Claims
- 1. A seal apparatus for use in a subterranean wellbore having a remotely-located downhole wellbore tubular disposed therein, said wellbore tubular defining a remotely-located downhole wellbore surface of unknown condition having a particular nominal inner diameter, comprising:
- a conveyance tubular positionable within said subterranean wellbore on a wellbore tubular string at a selected location below said wellbore surface;
- a sealing ring, disposed about at least a portion of said conveyance tubular, said sealing ring having a first surface proximate said conveyance tubular and a second surface, said second surface being a sealing surface with a plurality of portions, with selected ones of said plurality of portions of said sealing ring extending radially from said conveyance tubular in at least one radial dimension and defining at least one metal seal point for selective sealing engagement with said wellbore surface;
- said conveyance tubular and said sealing ring together defining a tool portion with a predetermined outer diameter which determines a particular conveyance clearance relative to said remotely-located wellbore surface of unknown condition having a particular nominal inner diameter;
- wherein said seal apparatus is operable in a plurality of modes of operation, including:
- running mode of operation wherein said sealing ring is maintained in a radially-reduced position, to maintain said conveyance clearance and to maintain said sealing ring out of engagement with said wellbore surface for conveyance downward through said subterranean wellbore;
- a sealing mode of operation, during which said sealing ring is substantially deformed by at least as much as 15% to expand radially outward to completely span said conveyance clearance and to place said at least one metal seal point of said sealing ring in sealing metal-to-metal engagement with said wellbore surface, providing a fluid-tight seal at a selected location between said conveyance tubular and said wellbore tubular; and
- a substantially conical wedge ring, the wedge ring being selectively and remotely slidably insertable between the sealing ring and the conveyance tubular to selectively cause the wedge ring to urge said sealing ring between said running and sealing modes of operation.
- 2. A seal apparatus according to claim 1:
- wherein said wellbore surface comprises an inner surface of said wellbore tubular;
- wherein said first surface of said sealing ring comprises an inner surface which is proximate an outer surface of said conveyance tubular; and
- wherein said second surface of said sealing ring comprises an outer surface which sealingly engages said inner surface of said wellbore tubular during said sealing mode of operation.
- 3. A seal apparatus according to claim 1:
- wherein said sealing ring is radially expanded in shape, by deformation wedging action of said wedge ring, from said radially-reduced running mode of operation to said radially-expanded sealing mode of operation.
- 4. A seal apparatus according to claim 1:
- wherein said wedge ring drives said at least one metal seal point of said sealing ring into penetrating engagement with said wellbore surface of said wellbore tubular during said sealing mode of operation.
- 5. A seal apparatus according to claim 1:
- wherein said at least one metal seal point of said sealing ring comprises at least one circumferential seal bead which is generally triangular in cross-section, which is urged to penetrate said wellbore surface during said sealing mode of operation by operation of said actuator member.
- 6. A seal apparatus according to claim 1:
- wherein said seal apparatus further includes a layer of resilient material disposed over at least a portion of said sealing surface of said sealing ring, said layer of resilient material having an inner surface in engagement with said plurality of portions of said sealing ring, with said selected ones of said plurality of portions of said sealing rings extending radially outward and into said layer of resilient material, and in gripping engagement therewith, to prevent said layer of resilient material from swabbing-off during said running mode of operation.
- 7. A seal apparatus according to claim 6:
- wherein said layer of resilient material comprises an elastomeric band formed upon said sealing ring.
- 8. A seal apparatus according to claim 6:
- wherein said layer of resilient material includes an exterior surface of substantially uniform radially dimension, which sealingly engages said wellbore surface during said sealing mode of operation in supplementation of said at least one metal seal point of said sealing ring.
- 9. A seal apparatus according to claim 7:
- wherein said wellbore tubular is in contact with wellbore fluids; and
- wherein said layer of resilient material prevents entrapment of said wellbore fluids between selected ones of said at least one metal seal point during said sealing mode of operation.
