IP Library › Granted Patent US 9,422,787
Granted Patent B2
US 9,422,787 · App. 14/117,408 · Granted Aug 23, 2016

Support device for use in a wellbore and a method for deploying a barrier in a wellbore

Inventors: John Paul Fraser (Angus, GB); Jason Wing Hau Fong (Aberdeen, GB); John Kenneth Fraser Murray (Aberdeen, GB)
Assignee: SMJM Limited
E21B33/13E21B23/06E21B33/127E21B33/134
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Quick Facts
Patent No.
US 9,422,787
App. No.
14/117,408
Granted
Aug 23, 2016
Kind
B2
Abstract

The present invention relates to a downhole support device ( 100 ) for use in a wellbore and which is adapted to be run into the wellbore through an elongate member string ( 2 ) such as on a string of tubulars, a coiled tubing string or a slickline. The downhole support device comprises an inflatable element ( 102 ), which in use is adapted to be selectively connectable to the elongate member string and is further adapted to apply a biasing force in the direction of the wellbore walls. The inflatable element has an inlet ( 104 ) for receiving fluid and/or fluidized solids. The support device is further adapted to be selectively disconnectable from the elongate member string.

Claims (54)

1. A downhole support device for use in a wellbore and adapted to be run into the wellbore to a pre-determined location by pumping the downhole support device through a throughbore of an elongate member string, which is already located within the wellbore, until the downhole support device is secured at an outlet portion of the elongate member string such that the downhole support device is operatively located at the predetermined location of the wellbore, the downhole support device comprising:

a disconnect member and an inflatable element the disconnect member being provided on the inflatable element and being securable at a corresponding surface provided at the outlet portion of the elongate member string to form a fluid-tight connection:

the inflatable element having an inlet for receiving fluid and/or fluidized solids and which in use is adapted to be selectively connectable to the elongate member string; and wherein said disconnect member is adapted to allow fluid and/or fluidized solids to flow between said elongate member string, and said inflatable element: wherein said inflatable member is further adapted to apply a biasing force in the direction of the wellbore walls, when inflated by said fluid and/or fluidized solids; and wherein the downhole support device is adapted to be selectively disconnectable from the elongate member string.

2. The downhole support device according to claim 1 , wherein said elongate member string is one of a string of tubulars or a coiled tubing string.

3. The downhole support device according to claim 2 , wherein said disconnect member is operatively deployable at a bottom outlet portion of the string of tubulars or the coiled tubing string.

4. The downhole support device according to claim 3 , wherein said disconnect member comprises a collar portion that is securable at a corresponding surface of a no-go nipple assembly at the bottom outlet portion of the string of tubulars or the coiled tubing string.

5. The downhole support device according to claim 4 , wherein said collar portion and the no-go nipple assembly form a fluid-tight connection.

6. The downhole support device according to claim 2 , further comprising a uni-directional valve operatively coupled to said inlet of said inflatable element.

7. The downhole support device according to claim 6 , wherein said unidirectional valve is adapted to open at or above a predetermined hydraulic pressure differential between the hydraulic pressure inside the string of tubulars or the coiled tubing string and the hydraulic pressure inside said inflatable element.

8. The downhole support device according to claim 7 , wherein said unidirectional valve permits flow or fluid into the inflatable element and prevents flow or fluid in the other direction.

9. The downhole support device according to claim 2 , wherein said string of tubulars is a work string.

10. The downhole support device according to claim 9 , wherein the work string is a drill pipe string.

11. The downhole support structure according to claim 10 , wherein said disconnect member comprises a resilient release portion adapted to selectively disconnect said inflatable element from said elongate member string at a predetermined condition.

12. The downhole support structure according to claim 11 , wherein said predetermined condition is a predetermined hydraulic pressure provided by said fluid and/or fluidized solids.

13. The downhole support device according to claim 2 , wherein said string of tubulars is a liner string.

14. The downhole support device according to claim 1 , wherein said inflatable element is expandable.

15. The downhole support device according to claim 1 , wherein said inflatable element is a receptacle adapted to expand from a deflated state into a predetermined shape having at least one contact portion adapted to engage with the wall of the wellbore.

16. The downhole support device according to claim 15 , wherein said contact portion is substantially cylindrical with respect to the longitudinal axis of the wellbore.

17. The downhole support device according to claim 15 , wherein said contact portion comprises a plurality of ribs adapted to provide optimized friction and/or for sealing engagement with the wellbore wall.

18. The downhole support device according to claim 1 , wherein said inflatable element is formed of a polymeric material.

19. The downhole support device according to claim 1 , wherein said inflatable element comprises an additive adapted to accelerate the hardening process of the fluid and/or fluidized solids received in said inflatable element.

20. The downhole support device according to claim 1 , further comprising an activation means operatively and detachably coupled to said inlet of said inflatable element and adapted to inflate and deflate said inflatable element upon activation.

21. The downhole support device according to claim 20 , wherein said activation means is a piston mechanism adapted to move an internal displacement fluid into or out of said inflatable element.

