IP Library Granted Patent US 12692764
Granted Patent B2
US 12692764 · App. 19/103,993 · Granted Jul 28, 2026

Valve system for use in a wellbore

Inventor: Rylan Paul D'Souza (Abu Dhabi, AE)
Assignee: Interwell Norway AS
E21B34/066E21B43/123E21B2200/02
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12692764
App. No.
19/103,993
Granted
Jul 28, 2026
Kind
B2
Abstract

A valve system for use in a wellbore, the valve system comprising a side pocket mandrel having a main bore for alignment with a tubular in the wellbore, a laterally offset side pocket bore which is enclosed by a side pocket wall, and first and second ports which each extend through the side pocket wall into the side pocket bore, the valve system further comprising first valve assembly which is operable to control flow of fluid from the exterior of the side pocket bore to the first port, and a second valve assembly which is located in the side pocket bore to close the second port and which is operable to control flow of fluid from the first port to the main bore of the side pocket mandrel.

Claims (21)

1 . A valve system for use in a wellbore, the valve system comprising:

a side pocket mandrel having a main bore for alignment with tubing in the wellbore;

a laterally offset side pocket bore which is enclosed by a side pocket wall;

first and second ports which each extend through the side pocket wall into the side pocket bore;

a first valve assembly which is operable to control flow of fluid from the exterior of the side pocket bore into the side pocket bore via the first port; and

a second valve assembly which is located in the side pocket bore to close the second port and which is operable to control flow of fluid from the side pocket bore to the main bore of the side pocket mandrel.

2 . The valve system according to claim 1 wherein the first valve assembly is mounted outside the side pocket bore.

3 . The valve system according to claim 1 wherein the first port extends through the side pocket wall from an exterior surface of the side pocket mandrel.

4 . The valve system according to claim 3 wherein the first valve assembly is mounted on the exterior surface of the side pocket mandrel.

5 . The valve system according to claim 1 wherein the first port extends from the main bore to the side pocket bore.

6 . The valve system according to claim 5 wherein the side pocket mandrel is provided with a third port which extends through the side pocket mandrel from an exterior surface thereof to the main bore.

7 . The valve system according to claim 6 wherein the first valve assembly is mounted in the main bore of the side pocket mandrel and configured to control flow of fluid from the exterior of the side pocket mandrel through the third port and to the first port.

8 . The valve system according to claim 1 wherein the first valve assembly comprises a remotely controllable choke assembly which is operable to control the rate of flow of fluid from the exterior of the side pocket mandrel to the first port.

9 . The valve system according to claim 8 wherein the choke assembly comprises a choke and an electrically or hydraulically operated choke actuator.

10 . The valve system according to claim 8 wherein the first valve assembly comprises an electronic controller which is connected to and configured to control the operation of the choke assembly.

11 . The valve system according to claim 10 wherein the electronic controller has a signal interface and is configured to transmit data signals via the signal interface.

12 . The valve system according to claim 11 wherein the electronic controller is also configured to receive control and/or data signals via the signal interface.

13 . The valve system according to claim 1 wherein the first valve assembly comprises a generator which is configured to convert energy derived from flow of fluid from the exterior of the side pocket mandrel to the first port and/or temperature differential energy between the exterior of the side pocket mandrel and the main bore into electrical energy.

14 . The valve system according to claim 1 wherein the first valve assembly comprises a sensor system which is configured to measure one or more of the following: the pressure at the exterior of the side pocket mandrel, the temperature at the exterior of the side pocket mandrel, the pressure in the main bore of the side pocket mandrel, or the temperature in the main bore of the side pocket mandrel.

15 . The valve system according to claim 1 wherein the second valve assembly comprises a check valve which moves from a closed position in which the check valve prevents flow of fluid between the first port and the main bore of the side pocket mandrel, to an open position, in which the check valve permits flow of fluid from the first port into the main bore of the side pocket mandrel, when the pressure at the first port exceeds the pressure in the main bore by a pre-determined amount.

16 . The valve system according to claim 1 wherein the second valve assembly is removable from the side pocket bore, and the side pocket mandrel further comprises a check valve which is moveable between a closed position in which the check valve blocks flow of fluid between the first port and the side pocket bore and an open position in which the check valve allows flow of fluid between the first port and the side pocket bore, and which is configured be retained in the open position by the second valve assembly when the second valve assembly is in the side pocket bore, and to move to the closed position when the second valve assembly is removed from the side pocket bore.