- 10. A seal apparatus according to claim 1:
- wherein said plurality of portions of said sealing ring extend radially from said conveyance tubular and define a plurality of metal seal points for engagement with said wellbore surface during said sealing mode of operation;
- wherein a layer of resilient material is disposed over said sealing surface of said sealing ring and extends between said plurality of metal seal points; and
- wherein, during said sealing mode of operation, said plurality of metal seal points penetrate said wellbore surface, each providing a seal, and said layer of resilient material is urged into sealing contact with said wellbore surface, and is prevented from extrusion by said metal seal points.
- 11. A seal apparatus according to claim 1:
- wherein said seal apparatus further includes a layer of resilient material disposed over at least a portion of said sealing surface of said sealing ring;
- wherein said sealing surface of said sealing ring includes a plurality of portions which define a plurality of extender members which extend into said layer of resilient material, providing a skeletal structure for said layer of resilient material to prevent swabbing-off of said layer of resilient material during said running mode of operation.
- 12. A seal apparatus according to claim 11:
- wherein said plurality of extender members are oriented at selective angles relative to said sealing ring to counteract directional forces acting on said layer of resilient material during said running mode of operation.
- 13. A seal apparatus according to claim 11:
- wherein said plurality of extender members includes at least one extender member oriented generally outward and downward from said sealing surface of said sealing ring to counteract upward axial forces acting on said layer of resilient material during said running mode of operation, and at least one extender member oriented generally outward and upward from said sealing surface of said sealing ring to counteract downward axial forces acting on said layer of resilient material during said running mode of operation.
- 14. A seal apparatus according to claim 1:
- wherein said first surface of said sealing ring at least in-part defines a cavity between said sealing ring and said conveyance tubular, which is generally triangular in cross-section;
- wherein said wedge ring terminates at a tip portion which is generally triangular in cross-section, and which extends a selected distance into said cavity during said running mode of operation but which is urged deeper into said cavity during said sealing mode of operation;
- wherein said sealing ring is formed of a selected material which yields to expand a selected distance relative to said conveyance tubular in response to insertion of said wedge ring into said cavity.
- 15. A seal apparatus according to claim 14 further comprising:
- an actuator sleeve which circumferentially engages said conveyance tubular and is coupled to said wedge ring; and
- means for applying a selected axial force to said actuator sleeve.
- 16. In a wellbore containing fluid therein and having a tubular member disposed therein which includes a central bore which defines a wellbore surface having a particular nominal inner diameter, the method of sealing comprising:
- providing a metal conveyance tubular with a cylindrical outer surface;
- providing a metal sealing ring with at least one circular metal extender portion extending radially outward from an outer surface of said metal sealing ring, and having a contoured inner surface;
- placing said metal sealing ring around said metal conveyance tubular so that said contoured inner surface at least in-part defines an annular cavity around said metal conveyance tubular;
- wherein said metal conveyance tubular and said metal sealing ring together define a tool portion with a predetermined outer diameter which determines a particular conveyance clearance relative to said tubular member which includes a central bore which defined a wellbore surface having a particular nominal inner diameter;
- providing a metal conical wedge ring having a sloped outer surface;
- placing said metal conical wedge ring around said metal conveyance tubular and disposing at least a portion of it in said annular cavity;
- lowering said metal conveyance tubular, said metal sealing ring, and said metal conical wedge ring to a desired downhole remote location of unknown condition within said wellbore within said central bore of said tubular member;
- applying an axial load to said metal conical wedge ring to drive said metal conical wedge ring between said metal conveyance tubular and said metal sealing ring and cause said metal sealing ring to deform by substantially expanding radially outward by at least as much as 15% to completely span said conveyance clearance and to urge said at least one circular metal extender portion into sealing metal-to-metal engagement with said wellbore surface of said tubular member; and
- wherein an annular region defined between said conveyance tubular and said tubular member is occluded by a gas-tight barrier which is composed substantially entirely of metal components.
