IP Library Granted Patent US 11,313,198
Granted Patent B2
US 11,313,198 · App. 16/840,792 · Granted Apr 26, 2022

Dissolvable plugs used in downhole completion systems

Inventors: Dane Thomas Elliott (Pawnee, TX); Alfred Maury Moseley (Mobile, AL); Travis Jack Power (Houston, TX)
Assignee: NexGen Oil Tools Inc.
E21B33/12E21B29/02
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 11,313,198
App. No.
16/840,792
Granted
Apr 26, 2022
Kind
B2
Abstract

A completion assembly includes an upper liner and a lower liner, a wellbore completion component that interposes the upper and lower liners, a dissolvable pipe plug threaded into the wellbore completion component, and a dissolvable projectile seat arranged adjacent the wellbore completion component.

Claims (34)

1. A completion assembly, comprising:

an upper liner and a lower liner;

a wellbore completion component that interposes the upper and lower liners;

a dissolvable pipe plug secured within an aperture defined in the wellbore completion component; and

a shield coupled to the wellbore completion component and radially aligned with the dissolvable pipe plug, the shield providing a barrier that at least temporarily prevents a fluid from contacting an end of the dissolvable pipe plug,

wherein the aperture is threaded and the dissolvable pipe plug and the shield are each threaded into the aperture.

2. The completion assembly of claim 1 , wherein the pipe plug is made of a dissolvable material selected from the group consisting of a dissolvable metal, a galvanically-corrodible metals, a degradable polymer, a degradable rubber, borate glass, polyglycolic acid, polylactic acid, a dehydrated salt, and any combination thereof.

3. The completion assembly of claim 1 , wherein the pipe plug is made from two or more dissimilar metals capable of undergoing independent galvanic corrosion.

4. The completion assembly of claim 1 , wherein the pipe plug is made of a first galvanically-corrodible metal and the wellbore completion component is made of a second galvanically-corrodible metal that forms a galvanic pair with the first galvanically-corrodible metal.

5. The completion assembly of claim 1 , wherein the wellbore completion component comprises a ribbed sub coupling that threadably couples the lower liner to the upper liner.

6. The completion assembly of claim 5 , further comprising a tracer material disposed within a gap defined between the shield and the dissolvable pipe plug.

7. The completion assembly of claim 1 , wherein the shield is coupled to the wellbore completion component by at least one of threading, welding, press-fitting, gluing, and any combination thereof.

8. The completion assembly of claim 1 , wherein the shield comprises a rupture disc.

9. The completion assembly of claim 1 , wherein the shield comprises a one-way seal.

10. The completion assembly of claim 1 , wherein the dissolvable pipe plug comprises a head with a hexagonal cross-section and a tapered sealable thread extending from the head.

11. The completion assembly of claim 1 , wherein a cavity is defined between an end of the dissolvable pipe plug and an inner surface of the wellbore completion component, the completion assembly further comprising a filler material positioned within the cavity.

12. The completion assembly of claim 11 , wherein the filler material is dissolvable in the presence of cement or a spacer fluid.

13. The completion assembly of claim 1 , wherein the shield is arranged radially inward from the dissolvable pipe plug.

14. A method, comprising:

flowing a fluid through a wellbore completion component that interposes upper and lower liners, the wellbore completion component having a dissolvable pipe plug secured within an aperture defined in the wellbore completion component; and

contacting a first end of the pipe plug with the fluid and thereby dissolving at least a portion of the pipe plug with the fluid; and

preventing the fluid from contacting a second end of the pipe plug with a shield coupled to the wellbore completion component and radially aligned with the dissolvable pipe plug,

wherein the aperture is threaded and the dissolvable pipe plug and the shield are each threaded into the aperture.

15. The method of claim 14 , wherein a gap is defined between the shield and the dissolvable pipe plug, the method further comprising bursting the shield with fluid pressure once the gap is exposed.

16. The method of claim 14 , wherein the wellbore completion component further includes a tracer material disposed within the gap, the method further comprising releasing the tracer material into an annulus defined between the wellbore completion component and an inner wall of a surrounding wellbore.

17. A method, comprising:

flowing a fluid through a wellbore completion component that interposes upper and lower liners, the wellbore completion component having:

a dissolvable pipe plug secured within an aperture defined in the wellbore completion component;

a shield coupled to the wellbore completion component and radially aligned with the dissolvable pipe plug; and

a tracer material disposed within a gap defined between the shield and the dissolvable pipe plug;

dissolving at least a portion of the dissolvable pipe plug with the fluid;

releasing the tracer material into an interior of the wellbore completion component; and

flowing the tracer material to a surface location and thereby verifying that the dissolvable pipe plug has dissolved and the shield remains intact.

18. The method of claim 17 , wherein the pipe plug is made of a dissolvable material selected from the group consisting of a dissolvable metal, a galvanically-corrodible metals, a degradable polymer, a degradable rubber, borate glass, polyglycolic acid, polylactic acid, a dehydrated salt, and any combination thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2020
From: ELLIOTT, DANE THOMAS; MOSELEY, ALFRED MAURY; POWER, TRAVIS JACK
To: NEXGEN OIL TOOLS INC.
Reel/Frame 052320/0177 →
Continuity (2)
Provisional Application 62834585 · Apr 16, 2019
Related Publication 20200332619A1 · Oct 22, 2020
Cited By (1)
US 12,571,282