Claims
- 1. A method of installing an annular metal seal (54) about the outer rough surface of a casing (11) projecting upwardly above a casing head (12), the metal seal arranged and designed to be energized for sealing between the casing and a tubing spool mounted on the casing head after the metal seal has been positioned on the casing; said method comprising the steps of:
- installing a bushing (22) around said outer rough surface of said casing at a position above said casing head (12);
- positioning a slip mechanism (40) about the outer periphery of said casing (11) for support from a top surface of said bushing (22), said slip mechanism having a gripping face which engages the casing (11);
- positioning a cam member (42) about a cam surface of said slip mechanism in preparation for engaging the slip mechanism (40) to urge the slip mechanism into biting engagement with the outer surface of the casing;
- exerting a downward force against the cam member to cam said slip mechanism inwardly into tight gripping relation with the casing with downward movement of the slip mechanism (40) resisted by the said bushing;
- next, positioning a metal seal (54) over the end of said casing (11) with axial support of said metal seal (54) by said slip mechanism (40); and
- next, mounting a tubing spool (50) about said outer rough surface of said casing (11) and connecting said tubing spool (50) to said casing spool (12) with an inner peripheral surface of said tubing spool (50) engaging said metal seal (54) for forcing said seal radially into sealing relation with the outer surface of said casing (11).
- 2. The method of claim 1 wherein,
- said metal seal is fabricated of relatively soft metal.
- 3. The method of claim 2 wherein,
- said metal seal is fabricated of stainless steel AISI 316 and is characterized by a UNS name of 531,600 with a Rockwell "B" of 83 HRB Max and a yield strength of 30,000 psi min.
- 4. A method of installing an annular metal seal (54) about an outer rough surface of a casing (11) which projects upwardly above a casing head (12), said metal seal (54) adapted to be energized for sealing between said casing (11) and a tubing head (50), the method comprising the steps of:
- installing a slip mechanism (40, 42) for supporting and positioning said metal seal (54) about the outer periphery of the casing (11), said slip mechanism including slips (40) having teeth for engaging the casing and a cam member (42) for urging the slips (40) into biting engagement with an outer surface of the casing;
- installing a bushing (22) about said casing below said slip mechanism for support of said slip mechanism;
- positioning a slip installing tool (18) having a push ring (44) over the upper end of said projecting casing (11) onto said casing head (12) with said push ring (44) engaging said cam member (42);
- forcing said cam member (42) downwardly with said slip installing tool (18) for moving said slips (40) inwardly to grip said casing (11) with the cam member (42) remaining in position adjacent the slips; then, removing the slip installing tool (18) from the upper end of said casing (11) while the slips (40) and said cam member (42) remain in position on said casing (11);
- then, positioning said metal seal (54) over a top end of said projecting casing (11) while being supported against an upper surface of the cam member (46); and
- next, placing a tubing head (50) over the upper end of said casing (11) and connecting a lower end of said tubing head (50) to an upper end of the said casing housing (12) with an inner peripheral surface of said tubing head (50) engaging said metal seal (54) for urging said metal seal (54) into sealing relation with the outer surface of said casing.
- 5. The method of claim 4 further comprising the steps of,
- prior to connecting said lower end of said tubing head (50) to said upper end of said casing head (12), measuring the axial distance between the bottom end of said tubing head (50) and the top end of said casing head (12);
- then removing said tubing head (50) from said casing (11);
- placing at least one shim (60) between said metal seal (54) and said cam member (42) to insure that the bottom end of said tubing head (50) and the top end of said casing head (12) is separated by a predetermined axial distance; and
- again placing said tubing head (50) over the upper end of said casing (11).
- 6. The method of claim 4 wherein,
- when said cam member (42) is forced downwardly for camming said slips radially inward toward said casing (11), said bushing (22) axially supports said slips and limits axial movement of the cam member (42) during the camming action.
- 7. The method of claim 4 further including the steps of:
- installing screws (24) on said slip installing tool (18) for said bushing (22); and
- actuating said screws (24) to engage said bushing (22) and position said bushings (22) accurately on said casing (11).