- 17. The method of sealing according to claim 16, further comprising:
- providing a layer of resilient material;
- securing said layer of resilient material to said outer surface of said metal sealing ring; and
- sealing, with at least a portion of said layer of resilient material, against said wellbore surface in supplementation to metal-to-metal sealing engagement of said at least one circular metal extender portion and said wellbore surface.
- 18. The method of sealing according to claim 17, wherein said at least one circular metal extender portion comprises a plurality of circular metal extender portions, further comprising:
- evacuating said fluid from between said plurality of circular metal extender portions to prevent entrapment of said fluid between said metal sealing ring and said wellbore surface.
- 19. The method of sealing according to claim 18, further comprising:
- containing at least a portion of said layer of resilient material between selected ones of said plurality of circular metal extender portions in a manner which prevents extrusion.
- 20. The method of sealing according to claim 17, further comprising:
- counteracting, with said at least one circular metal extender portion, axial forces on said layer of resilient material to prevent detachment of said layer of resilient material from said outer surface of said metal sealing ring.
- 21. A seal apparatus for use in a subterranean wellbore having a remotely-located downhole wellbore tubular disposed therein, said wellbore tubular defining a remotely-located downhole wellbore surface of unknown condition having a particular nominal inner diameter, comprising:
- a conveyance tubular positionable within said subterranean wellbore on a wellbore tubular string at a selected location below said wellbore surface;
- a sealing ring, disposed about at least a portion of said conveyance tubular, said sealing ring having a first surface proximate said conveyance tubular and a second surface, said second surface being a sealing surface with a plurality of portions, with selected ones of said plurality of portions of said sealing ring extending radially from said conveyance tubular in at least one radial dimension and defining at least one metal seal point for selective sealing engagement with said wellbore surface;
- said conveyance tubular and said sealing ring together defining a tool portion with a predetermined outer diameter which determines a particular conveyance clearance relative to said remotely-located wellbore surface of unknown condition having a particular nominal inner diameter;
- wherein said seal apparatus is operable in a plurality of modes of operation, including:
- running mode of operation wherein said sealing ring is maintained in a radially-reduced position, to maintain said conveyance clearance and to maintain said sealing ring out of engagement with said wellbore surface for conveyance downward through said subterranean wellbore;
- a sealing mode of operation, during which said sealing ring is deformed, by at least as much as 5% to 15% of said predetermined outer diameter which is defined by said conveyance tubular and said sealing ring assembled together, to expand radially outward to completely span said conveyance clearance and to place said at least one metal seal point of said sealing ring is in sealing metal-to-metal engagement with said wellbore surface, providing a fluid-tight seal at a selected location between said conveyance tubular and said wellbore tubular; and
- a substantially conical wedge ring, the wedge ring being selectively and remotely slidably insertable between the sealing ring and the conveyance tubular to selectively cause the wedge ring to urge said sealing ring between said running and sealing modes of operation.
- 22. A seal apparatus according to claim 21:
- wherein said wellbore surface comprises an inner surface of said wellbore tubular;
- wherein said first surface of said sealing ring comprises an inner surface which is proximate an outer surface of said conveyance tubular; and
- wherein said second surface of said sealing ring comprises an outer surface which sealingly engages said inner surface of said wellbore tubular during said sealing mode of operation.
- 23. A seal apparatus according to claim 21: wherein said sealing ring is radially expanded in shape, by deformation wedging action of said wedge ring, from said radially-reduced running mode of operation to said radially-expanded sealing mode of operation.
- 24. A seal apparatus according to claim 21:
- wherein said Wedge ring drives said at least one metal seal point of said sealing ring into penetrating engagement with said wellbore surface of said wellbore tubular during said sealing mode of operation.
