Claims
- 1. A method of providing a downhole seal in a drilled bore between inner tubing and outer tubing, the method comprising:
providing an intermediate tubing section defining means for sealingly engaging with the inner tubing; and plastically deforming the intermediate tubing section downhole to form an annular extension, said extension creating a sealing contact with the outer tubing.
- 2. The method of claim 1, wherein said deformation of the intermediate tubing section is at least partially as a result of compressive yield.
- 3. The method of claim 2, wherein said deformation of the intermediate tubing section is by rolling expansion to cause compressive plastic deformation of the tubing section and a localised reduction in wall thickness resulting in a subsequent increase in diameter.
- 4. (Amended) The method of claim 1, wherein the intermediate tubing section is of metal and deforming the tubing section creates a metal-to-metal seal between the intermediate tubing section and outer tubing.
- 5. (Amended) The method of claim 1, wherein a seal is provided between the intermediate tubing section and the inner tubing by providing the intermediate tubing section with a polished bore portion and providing the inner tubing with a corresponding outer wall portion defining sealing bands of elastomer.
- 6. (Amended) The method of claim 1, wherein the outer tubing is elastically deformed to grip the extension.
- 7. The method of claim 6, wherein the outer tubing is deformed from contact with the extension as the extension is formed.
- 8. (Amended) The method of claim 6, wherein the outer tubing is plastically deformed.
- 9. (Amended) The method of claim 1, wherein the inner tubing is production tubing.
- 10. (Amended) The method of claim 1, wherein the outer tubing is bore-lining casing.
- 11. (Amended) The method of claim 1, wherein the intermediate tubing section is plastically deformed at a plurality of axially spaced locations to form a plurality of annular extensions.
- 12. (Amended) The method of claim 1, wherein relatively ductile material is provided between the intermediate tubing section and the outer tubing.
- 13. The method of claim 12, wherein the relatively ductile material is provided in the form of a plurality of axially spaced bands, between areas of the intermediate tubing section which are intended to be subject to greatest deformation.
- 14. (Amended) The method of claim 1, wherein relatively hard material is provided between the intermediate tubing section and the outer tubing, such that on deformation of the intermediate tubing section the softer material of one or both of the intermediate tubing section and the outer tubing deforms to accommodate the harder material and thus facilitates in securing the coupling against relative axial or rotational movement.
- 15. The method of claim 14, wherein the relatively hard material is provided in the form or relatively small elements.
- 16. (Amended) The method of claim 1, further comprising the step of running an expander device into the bore within the intermediate tubing section and energising the expander device to radially deform at least the intermediate tubing section.
- 17. The method of claim 16, wherein the device is run into the bore together with the intermediate tubing section.
- 18. (Amended) The method of claim 16, wherein the expander device defines a plurality of circumferentially spaced tubing engaging portions, at least one of which is radially extendable, and is rotated to create the annular extension in the tubing section.
- 19. The method of claim 18, wherein an initial radial extension of said at least one tubing engaging portion, prior to rotation of the device, deforms the tubing section and creates an initial contact between the intermediate tubing section and the outer tubing which is sufficient to hold the tubing section against rotation.
- 20. (Amended) The method of claim 1, wherein at the extension the intermediate tubing section is deformed such that an inner thickness of the tubing section wall is in compression, and an outer thickness of the wall is in tension.
- 21. A method of providing a downhole seal in a drilled bore between inner tubing and outer tubing, the method comprising: providing an intermediate tubing section defining means for sealingly engaging with the inner tubing; and deforming a portion of the intermediate tubing section downhole by compressive plastic deformation with a localised reduction in wall thickness resulting in a subsequent increase in diameter of the tubing section to form an annular extension, said extension forming a sealing contact with the outer tubing.
- 22. Apparatus for use in forming a downhole arrangement for permitting sealing between inner tubing and outer tubing utilising an intermediate tubing section fixed to and in sealing contact with the outer tubing and for sealingly engaging the inner tubing, the apparatus comprising an intermediate tubing section and a body carrying a plurality of circumferentially spaced tubing engaging portions for location within the tubing section, at least one of the tubing engaging portions being radially extendable to plastically deform a portion of the intermediate tubing section, the body being rotatable to form an annular extension in the intermediate tubing section for sealing engagement with the outer tubing.
