Claims
- 1. A downhole tool, comprising:
a tubular housing; a piston disposed within said tubular housing; a flow tube disposed at said piston; and a bi-directional flapper mechanism disposed in cooperable communication with said flow tube.
- 2. The downhole tool as claimed in claim 1, further comprising a spring disposed at said flow tube, said spring being configured to be compressed upon biasing said flow tube in a downhole direction.
- 3. The downhole tool of claim 2, wherein a downhole facing surface of said bi-directional flapper mechanism is engagable by a lower seat and base assembly.
- 4. The downhole tool as claimed in claim 1, further comprising a lock ring engagable with an uphole facing surface of said bi-directional flapper mechanism, said lock ring being configured to support pressure exerted on said bi-directional flapper mechanism from a downhole direction.
- 5. The downhole tool as claimed in claim 4 further comprising a set of teeth engagable by said lock ring, the engagement of said lock ring and said teeth providing the support of the pressure exerted on said bi-directional flapper mechanism from the downhole direction.
- 6. The downhole tool as claimed in claim 5, further comprising a ratcheting mechanism configured to disengage said lock ring from said teeth.
- 7. The downhole tool as claimed in claim 6 wherein said ratcheting mechanism comprises:
a piston, said piston being actuatable upon a pressurization; a spring configured to be biased by said piston; a pin disposed in operable communication with said spring; and a profiled slot engagable by said pin.
- 8. The downhole tool as claimed in claim 5 wherein said teeth are a one way thread.
- 9. The downhole tool as claimed in claim 5 wherein said teeth are wicker threads.
- 10. The downhole tool as claimed in claim 1 wherein said bi-directional flapper mechanism is configured to be disengagable by a shifting tool insertable into said downhole tool.
- 11. A bi-directional barrier device for a downhole tool positionable in a wellbore, said barrier comprising:
a flapper mechanism configured to provide a seal between opposing uphole- and downhole ends of said downhole tool upon actuation of said flapper mechanism, said flapper mechanism comprising,
a first flapper, and a second flapper articulably linked to said first flapper, said second flapper further being articulably linked to a base member, said base member being movable within said downhole tool.
- 12. The bi-directional barrier device as claimed in claim 11, wherein said flapper mechanism further comprises a locking device configured to support pressure exerted on said flapper mechanism from a first direction, and wherein said flapper mechanism further comprises a surface to support pressure exerted on said flapper mechanism from a second direction.
- 13. The barrier device as claimed in claim 12, wherein said locking device comprises a dog supported on a mandrel, said dog being configured to maintain said locking device in a locked configuration.
- 14. A method of controlling a flow of production fluids in a wellbore, the method comprising:
closing a barrier device across a tubing string of said wellbore; supporting said barrier device from a first direction; and supporting said barrier device from a second direction.
- 15. A method of controlling a flow or production fluids in a wellbore as claimed in claim 14 wherein said closing of said barrier device comprises:
removing a support member from said barrier device, and collapsing an articulably linked upper flapper/lower flapper arrangement at said barrier device such that said wellbore is blocked by said articulably linked upper flapper/lower flapper arrangement.
- 16. A method of controlling a flow or production fluids in a wellbore as claimed in claim 14 wherein said supporting of said barrier device from the pressure exerted on said barrier device from the first direction comprises shifting a support to a position to prevent opening of the barrier device.
- 17. A method of controlling a flow or production fluids in a wellbore as claimed in claim 16 wherein said shifting said support comprises depressurizing a chamber at a downhole side of said barrier device.
- 18. A method of controlling a flow or production fluids in a wellbore as claimed in claim 16 wherein said shifting comprises mechanically shifting said support.
- 19. A method of controlling a flow or production fluids in a wellbore as claimed in claim 16 wherein said shifting comprises electrically shifting said support.
- 20. A method of controlling a flow or production fluids in a wellbore as claimed in claim 16 wherein said shifting comprises hydraulically shifting said support.
- 21. A method of controlling a flow or production fluids in a wellbore as claimed in claim 16 wherein said setting down weight on a line at which said barrier device is located.
- 22. A method of controlling a flow or production fluids in a wellbore as claimed in claim 14 wherein said supporting of said barrier device from the pressure exerted on said barrier device from the second direction comprises:
pressurizing said tubing string uphole from said barrier device, biasing a lock ring in a downhole direction to close said barrier device, and engaging said lock mechanism with a set of wicker threads.
- 23. A method of controlling a flow or production fluids in a wellbore as claimed in claim 14 further comprising opening said barrier device.
- 24. A method of controlling a flow or production fluids in a wellbore as claimed in claim 23 wherein said opening comprises unsupporting said barrier device.
- 25. A method of controlling a flow or production fluids in a wellbore as claimed in claim 24 wherein said unsupporting is unsupporting said barrier device from said pressure exerted from said first direction and from said second direction.
- 26. A method of controlling a flow or production fluids in a wellbore as claimed in claim 24 wherein said unsupporting is by shifting one or more supports.
- 27. A method of controlling a flow or production fluids in a wellbore as claimed in claim 23 wherein said opening of said barrier device comprises:
applying a pressure to said tubing string uphole from said barrier device, compressing a spring to cause a pin to translate through a milled profile in a downhole direction; bleeding off the pressure in said tubing string to allow said pin to translate in an uphole direction; and un-supporting said barrier device from the pressure exerted on said barrier device from the second direction.
- 28. A fluid control device comprising:
a housing; a double flapper disposed at said housing; and a support engageable to support said double flapper.
- 29. A fluid control device as claimed in claim 28 wherein said support is a seat and supports said double flapper in a closed position.
- 30. A fluid control device as claimed in claim 28 wherein said support is of a plurality of components to support said double flapper against pressure exerted on said double flapper from uphole of said double flapper and from downhole of said double flapper.
- 31. A double flapper for a fluid control device comprising:
a first flapper; and a second flapper articulatively coupled to said first flapper.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of an earlier filing date from U.S. Provisional Application Serial No. 60/342,721 filed Dec. 19, 2001, the entire disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60342721 |
Dec 2001 |
US |