- 25. A seal apparatus according to claim 21:
- wherein said at least one metal seal point of said sealing ring comprises at least one circumferential seal bead which is generally triangular in cross-section, which is urged to penetrate said wellbore surface during said sealing mode of operation by operation of said actuator member.
- 26. A seal apparatus according to claim 21:
- wherein said seal apparatus further includes a layer of resilient material disposed over at least a portion of said sealing surface of said sealing ring, said layer of resilient material having an inner surface in engagement with said plurality of portions of said sealing ring, with said selected ones of said plurality of portions of said sealing rings extending radially outward and into said layer of resilient material, and in gripping engagement therewith, to prevent said layer of resilient material from swabbing-off during said running mode of operation.
- 27. A seal apparatus according to claim 26:
- wherein said layer of resilient material comprises an elastomeric band formed upon said sealing ring.
- 28. A seal apparatus according to claim 26:
- wherein said layer of resilient material includes an exterior surface of substantially uniform radially dimension, which sealingly engages said wellbore surface during said sealing mode of operation in supplementation of said at least one metal seal point of said sealing ring.
- 29. A seal apparatus according to claim 27:
- wherein said wellbore tubular is in contact with wellbore fluids; and
- wherein said layer of resilient material prevents entrapment of said wellbore fluids between selected ones of said at least one metal seal point during said sealing mode of operation.
- 30. A seal apparatus according to claim 21:
- wherein said plurality of portions of said sealing ring extend radially from said conveyance tubular and define a plurality of metal seal points for engagement with said wellbore surface during said sealing mode of operation;
- wherein a layer of resilient material is disposed over said sealing surface of said sealing ring and extends between said plurality of metal seal points; and
- wherein, during said sealing mode of operation, said plurality of metal seal points penetrate said wellbore surface, each providing a seal, and said layer of resilient material is urged into sealing contact with said wellbore surface, and is prevented from extrusion by said metal seal points.
- 31. A seal apparatus according to claim 21:
- wherein said seal apparatus further includes a layer of resilient material disposed over at least a portion of said sealing surface of said sealing ring;
- wherein said sealing surface of said sealing ring includes a plurality of portions which define a plurality of extender members which extend into said layer of resilient material, providing a skeletal structure for said layer of resilient material to prevent swabbing-off of said layer of resilient material during said running mode of operation.
- 32. A seal apparatus according to claim 31:
- wherein said plurality of extender members are oriented at selective angles relative to said sealing ring to counteract directional forces acting on said layer of resilient material during said running mode of operation.
- 33. A seal apparatus according to claim 31:
- wherein said plurality of extender members includes at least one extender member oriented generally outward and downward from said sealing surface of said sealing ring to counteract upward axial forces acting on said layer of resilient material during said running mode of operation, and at least one extender member oriented generally outward and upward from said sealing surface of said sealing ring to counteract downward axial forces acting on said layer of resilient material during said running mode of operation.
- 34. A seal apparatus according to claim 21:
- wherein said first surface of said sealing ring at least in-part defines a cavity between said sealing ring and said conveyance tubular, which is generally triangular in cross-section;
- wherein said wedge ring terminates at a tip portion which is generally triangular in cross-section, and which extends a selected distance into said cavity during said running mode of operation but which is urged deeper into said cavity during said sealing mode of operation;
- wherein said sealing ring is formed of a selected material which yields to expand a selected distance relative to said conveyance tubular in response to insertion of said wedge ring into said cavity.
- 35. A seal apparatus according to claim 34 further comprising:
- an actuator sleeve which circumferentially engages said conveyance tubular and is coupled to said wedge ring; and
- means for applying a selected axial force to said actuator sleeve.