- 23. The apparatus of claim 22, wherein the apparatus comprises at least three tubing engaging portions.
- 24. (Amended) The apparatus of claim 22, wherein the tubing engaging portions define rolling surfaces, such that following radial extension of said at least one tubing engaging portions the body may be rotated, with the tubing engaging portions in rolling contact with the intermediate tubing section, to create the intermediate tubing section extension.
- 25. (Amended) The apparatus of claim 22, wherein the tubing engaging portions are in the form of radially movable rollers.
- 26. The apparatus of claim 25, wherein the rollers have tapered ends for cooperating with tapered supports, at least one of the tapered supports being axially movable, such movement inducing radial movement of the rollers.
- 27. The apparatus of claim 26, wherein each roller defines a circumferential rib, to provide a small area, high pressure contact surface.
- 28. (Amended) The apparatus of claim 22, wherein said at least one tubing engaging portion is fluid actuated.
- 29. The apparatus of claim 28, wherein the tubing engaging portion is coupled to a piston.
- 30. The apparatus of claim 29, wherein a support for the tubing engaging portion is coupled to the piston via a bearing which permits relative rotational movement there between.
- 31. (Amended) The apparatus of claim 22, wherein the intermediate tubing section comprises a relatively ductile wall portion including said portion.
- 32. The apparatus of claim 31, wherein the intermediate tubing section comprises a polished bore portion.
- 33. (Amended) The apparatus of claim 22, wherein the intermediate tubing section comprises at least one band of relatively ductile material on an outer face thereof.
- 34. The apparatus of claim 33, wherein the relatively ductile material is provided in the form of a plurality of axially spaced bands.
- 35. (Amended) The apparatus of claim 22, wherein the intermediate tubing section comprises elements of relatively hard material on an outer face thereof.
- 36. A packer for providing a downhole seal in a drilled bore between inner tubing and outer tubing, the packer comprising an intermediate tubing section defining means for sealingly engaging with the inner tubing and a radially plastically deformed annular extension for sealing contact with the outer tubing.
- 37. A method of providing a downhole seal in a drilled bore between inner tubing and outer tubing, the method comprising: plastically deforming the inner tubing section downhole to form an annular extension, said extension creating a sealing contact with the outer tubing.
- 38. The method of claim 37, wherein said deformation of the inner tubing is at least partially as a result of compressive yield.
- 39. The method of claim 38, wherein said deformation of the inner tubing is by rolling expansion to cause compressive plastic deformation of the inner tubing and a localised reduction in wall thickness resulting in a subsequent increase in diameter.
- 40. (Amended) The method of claim 37, wherein the outer tubing is elastically deformed to grip the extension.
- 41. The method of claim 40, wherein the outer tubing is deformed from contact with the extension as the extension is formed.
- 42. (Amended) The method of claim 40, wherein the outer tubing is plastically deformed.
- 43. (Amended) The method of claim 37, wherein the inner tubing is production tubing.
- 44. (Amended) The method of claim 37, wherein the outer tubing is bore-lining casing.
- 45. (Amended) The method of claim 37, wherein the inner tubing is plastically deformed at a plurality of axially spaced locations to form a plurality of annular extensions.
- 46. A packer arrangement comprising outer and inner tubing for location downhole, the inner tubing having a radially plastically deformed annular extension for sealing contact with the outer tubing.
- 47. Apparatus for providing a sealing connection with outer tubing in a drilled bore to permit an item operatively associated with the apparatus to be sealingly located in the bore, the apparatus comprising a tubing section having a radially plastically deformed annular extension for sealing contact with the outer tubing and a non-deformed section for cooperating with the item to be located in the bore.
Priority Claims (4)
Number |
Date |
Country |
Kind |
9828234.6 |
Dec 1998 |
GB |
|
9900835.1 |
Jan 1999 |
GB |
|
9923783.6 |
Oct 1999 |
GB |
|
9924189.5 |
Oct 1999 |
GB |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of co-pending U.S. patent application Ser. No. 09/470,154, filed on Dec. 22, 1999. The co-pending application is incorporated by reference herein in its entirety.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09470154 |
Dec 1999 |
US |
Child |
10145599 |
May 2002 |
US |