IP Library Granted Patent US 10,323,482
Granted Patent B2
US 10,323,482 · App. 15/562,832 · Granted Jun 18, 2019

Flow-actuated pressure equalization valve and method of use

Inventors: Graham Styler (Calgary, CA); Lewis Facca (Calgary, CA)
Assignee: DRECO ENERGY SERVICES ULC
E21B34/08E21B33/1294E21B34/10E21B34/12
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Quick Facts
Patent No.
US 10,323,482
App. No.
15/562,832
Granted
Jun 18, 2019
Kind
B2
Abstract

A flow-actuated pressure equalization valve, for use with a downhole tool such as a treatment tool, for use in stimulating a subterranean formation. The equalization valve allows the pressure of treatment fluid above and below an isolation device to be equalized so the treatment tool can be moved. The valve can be closed when fluid flow exceeds a certain threshold and the treatment tool is set in the wellbore. While running in or pulling out of hole, the valve will not close regardless of the rate of fluid flow. The valve can be opened by stopping fluid flow and then bleeding off pressure above the isolation device, or by pulling up on the treatment tool.

Claims (51)

1. A pressure equalization valve comprising:

a downhole tubular telescopically coupled for axial movement relative to an uphole tubular and forming a contiguous axial bore therethrough, the downhole tubular delimited for axial movement towards the uphole tubular at an uphole-delimited position and delimited for axial movement away from the uphole tubular at a downhole-delimited position;

a valve seat fit within the axial bore of the downhole tubular for defining an uphole valve bore and a downhole valve bore in fluid communication therethrough;

a valve ball coupled to a valve shuttle, the valve shuttle disposed in the bore of the uphole tubular and axially movable therein, the shuttle biased uphole to an uphole-biased position, and being actuable towards a downhole-delimited position by fluid flow through the uphole valve bore; and

wherein the downhole tubular is actuable from the downhole-delimited position to a valve-enabled position

wherein, when the downhole tubular is in the valve-enabled position and when fluid flow through the uphole valve bore is greater than a threshold flow rate, the valve ball engages the valve seat;

wherein when the downhole tubular is in the valve-enabled position:

fluid flow greater than the threshold flow rate overcomes the biasing to move the shuttle from the uphole-biased position to a flow-extended position at which the valve ball engages the valve seat to isolate the uphole valve bore from the downhole valve bore, and

fluid flow less than the threshold flow rate maintains the shuttle biased in the uphole-biased position for continued fluid communication between the uphole valve bore and the downhole valve bore; and

wherein when the downhole tubular is not in the valve-enabled position, the valve ball is spaced from the valve seat so that when the shuttle is in the flow-actuated position the valve ball remains spaced from the valve seat for continued fluid communication between the uphole valve bore and the downhole valve bore.

2. The valve of claim 1 wherein the valve shuttle has a fluid inlet in fluid communication with the uphole valve bore, and a flow-diverting fluid outlet in fluid communication with the uphole valve bore, and fluid flow through the shuttle's fluid inlet and fluid outlet urges the shuttle downhole against resistance of the biasing.

3. The valve of claim 1 further comprising an anchor assembly coupled to the downhole tubular and configured to immobilize the downhole tubular with respect to a wellbore;

wherein the downhole tubular is actuable to a valve-enabled position while the downhole tubular is immobilized with respect to the wellbore by the anchor assembly.

4. The valve of claim 3 wherein the anchor assembly comprises a slip.

5. The valve of claim 1 wherein the valve seat is fit at an end of the bore of the downhole tubular.

6. The valve of claim 1 wherein the downhole tubular moves axially within the bore of the uphole tubular.

7. The valve of claim 1 wherein the valve-enabled position of the downhole tubular is the uphole-delimited position of the downhole tubular.

8. The valve of claim 1 wherein the uphole biased position of the shuttle is an uphole-delimited position of the shuttle.

9. The valve of claim 1 wherein at the uphole-delimited position of the downhole tubular, a shoulder on the downhole tubular engages the uphole tubular; and

wherein at the downhole-delimited position of the downhole tubular, a stop on the downhole tubular engages the uphole tubular.