22. The downhole support device according to claim 21 , wherein said displacement fluid is an elastomeric compound.

23. The downhole support device according to claim 20 , wherein said inflatable element comprises an additive adapted to accelerate the hardening process of said internal displacement fluid.

24. The downhole support device according to claim 1 , further comprising a dart element operatively coupled to the bottom end of said inflatable element with respect to the direction of movement through the wellbore during delivery.

25. The downhole support structure according to claim 1 , wherein said disconnect member comprises a detach mechanism adapted to detach said disconnect member from said inflatable element at a predetermined condition.

26. The downhole support structure according to claim 25 , wherein said detach mechanism comprises a shear sleeve arrangement activated at or above a first predetermined hydraulic pressure provided by the fluid and/or fluidized solids.

27. The downhole support structure according to claim 26 , wherein said detach mechanism comprises a sliding sleeve arrangement activated by a drop element received by said disconnect member via the string of tubulars.

28. The downhole support structure according to claim 27 , wherein said drop element is a drop ball.

29. A method for deploying a barrier in a wellbore, comprising the steps of:

(a) providing a downhole support device having a disconnect member and an inflatable element;

(b) pumping the downhole support device into the wellbore down through the throughbore of an elongate member string such that it is run into the wellbore through the throughbore of the elongate member string until the disconnect member is secured at an outlet portion against a corresponding surface at a lowermost end of the elongate member string, such that said inflatable element is positioned below said elongate member string at a predetermined location inside the wellbore; and

(c) inflating said inflatable element by pumping fluid and/or fluidized solids from the elongate member string and into said inflatable element through an inlet of said downhole support device, such that the inflatable element is expanded into sealing engagement with the wellbore walls; and

(d) activating the disconnect member such that the downhole support device is disconnected from the outlet portion of the elongate member string.

30. The method for deploying a barrier in a wellbore according to claim 29 , wherein step (c) further includes delivering said fluid and/or fluidized solids via said elongate member string and out of a first outlet port of said elongate member string.

31. The method for deploying a barrier in a wellbore according to claim 30 , further comprising the steps of:

(e) delivering an amount of fluid and/or fluidized solids through said first outlet port on top of said secured downhole support device, and

(f) allowing the fluid and/or fluidized solids to harden, thereby to define a plug in the wellbore.

32. The method according to claim 29 , wherein step (d) is initiated by providing a predetermined hydraulic pressure at said first outlet port.

33. The method according to claim 29 , wherein step (d) is initiated by a drop element provided through said elongate member string.

34. The method according to claim 29 , wherein step (c) further includes providing an additive adapted to accelerate the hardening process of the fluid and/or fluidized solids received in said inflatable element.

35. The method according to claim 29 , further comprising the steps of:

(e) initiating closing a first outlet port and opening at least one second outlet port for said fluid and/or fluidized solids in said elongate member string into a space of the wellbore above said downhole support device;

(f) delivering an amount of fluid and/or fluidized solids through said at least one second outlet port on top of said secured downhole support device; and

(g) initiating closing said at least one second outlet port and opening said first outlet port, and initiating detaching and deflating said inflatable element from said elongate member string.

36. The method according to claim 35 , wherein said at least one second outlet port and said first outlet port are provided by a sliding sleeve mechanism.

37. The method according to claim 35 , wherein step (e) is initiated by a first drop element provided through said elongate member string.

38. The method according to claim 37 , wherein said first drop element is a drop ball adapted to interact with said sliding sleeve mechanism.

39. The method according to claim 38 , wherein said second drop element is a wiper plug adapted to clean the inside walls of said elongate member string.

40. The method according to claim 37 , wherein step (g) is initiated by a second drop element provided through said elongate member string.

41. The method according to claim 40 , wherein said second drop element is delivered by displacement fluid pushed through said elongate member string.

42. The method according to claim 29 , further comprising:

(e) pulling the elongate member string in the direction back to the surface of the wellbore.

Assignments (4)
NUNC PRO TUNC ASSIGNMENT Recorded Oct 21, 2022
From: CORETRAX TECHNOLOGY LTD.
To: CORETRAX GLOBAL LIMITED
Reel/Frame 061499/0066 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2018
From: SMJM LIMITED
To: CORETRAX TECHNOLOGY LIMITED
Reel/Frame 047550/0273 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2014
From: CORETRAX TECHNOLOGY LIMITED
To: SMJM LIMITED
Reel/Frame 032211/0237 →
NUNC PRO TUNC ASSIGNMENT Recorded Jan 23, 2014
From: FRASER, JOHN PAUL; FONG, JASON WING HAU; MURRAY, JOHN KENNETH FRASER
To: CORETRAX TECHNOLOGY LIMITED
Reel/Frame 032029/0375 →
Priority Claims (1)
GB 1108724.4 · May 24, 2011 · national
Continuity (1)
Related Publication 20140238694A1 · Aug 28, 2014