Claims
- 1. A method for underbalanced drilling a well bore through a well bore formation, a first tubular string being cemented in said wellbore, said first tubular string having a bottom end, a second tubular string for said well bore, a drilling string being moveable through the second tubular string, said method comprising:providing said second tubular string for placement within said well bore, said second tubular string being an outermost tubular string at well depths below said bottom end of said first tubular string; mounting a deployment valve within said second tubular string such that at least a portion of said deployment valve is positioned at a well depth above said bottom end of said first tubular string; cementing said second tubular string at least below said bottom end of said first tubular string within said well bore; and controlling a fluid pressure for opening and closing said deployment valve.
- 2. The method of claim 1, further comprising:providing said drill string to be moveable through said second tubular string and said deployment valve when said deployment valve is in an open position, said deployment valve being closeable when said drill string is no longer positioned within said deployment valve.
- 3. The method of claim 1, further comprising:extending said drill string through said deployment valve, drilling into a reservoir portion of said well bore formation below said second tubular string.
- 4. The method of claim 3, further comprising:pulling said drill string from said reservoir portion into said second tubular string, and closing said deployment valve.
- 5. The method of claim 4, further comprising:reducing pressure in said second tubular string above said deployment valve.
- 6. The method of claim 4, further comprising:removing said drill string from said well bore.
- 7. The method of claim 1, further comprising:introducing said drill string into said second tubular string when said deployment valve is closed.
- 8. The method of claim 7, further comprising:pressurizing said second tubular string above said deployment valve.
- 9. The method of claim 8, further comprising:opening said deployment valve.
- 10. The method of claim 9, further comprising:extending said drill string through said deployment valve.
- 11. The method of claim 1, further comprising:mounting said deployment valve on said second tubular string prior to providing said drill string within said well bore.
- 12. The method of claim 1, further comprising:mounting said deployment valve on said second tubular string after providing said drill string within said well bore.
- 13. A deployment valve system for an underbalanced drilling system to form a well bore through a well bore formation with a drilling string, said drilling string having a drill bit and said drill bit having an outer diameter, said drilling string being operable for drilling into a formation reservoir, a first tubular string cemented into said wellbore said first tubular string having a bottom end, said wellbore having a second tubular string therein securable with respect to said well bore formation, said second tubular string below said bottom end of said first tubular string being an outermost tubular string within said well bore, said drilling string being moveable into and out of said second tubular string for drilling into said formation reservoir and having a light point such that upwardly directed forces acting on said drilling string are greater than downwardly acting forces, said deployment valve system comprising:a deployment valve body positionable in said second tubular string such that at least a portion of said deployment valve body is mounted at a wellbore depth above said bottom end of said first tubular string, said deployment valve comprising, said deployment valve body having a valve body outer diameter no greater than ten percent larger of an outer diameter of any adjacent tubular elements of said second tubular sting; a deployment valve element within said deployment valve body being moveable from an open position to a closed position; and a seal for said deployment valve such that said deployment valve is closeable with said seal therein for controlling a pressure below said deployment valve.
- 14. The deployment valve system of claim 13, further comprising:a rotating blowout preventer for sealing around said drilling string to contain pressure external to said drilling string.
- 15. The deployment valve system of claim 13, further comprising:said deployment valve element being one or more flapper valve elements moveable within said deployment valve, and one or more pivot connections to secure said one or more flapper valve elements to said deployment valve such that said one or more flapper valve elements are moveable between said open position and said closed position.
- 16. The deployment valve system of claim 13, further comprising:at least one hydraulic line for controlling movement of said deployment valve element.
- 17. The deployment valve system of claim 13, further comprising:an annular control system for controlling movement of said deployment valve element.
- 18. The deployment valve system of claim 13, further comprising:said deployment valve body being openable to permit said drill bit to pass through said bore.
- 19. A method for underbalanced drilling of a well bore through a reservoir formation with a drilling string, a first tubular string being cemented into said well bore, said first tubular string having a bottom end, a second tubular string secured within said well bore wherein at least a portion of said second tubular string below said bottom end of said first tubular string is cemented into said well bore said second tubular string below said bottom end of said first tubular string being an outermost tubular string, said drilling string being operable for drilling into open hole at a well bore depth below said second tubular string, said method comprising:positioning a deployment valve within said second tubular string such that at least a portion or said deployment valve is positioned at a well depth above said bottom end of said first tubular string; controlling a fluid pressure for opening and closing said deployment valve; moving said drilling String through said second tubular string and said deployment valve; drilling open hole below said second tubular string; pulling said drilling string back into said second tubular string from said open hole; and closing said deployment valve.
- 20. The method of claim 19, further comprising:controlling a pressure at a well depth below said deployment valve by said step of closing said deployment valve, and bleeding off a tubular string pressure within said second tubular string at a well depth above said deployment valve.
