part upon receiving the signal at the compressor controller, changing the speed or suction pressure of the compressor;

descending the plunger into the well;

waiting a predetermined amount of time and changing the speed or suction pressure of the compressor and injecting the gas compressed by the compressor into the well; and

lifting the plunger from the second predetermined position in the well to the first predetermined position in the well with the aid of the gas compressed by the compressor and injected into the well.

13. The method according to claim 12 , wherein the predetermined amount of time is determined by the compressor controller.

14. The method according to claim 12 , wherein the compressed gas exits the compressor and enters an annulus of the well.

15. A method for controlling operation of a well, comprising:

introducing a gas into a pressure vessel;

transmitting the gas into a compressor;

operating the compressor with a compressor controller at a first setpoint;

receiving an operation setting at a wellhead controller;

comparing the operation setting at the wellhead controller with a recorded operation setting by the wellhead controller;

sending a control signal to the compressor controller from the wellhead controller;

receiving the control signal at the compressor controller, wherein the control signal contains a second setpoint; and

altering the compressor to run at the second setpoint,

wherein the sending of the control signal to the compressor controller is performed when the operation setting and the recorded operation setting do not agree.

16. A method for controlling operation of a well, comprising:

receiving gas at an inlet of a compressor;

controlling the compressor with a compressor controller;

injecting gas compressed by the compressor into the well to assist lifting a plunger in the well;

using a wellhead controller to assess one or more well conditions or plunger lift parameters; and

sending a signal from the wellhead controller to the compressor controller to alter operation of the compressor based on the one or more well conditions or parameters assessed by the wellhead controller,

wherein the altered operation of the compressor is its speed or suction pressure, and

wherein one of the well conditions or plunger lift parameters is based on actual or perceived location of a plunger or plunger cycle time.

17. The method of claim 16 further comprising:

delivering compressed gas from the compressor to a diverter valve;

controlling the diverter valve with the compressor controller such that the compressed gas is diverted to the well or to a purchase line.

18. The method of claim 17 wherein the gas received at the inlet of the compressor is received from the well or an output of a pressure vessel, whereas in the case in which the gas is received from an output of a pressure vessel, the pressure vessel includes a gas input from the compressor and a gas input from the well.

19. The method of claim 18 wherein the compressor pulls on the well so as to pull the plunger toward the top of the well and evacuate gas from the well.

20. The method of claim 19 wherein gas is injected or not injected into the well during specific periods, including that gas is not injected into the well during periods when the plunger is determined to be at the top of the well and that gas is injected into the well during periods when the plunger is determined to be at the bottom of the well.

21. The method of claim 20 wherein gas is diverted to the sales line during periods that the plunger is determined to be at the top of the well.

22. The method of claim 18 wherein the wellhead controller and the compressor controller are the same controller.

Continuity (2)
Continuation 16011071 · Jun 18, 2018
Related Publication 20220065092A1 · Mar 3, 2022
Cited By (1)
US 12,624,619