Claims
- 1. An apparatus for use in a drill string comprising:an inner core assembly having a first and second transverse bore, said inner core assembly having a shoulder formed thereon, and wherein said inner core assembly has a first end and a second end; a first outer core assembly slidably disposed about said inner core assembly and resting on said shoulder, said first outer core assembly having a first and second transverse bore that is aligned with said first and second transverse bore of said inner core assembly; first piston means, disposed within said first and said second transverse bore of said first outer core assembly, for closing an internal longitudinal bore of said inner core assembly; and wherein said first end of said inner core assembly is connected to the drill string and said second end is operatively connected to a swivel.
- 2. The apparatus of claim 1 wherein said inner core assembly has contained thereon an indentation, and the apparatus further comprises:a ring inserted into said indentation, said ring abutting a top surface of said first outer core assembly.
- 3. The apparatus of claim 2 wherein said first piston means comprises:a first piston member disposed within the first transverse bore of said first outer core assembly; a second piston member disposed within the second transverse bore of said first outer core assembly; means for moving said first and second piston member into said internal longitudinal bore of said inner core assembly in order to close said internal longitudinal bore.
- 4. The apparatus of claim 3 wherein said first piston member includes a first sleeve disposed within said first transverse bore of said first outer core assembly; and wherein said second piston member includes a second sleeve disposed within said second transverse bore of said first outer core assembly.
- 5. The apparatus of claim 4 further comprising:a third and fourth transverse bore positioned within said inner core assembly; a third and fourth transverse bore positioned within said first outer core assembly that is aligned with said third and fourth transverse bore of said inner core assembly; and second piston means, disposed within said third and said fourth transverse bore of said first outer core assembly, for closing said internal longitudinal bore of said inner core assembly.
- 6. The apparatus of claim 1 further comprising:a second outer core assembly slidably disposed about said inner core assembly and resting on a first outer surface of said first outer core assembly, said second outer core assembly having a third and fourth transverse bore that is aligned with a third and fourth transverse bore located within said inner core assembly.
- 7. The apparatus of claim 6 further comprising:second piston means, disposed within said third and said fourth transverse bore of said second outer core assembly, for closing said internal longitudinal bore of said inner core assembly.
- 8. The apparatus of claim 7 wherein said inner core assembly has contained thereon an indentation, and the apparatus further comprises:a ring inserted into said indentation, said ring abutting a top surface of said second outer core assembly.
- 9. The apparatus of claim 8 wherein said first piston means comprises:a first piston member disposed within a first sleeve that is positioned within the first transverse bore of said first outer core assembly; a second piston member disposed within a second sleeve that is positioned within the second transverse bore of said first outer core assembly; and wherein said second piston means comprises: a third piston member disposed within a third sleeve that is positioned within the third transverse bore of said second outer core assembly; a fourth piston member disposed within a fourth sleeve that is positioned within the fourth transverse bore of said second outer core assembly; and wherein said apparatus further comprises: means for moving said first, second, third, and fourth piston members into said internal longitudinal bore of said inner core assembly in order to close said internal longitudinal bore.
- 10. The apparatus of claim 5 further comprising a pin means for maintaining said inner core assembly in line with said first outer core assembly.
- 11. A method of sealing off flow in a drill string during wireline operations comprising:providing an apparatus comprising an inner core assembly having a first and second transverse bore, said inner core assembly having a shoulder formed thereon; a first outer core assembly slidably disposed about said inner core assembly and resting on said shoulder, said first outer core assembly having a first and second transverse bore that is aligned with said first and second transverse bore of said inner core assembly; first piston means, disposed within said first and said second transverse bore of said first outer core assembly, for closing an internal longitudinal bore disposed through said inner core assembly; connecting the drill string to a first end of said inner core assembly; transmitting the weight of the drill string to said inner core assembly; rotating the drill string so that a torque is created; transmitting the torque through said inner core assembly; terminating the rotation of the drill string; closing said first piston means in order to seal off the internal longitudinal bore of said inner core assembly.
- 12. The method of claim 11 further comprising:opening said first piston means so that the internal longitudinal bore of said inner core assembly is unsealed; providing a wireline within said internal longitudinal bore of said inner core assembly, and wherein said wireline has attached thereto a down hole assembly; lowering the downhole assembly into the drill string; closing said first piston means about the wireline within said internal longitudinal bore of said inner core assembly.
- 13. The method of claim 12 further comprising:performing curative work on the wireline above said first piston means; opening said first piston means so that the internal longitudinal bore of said inner core assembly is unsealed; pulling out the drill string with the down hole assembly.