- 8. A metal-to-metal sealing arrangement for sealing about the outer rough surface of a casing (11) projecting from the upper end of a casing head (12); said sealing arrangement comprising:
- slips (40) having teeth arranged and designed to grip the casing;
- a cam member (42) arranged and designed to force the slips (40) radially into engagement with said casing (11) when forced downwardly toward said wellhead housing;
- a metal seal (54) positioned about the casing (11) above the slips (40) and carried by the slips (40); and
- a tubing head (50) positioned over the casing (11) and abutting the casing head (12) and having an inner peripheral sealing surface (96) in contact with said metal seal (54) to deform said metal seal against the rough outer surface of the casing (18) while said seal is carried by said slips (40).
- 9. The metal-to-metal sealing arrangement of claim 8 wherein,
- said tubing head (50) and said casing head (12) have mating flanges (16, 5); and a fastener (60) clamps said mating flanges together.
- 10. The metal-to-metal sealing arrangement of claim 8 further comprising,
- a bushing (22) mounted about said casing (11) for supporting said slips (40) when said slips (40) are forced inwardly to grip said casing (11) when said cam member (42) is forced downwardly, said bushing (22) being positioned in an annular space between said casing (11) and said tubing head (50), said bushing 22 also providing a second sealing member for testing of said metal seal (54).
- 11. The metal-to-metal sealing arrangement of claim 10 wherein,
- said bushing (22) is coupled to said casing housing (12) during camming of said slips (40) by said cam member (42) into gripping relation thereby to oppose the forces exerted by the camming action.
- 12. Apparatus for applying an annular metal seal (54) about an outer rough surface of a casing (11) projecting from the upper end of a casing head (12) with the metal seal (54) adapted to be energized for sealing between the casing (11) and a tubing head (50); said apparatus comprising:
- a slip assembly mounted on an end portion of the casing which projects upwardly above the casing head (12); the slip assembly including slips (40) having teeth which are arranged and designed to engage the casing (11), a cam member (42) for forcing the slips (40) into gripping engagement with the casing (11), and a bushing (22) below the slips for supporting the slips at a predetermined position on the casing;
- a tool (18) for forcing the cam member (42) to cam the slips (40) to grip the casing (11) while supported on said slip support (22);
- a metal seal ring (54) positioned about the casing (11) above the slips (40) and carried by the slips; and
- a tubing head (50) positioned over an end of the casing (11), said tubing head (50) arranged and designed to abut the casing head (12) and having an inner peripheral sealing surface (96) which contacts said metal seal ring (54) to deform said metal seal ring (54) against the rough outer surface of the casing (11) for providing a metal seal between the tubing head (50) and the casing (11) where said tubing head (50) is connected to said casing head.
- 13. The apparatus of claim 12 wherein,
- said tool for forcing the cam member (46) includes a hydraulic piston (30) and a push ring (44) arranged to engage the cam member (42) and for forcing the cam member (42) downwardly against the slips (40), said bushing (22) limiting axial movement of said slips (40) as said cam member (42) is pushed downwardly.
- 14. The apparatus of claim 12 wherein,
- at least one shim (60) is positioned between said cam member (42) and said annular metal seal (54), said shim arranged and designed to create a predetermined spacing (S) between a bottom surface (5) of said tubing head (50) and a top surface (16) of said casing head after positioning of said tubing head over said casing (11) but before connection of said tubing head (50) to said casing head (12).
- 15. A slip installation tool and slip assembly arrangement where the slip assembly is arranged and designed to fit over the upper end of a casing (11) which projects upwardly from a casing head (12) in which the casing (11) is positioned; the arrangement comprising:
- an outer cylindrical wall (19) having an open lower end to receive a projecting end portion of the casing (11) and abutting against the casing head (12);
- a slip assembly mounted within the open end of the tool including a bushing (22) for fitting about the casing, slips (40) supported on said bushing (22) and a cam ring (42) which engages an outer surface of the slips (40) for urging the slips (40) inwardly; and
- a piston (30) coupled to said cam member (42) which exerts a downward force on the cam member (42) to force the slips (40) inwardly to grip the outer surface of the casing (11).
- 16. The arrangement of claim 15 wherein,
- said piston (30) is coupled to said cam member (42) via an energizing ring (44) placed between a bottom surface of said piston (30) and a top surface of said cam ring.
RELATED APPLICATION
This application claims priority from Provisional Application 60/084,750 filed on May 8, 1998.
US Referenced Citations (5)