IP Library Granted Patent US 11,105,168
Granted Patent B2
US 11,105,168 · App. 16/543,326 · Granted Aug 31, 2021

Dissolvable pressure barrier

Inventor: Scott Sherman (Blackie, CA)
Assignee: Advanced Upstream Ltd.
E21B29/02E21B33/1208E21B34/063E21B41/0085
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Quick Facts
Patent No.
US 11,105,168
App. No.
16/543,326
Granted
Aug 31, 2021
Kind
B2
Abstract

A dissolvable pressure barrier comprises a body having metallic dissolvable components, a power source, and a connector that is shiftable from a first position to a second position when a pressure greater than a predetermined load is applied to the pressure barrier. In the first position, the connector is electrically insulated from the power source. In the second position, the connector is in electrical communication with the power source, the metallic dissolvable components, and the casing of the wellbore, thereby forming an electric circuit wherein a voltage is provided by the power source and the dissolution of the pressure barrier is accelerated by an anodic process. The metallic dissolvable components may be coated with a low activity metal to assist with the dissolution process.

Claims (27)

1. A method for dissolving at least a part of a pressure barrier in a wellbore having a casing, the pressure barrier comprising a power source and one or more metallic dissolvable components, the method comprising:

applying a pressure to the pressure barrier to form an electric circuit comprising the one or more metallic dissolvable components, the power source, and the casing; and

applying a voltage, by the power source, across the casing and the pressure barrier.

2. The method of claim 1 wherein the pressure barrier comprises a connector, and wherein applying the pressure to the pressure barrier shifts the connector from a first position, wherein the connector is electrically insulated from the power source, to a second position, wherein the connector is in electrical communication with the power source, the one or more metallic dissolvable components, and the casing.

3. The method of claim 2 wherein the connector is held in place by a retaining mechanism that fails upon application of a predetermined load thereon and the pressure is the same or greater than the predetermined load.

4. The method of claim 3 wherein the predetermined load ranges from 100 lbs to 500 lbs.

5. The method of claim 1 wherein at least one of the one or more metallic dissolvable components is coated with a metal, wherein applying the pressure comprises introducing a fluid into the wellbore, and wherein applying the voltage causes an electrolytic reaction between the one or more metallic dissolvable components and the metal in the presence of the fluid.

6. The method of claim 1 comprising delaying application of the voltage for a predetermined amount of time.

7. The method of claim 1 comprising releasing, by the pressure barrier, a corrosive agent.

8. The method of claim 1 wherein the voltage is between about 1 volt and 5 volts.

9. A pressure barrier for downhole operations comprising:

a body having a metallic dissolvable component;

a power source;

a connector, the connector being conductive and electrically connected to the metallic

dissolvable component, the connector configured to fluidly seal the power source from downhole fluids, and the connector having:

a first position, wherein the connector is electrically insulated from the power source; and

a second position, wherein the connector is in electrical communication with the power source; and

wherein the connector is shiftable from the first position to the second position when a pressure above a predetermined load is applied to the pressure barrier.

10. The pressure barrier of claim 9 wherein at least a part of an outer surface of the metallic dissolvable component is coated with a metal capable of reacting electrolytically with the metallic dissolvable component for accelerating degradation of the metallic dissolvable component.

11. The pressure barrier of claim 10 wherein the metal comprises gold, platinum, copper, silver, or a combination thereof.

12. The pressure barrier of claim 9 comprising a retaining mechanism for maintaining the connector in the first position and the retaining mechanism is configured to fail when the pressure is above the predetermined load.

13. The pressure barrier of claim 9 wherein the metallic dissolvable component comprises one or more of: zinc, magnesium, lithium, gallium, aluminum, and an alloy thereof.

14. The pressure barrier of claim 9 wherein the connector comprises a magnesium alloy, an aluminum alloy, or a combination thereof.

15. The pressure barrier of claim 9 wherein the power source comprises one or more of a battery, a capacitor, and an electrochemical cell.

16. The pressure barrier of claim 9 comprising slips, a slip body, and a shoe, wherein at least one of the slips, slip body, and shoe comprises the metallic dissolvable component.

17. The pressure barrier of claim 9 comprising a bladder having a corrosive agent therein and configured to release the corrosive agent when the connector is in the second position.

18. The pressure barrier of claim 9 wherein the connector is a sealing member, wherein in the first position, the sealing member is physically separated from the power source and in the second position, the sealing member is shifted downward to be in physical contact with the power source.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2026
From: ADVANCED UPSTREAM LTD.
To: 2742177 ALBERTA ULC
Reel/Frame 074190/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2026
From: 2742177 ALBERTA ULC
To: EXXONMOBIL TECHNOLOGY AND ENGINEERING COMPANY
Reel/Frame 074190/0413 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2020
From: SHERMAN, SCOTT
To: ADVANCED UPSTREAM LTD.
Reel/Frame 051584/0202 →
Continuity (3)
Provisional Application 62734453 · Sep 21, 2018
Provisional Application 62719009 · Aug 16, 2018
Related Publication 20200056435A1 · Feb 20, 2020