- 14. An apparatus for use in a tubular string comprising:an inner cylindrical core assembly having a first and second transverse bore, said inner cylindrical core assembly having a shoulder formed thereon, and wherein said inner cylindrical core assembly has a first end and a second end, and wherein said shoulder contains a first aperture therein; a first outer core assembly slidably disposed about said inner cylindrical core assembly and resting on said shoulder, said first outer core assembly having a first and second transverse bore that is aligned with said first and second transverse bore of said inner cylindrical core assembly, and wherein said first outer core assembly contains a second aperture therein; a pin member disposed through said first aperture and said second aperture, and wherein said pin member allows a longitudinal movement of said first outer core assembly relative to said inner cylindrical core assembly; first piston means, disposed within said first and said second transverse bore of said outer core assembly, for closing an internal longitudinal bore of said inner cylindrical core assembly; and wherein said first end of said inner cylindrical core assembly is connected to the tubular string.
- 15. The apparatus of claim 14 wherein said first piston means comprises:a first ram member disposed within the first bore of said first outer core assembly; a second ram member disposed within the second bore of said first outer core assembly; means for moving said first and second ram members into said internal longitudinal bore of said inner cylindrical core assembly in order to close said internal longitudinal bore.
- 16. The apparatus of claim 15 wherein said inner cylindrical core assembly has contained an indentation thereon and the apparatus further comprises:a ring inserted into said indentation, said ring abutting a top surface of said first outer core assembly, and wherein said second end of said inner cylindrical core assembly is operatively connected to a swivel so that said inner cylindrical core assembly can be rotated with said tubular string.
- 17. The apparatus of claim 16 wherein said first ram member includes a first sleeve disposed within said first transverse of said first outer core assembly; and wherein said second ram member includes a second sleeve disposed within said second transverse bore of said first outer core assembly.
- 18. The apparatus of claim 17 further comprising:a third and fourth transverse bore positioned within said inner cylindrical core assembly; a third and fourth transverse bore positioned within said first outer core assembly therein that is aligned with said third and fourth transverse bore of said inner cylindrical core assembly; and second piston means, disposed within said third and said fourth transverse bore of said first outer core assembly, for closing said internal longitudinal bore of said inner cylindrical core assembly.
- 19. The apparatus of claim 14 further comprising:a second outer core assembly slidably disposed about said inner cylindrical core assembly and resting on a top surface of said first outer core assembly, said second outer core assembly having a third and fourth transverse bore that is aligned with a third and fourth transverse bore located within said inner cylindrical core assembly.
- 20. The apparatus of claim 19 further comprising:second piston means, disposed within said third and said fourth transverse bore of said second outer core assembly, for closing the internal longitudinal bore of said inner cylindrical core assembly.
- 21. The apparatus of claim 20 wherein said inner cylindrical core assembly has contained an indentation thereon and the apparatus further comprises:a ring inserted into said indentation, said ring abutting a top surface of said second outer core assembly.
- 22. The apparatus of claim 21 wherein said first piston means comprises:a first ram member disposed within the first transverse bore of said first outer core assembly; a second ram member disposed within the second transverse of said first outer core assembly; and wherein said second piston means comprises: a third ram member disposed within the third transverse bore of said second outer core assembly; a fourth ram member disposed within the fourth transverse bore of said seocnd outer core assembly; and wherein the apparatus further comprises: means for moving said first, second, third, and fourth ram members into said internal longitudinal bore of said inner cylindrical core assembly in order to close said internal longitudinal bore.
- 23. The apparatus of claim 22 wherein said second end of said inner cylindrical core assembly is operatively connected to a swivel so that said inner cylindrical core assembly can be rotated with said tubular string.
- 24. A method of sealing off flow in a work string comprising:providing an apparatus having an inner core assembly having an internal bore, said inner core assembly having a shoulder formed thereon, and wherein said inner core assembly has a first end and a second end; a first outer core assembly slidably disposed about said inner core assembly and resting on said shoulder; connecting the work string to the first end of said inner core assembly; transmitting the weight of the work string to said inner core assembly; rotating the work string within the well bore so that a torque is created; transmitting the torque from the work string to said inner core assembly; terminating the rotation of the work string; providing a concentric tubular member within said internal bore of said inner core assembly; lowering the concentric tubular member into the work string; closing said first piston member and said second piston member about the concentric tubular member within said internal bore of said inner core assembly.
- 25. The method of claim 24 further comprising:pumping a fluid into the work string below the apparatus; monitoring a pressure within the work string; opening said first piston member and said second piston member so that the internal bore of said inner core assembly is unsealed; pulling the concentric tubular member out of the work string.