10. A pressure equalization valve for a downhole tool, the valve comprising:

an uphole tubular and a downhole tubular telescopically coupled and forming a contiguous axial bore therethrough; the downhole tubular being actuable for axial movement towards the uphole tubular to a valve-enabled position and away from the uphole tubular to a valve-disabled position;

a valve seat fit within the axial bore of the downhole tubular for defining an uphole valve bore and a downhole valve bore in fluid communication therethrough; and

a valve shuttle disposed in the bore of the uphole tubular and axially movable therein, the shuttle biased uphole to an uphole-biased position, and being actuable towards a flow-activated position by fluid flow that is greater than a threshold flow rate; and

an anchor assembly configured to engage a wellbore to immobilize the downhole tubular relative to the wellbore;

wherein:

when the downhole tubular is in the valve-disabled position and the shuttle is in the flow-actuated position, the valve is open, for continued fluid communication between the uphole valve bore and the downhole valve bore;

when the downhole tubular is in the valve-enabled position and the shuttle is in the uphole-biased position, the valve is open, for continued fluid communication between the uphole valve bore and the downhole valve bore; and

when the downhole tubular is immobilized relative to the wellbore and is in the valve-enabled position, and the shuttle is in the flow-actuated position, the valve is closed to fluid communication between the uphole valve bore and the downhole valve bore.

11. The valve of claim 10 wherein fluid flow through the uphole valve bore and into the downhole valve bore urges the shuttle downhole against resistance of the biasing.

12. The valve of claim 11 wherein the fluid flow through the uphole valve bore comprises the flow of fluid into a fluid inlet of the valve shuttle that is in fluid communication with the uphole valve bore, and out of a fluid outlet that is in fluid communication with the uphole valve bore.

13. The valve of claim 10 , wherein the anchor assembly includes a slip.

14. The valve of claim 10 wherein the valve seat is fit at an end of the bore of the downhole tubular.

15. The valve of claim 10 wherein the downhole tubular moves axially within the bore of the uphole tubular.

16. The valve of claim 10 wherein the valve-enabled position of the downhole tubular is an uphole-delimited position of the downhole tubular.

17. The valve of claim 10 wherein the valve-disabled position of the downhole tubular is a downhole-delimited position of the downhole tubular.

18. The valve of claim 10 wherein the uphole biased position of the shuttle is an uphole-delimited position of the shuttle.

19. A pressure equalization valve for a downhole tool, the pressure equalization valve comprising:

an uphole tubular having a first shoulder and a downhole tubular having a second shoulder, the uphole and downhole tubulars being telescopically coupled and forming a contiguous axial bore therethrough;

a valve seat disposed within the axial bore of the downhole tubular; and

a valve coupled to a valve shuttle, the valve shuttle disposed in the bore of the uphole tubular and axially movable therein, the shuttle biased to an uphole position relative to the uphole tubular and being actuable towards a downhole position relative to the uphole tubular by fluid flow that is greater than a threshold flow rate; and

an anchor assembly configured to engage a wellbore to immobilize the downhole tubular relative to the wellbore;

wherein the uphole tubular is actuable for axial movement away from the downhole tubular to achieve a first distance between the first and second shoulders and being actuable for axial movement toward the downhole tubular to achieve a second distance between the first and second shoulders, the second distance being less than the first distance;

wherein the pressure equalization valve comprises:

a first configuration in which the uphole tubular is spaced from the downhole tubular by the first distance, and the valve shuttle is in its uphole position relative to the uphole tubular;

a second configuration in which the uphole tubular is spaced from the downhole tubular by the first distance, and the valve shuttle is in its downhole position relative to the uphole tubular;

a third configuration in which the downhole tubular is immobilized relative to a wellbore by the anchor assembly, the uphole tubular is spaced from the downhole tubular by the second distance, and the valve shuttle is in its uphole position relative to the uphole tubular; and

a fourth configuration in which the downhole tubular is immobilized relative to a wellbore by the anchor assembly, the uphole tubular is spaced from the downhole tubular by the second distance, the valve shuttle is in its downhole position relative to the uphole tubular, and the valve engages the valve seat; and

wherein the first and second configurations include a valve-disabled position of the downhole tubular relative to the uphole tubular, wherein valve-disabled position does not allow the valve to engage the valve seat.

20. The valve of claim 19 wherein the third and fourth configurations include a valve-enabled position of the downhole tubular relative to the uphole tubular, wherein the valve-enabled position allows the valve to engage the valve seat; and

wherein when the downhole tubular is immobilized relative to the wellbore by the anchor assembly, the uphole tubular is actuable to change the downhole tubular from the valve-disabled position to the valve-enabled position and is actuable to change the downhole tubular from the valve-enabled position to the valve-disabled position.

Assignments (3)
MERGER AND CHANGE OF NAME Recorded Aug 17, 2023
From: DRECO ENERGY SERVICES ULC; NOV CANADA ULC
To: NOV CANADA ULC
Reel/Frame 064630/0306 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2019
From: STYLER, GRAHAM; FACCA, LEWIS
To: TRICAN COMPLETION SOLUTIONS LTD.
Reel/Frame 048405/0808 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2019
From: TRICAN COMPLETION SOLUTIONS LTD.
To: DRECO ENERGY SERVICES ULC
Reel/Frame 048402/0167 →
Continuity (1)
Related Publication 20180106130A1 · Apr 19, 2018