- 21. The method of claim 19, further comprising:opening said second tubular string to atmospheric pressure, and removing said drilling string from said second tubular string.
- 22. The method of claim 19, further comprising:reinserting said drilling string into said second tubular string.
- 23. The method of claim 19, further comprising:positioning said deployment valve within said second tubular string at or below a depth at which forces acting upwardly on said drilling string are greater than forces acting downwardly on said drilling string.
- 24. A deployment valve system for an underbalanced drilling system to form a well bore through a well bore formation with a drilling string, said drilling string having a drill bit and said drill bit having an outer diameter, said drilling string being operable for drilling into a formation reservoir, said wellbore having a first tubular string therein secured with respect to said well bore formation by cementing said first tubular string in position, said first tubular string having a bottom end, said wellbore having a second tubular string secured therein such that at least a portion of said second tubular string below said bottom end of said first tubular string is cemented in position, said second tubular string below said bottom end of said first tubular string being an outermost tubular string with respect to said wellbore, said drilling string being moveable into and out of said second tubular string for drilling into said formation reservoir and having a string light point such that upwardly acting forces on said drilling string are greater than downwardly acting forces, said deployment valve system comprising:a deployment valve positionable in said second tubular string such that at least a portion of said deployment valve is mounted at a wellbore depth adjacent said bottom end of said first tubular string, said deployment valve comprising: a deployment valve element within said second deployment valve being moveable from an open position to a closed position in response to fluid pressure, said deployment valve in said open position having a passage therethrough sufficient to permit said drill bit to pass through said deployment valve, and a seal for said deployment valve such that said deployment valve is closeable with said seal therein for controlling a pressure below said deployment valve.
- 25. The deployment valve system of claim 24, further comprising:a rotating blowout preventer for sealing around said drilling string as said drilling string moves.
- 26. The deployment valve system of claim 25, further comprising:said deployment valve element being one or more flapper valve elements moveable within said deployment valve, and one or more pivot connections to secure said one or more flapper valve elements to said deployment valve such that said one or more flapper valve elements are moveable between said open position and said closed position.
- 27. The deployment valve system of claim 24, further comprising:said deployment valve being mounted adjacently above said formation reservoir.
- 28. The deployment valve system of claim 24, further comprising:a deployment valve positionable in said second tubular string such that it is mounted at or below a wellbore depth at which said upwardly acting forces on said drilling string are greater than said downwardly acting forces.
- 29. A deployment valve system for use in a wellbore, comprising:deployment valve being mountable within said wellbore said wellbore having a first wellbore tubular cemented into said wellbore, said first wellbore tubular having a bottom end, said deployment valve being mountable in a second wellbore tubular as a tabular section thereof, said second wellbore tubular being run into said wellbore to a wellbore depth below said bottom end of said first wellbore tubular and being cemented into position within said wellbore such that said deployment valve is mountable at a subterranean position in said well bore adjacent said bottom end of said first wellbore tubular, said second wellbore tubular having a bore therethrough, a drill string with a drill bit for drilling through said second tubular; a tubular body having an opening therethrough at least as large as said bore of said wellbore tubular; and a valve element mounted within said tubular body, said valve element being moveable for opening and closing said wellbore tubular in response to a control pressure, said valve element being controllable for opening said wellbore tubular to allow said drill bit and said drill string to pass therethrough, said valve element being controllable for closing and sealing said wellbore tubular after said drill bit and said drill string are pulled above a position in said wellbore tubular at which said valve element is positioned.
- 30. The deployment valve system of claim 29, further comprising:a flapper valve for said valve element.
- 31. The deployment valve system of claim 29, further comprising;a return force element mounted within said deployment valve for producing a return force for said valve element.
- 32. The deployment valve system of claim 31, further comprising:a pressurized chamber with a piston therein, said piston being moveable upon release of said control pressure for controlling closing of said valve element.
- 33. The deployment valve system of claim 29, further comprising:a plurality of annular pistons moveable within said tubular housing.
- 34. The deployment valve system of claim 29, further comprising:an outer diameter of said tubular body being no more than about ten percent of an outer diameter of any said wellbore tubular adjacent said tubular body.
- 35. The deployment valve system of claim 29, wherein:said control pressure is annularly applied.
- 36. The deployment valve system of claim 29, wherein:said control pressure is applied from a control line.
- 37. The deployment valve of system claim 29, further comprising:an indexing sleeve for controlling movement of said valve element in accordance with an indexing pattern.
Parent Case Info
This application claims the benefit of U.S. Provisional Application Ser. No. 60/085,893 filed May 18, 1998.
US Referenced Citations (23)
Provisional Applications (1)
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Number |
Date |
Country |
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60/085893 |
May 1998 |
US |