- 26. The method of claim 25 wherein the concentric tubular member is a wireline.
- 27. An apparatus for use in a tubular string, comprising:an inner core assembly, connected between a swivel on its upper end and the tubular string below; a first outer core assembly, having a central bore for slidable engagement around a portion of the inner core assembly; a first and second transverse bore in the first outer core assembly, corresponding to a first and second transverse bore in the inner core assembly; a first sleeve member disposed within said first transverse bore of said outer core assembly and a second sleeve member disposed within said second transverse bore of said first outer core assembly, said first and second sleeve members aligning with the first and second transverse bore of the inner core assembly; a first piston positioned within said first sleeve and a second piston positioned within said second sleeve for sealing off a longitudinal passageway in the inner core assembly.
- 28. The apparatus in claim 27 further comprising a shoulder formed on a wall of the inner core assembly upon which the first outer core assembly rests.
- 29. The apparatus in claim 28 further comprising a first aperture in said first outer core assembly and a second aperture in said inner core assembly; a pin slidably disposed within said first aperture and said second aperture so that said first outer core assembly is allowed to longitudinally move relative to said inner core assembly.
- 30. The apparatus in claim 29 further comprising means for moving said first and second piston from an open position to a closed position.
- 31. The apparatus in claim 30 further comprising a ring positioned above the first outer core assembly to maintain the first outer core assembly in place on the inner core assembly.
- 32. The apparatus in claim 27 further comprising at least a second outer core assembly positioned on the first outer core assembly, the second outer core assembly further comprising a second set of transverse bores which align with a second set of transverse bores in the central core assembly.
- 33. The apparatus of claim 32 further comprising a first aperture in said first outer core assembly and a second aperture in said inner core assembly; a pin slidably disposed within said first aperture and said second aperture so that said first outer core assembly is allowed to longitudinally move relative to said inner core assembly.
- 34. The apparatus in claim 33, wherein the first and second outer core assembly is able to float with any stretching or warping of the inner core assembly to eliminate any misalignment of the transverse bores of the first and second outer core assembly with the transverse bores of the inner core assembly.
- 35. The apparatus of claim 30 further comprising:a sub member attached to an upper end of the swivel, said sub member having an inner bore therein aligned with the longitudinal passageway of the inner core assembly, said inner bore of said sub member having a shoulder; a trap door assembly comprising: a sleeve mounted within said inner bore of said sub member; and a trap door pivotly mounted to said sleeve, said trap door having an open position and a closed position.
- 36. The apparatus of claim 35 wherein said trap door assembly further comprises:a kick gate assembly operatively associated with said sleeve, said kick gate assembly capable of moving said trap door from a closed position to an open position; and, wherein a blade device is capable of cutting a wireline extending through said inner bore of said sub member.
- 37. A method of sealing off flow in a tubular string during coiled tubing operations comprising:providing an apparatus having: an inner core assembly with a first and second transverse bore, said inner core assembly having a shoulder formed thereon; an internal bore formed through said inner core assembly; a first outer core assembly slidably disposed about said inner core assembly and resting on said shoulder; and, piston means, disposed within said first outer core assembly, for closing the internal bore of said inner core assembly; connecting the tubular string to a first end of said inner core assembly; connecting a swivel to a second end of said inner core assembly; transmitting the weight of the tubular string to said inner core assembly; lowering a coiled tubing into the tubular string and through the internal bore of said inner core assembly, the coiled tubing disposed within said tubular string creating an annular space; rotating the tubular string so that a torque is created; transmitting the torque through said inner core assembly; terminating the rotation of the tubular string; closing said piston means about the coiled tubing in order to seal off the annular space; pumping a fluid through a side entry sub located below the apparatus, the fluid being pumped into the annular space.
- 38. The method of claim 37 further comprising:opening said piston means so that the annular space is unsealed; running into the well bore with the coiled tubing to a desired depth; closing said piston means about the coiled tubing thereby closing the annular space.
- 39. The method of claim 38 further comprising:opening said piston means so that the annular space is opened; pulling on the tubular string; transmitting the weight of the tubular string through said outer core assembly; rotating the tubular string so that the torque is created; transmitting the torque to the outer core assembly; terminating the rotation of the tubular string; pulling the coiled tubing out of the tubular string.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of my application filed Nov. 26, 2001 and bearing Ser. No. 09/994,161.
US Referenced Citations (11)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/994161 |
Nov 2001 |
US |
Child |
10/190193 |
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US |