- 36. In a wellbore containing fluid therein and having a tubular member disposed therein which includes a central bore which defines a wellbore surface having a particular nominal inner diameter, the method of sealing comprising:
- providing a metal conveyance tubular with a cylindrical outer surface;
- providing a metal sealing ring with at least one circular metal extender portion extending radially outward from an outer surface of said metal sealing ring, and having a contoured inner surface;
- placing said metal sealing ring around said metal conveyance tubular so that said contoured inner surface at least in-part defines an annular cavity around said metal conveyance tubular;
- wherein said metal conveyance tubular and said metal sealing ring together define a tool portion with a predetermined outer diameter which determines a particular conveyance clearance relative to said tubular member which includes a central bore which defined a wellbore surface having a particular nominal inner diameter;
- providing a metal conical wedge ring having a sloped outer surface;
- placing said metal conical wedge ring around said metal conveyance tubular and disposing at least a portion of it in said annular cavity;
- lowering said metal conveyance tubular, said metal sealing ring, and said metal conical wedge ring to a desired downhole remote location of unknown condition within said wellbore to a position within said central bore of said tubular member;
- applying an axial load to said metal conical wedge ring to drive said metal conical wedge ring between said metal conveyance tubular and said metal sealing ring and cause said metal sealing ring to deform by expanding radially outward by an amount at least as much as 5% to 15% of said predetermined outer diameter which is defined by said metal conveyance tubular and said metal sealing ring assembled together, to completely span said conveyance clearance and to urge said at least one circular metal extender portion into sealing metal-to-metal engagement with said wellbore surface of said tubular member; and
- wherein an annular region defined between said conveyance tubular and said tubular member is occluded by a gas-tight barrier which is composed substantially entirely of metal components.
- 37. The method of sealing according to claim 36, further comprising:
- providing a layer of resilient material;
- securing said layer of resilient material to said outer surface of said metal sealing ring; and
- sealing, with at least a portion of said layer of resilient material, against said wellbore surface in supplementation to metal-to-metal sealing engagement of said at least one circular metal extender portion and said wellbore surface.
- 38. The method of sealing according to claim 37, wherein said at least one circular metal extender portion comprises a plurality of circular metal extender portions, further comprising:
- evacuating said fluid from between said plurality of circular metal extender portions to prevent entrapment of said fluid between said metal sealing ring and said wellbore surface.
- 39. The method of sealing according to claim 38, further comprising:
- containing at least a portion of said layer of resilient material between selected ones of said plurality of circular metal extender portions in a manner which prevents extrusion.
- 40. The method of sealing according to claim 37, further comprising: counteracting, with said at least one circular metal extender portion, axial forces on said layer of resilient material to prevent detachment of said layer of resilient material from said outer surface of said metal sealing ring.
- 41. A seal apparatus for use in a subterranean wellbore having a remotely-located downhole wellbore tubular disposed therein, said wellbore tubular defining a remotely-located downhole wellbore surface of unknown condition having a particular nominal inner diameter, comprising:
- a conveyance tubular positionable within said subterranean wellbore on a wellbore tubular string at a selected location below said wellbore surface;
- a sealing ring, disposed about at least a portion of said conveyance tubular, said sealing ring having a first surface proximate said conveyance tubular and a second surface, said second surface being a sealing surface with a plurality of portions, with selected ones of said plurality of portions of said sealing ring extending radially from said conveyance tubular in at least one radial dimension and defining at least one metal seal point for selective sealing engagement with said wellbore surface;
- said conveyance tubular and said sealing ring together defining a tool portion with a predetermined outer diameter which determines a particular conveyance clearance relative to said remotely-located wellbore surface of unknown condition having a particular nominal inner diameter;
- wherein said seal apparatus is operable in a plurality of modes of operation, including:
- running mode of operation wherein said sealing ring is maintained in a radially-reduced position, to maintain said conveyance clearance and to maintain said sealing ring out of engagement with said wellbore surface for conveyance downward through said subterranean wellbore;
- a sealing mode of operation, during which said sealing ring is deformed to expand radially outward to completely span said conveyance clearance and to place said at least one metal seal point of said sealing ring is in sealing metal-to-metal engagement with said wellbore surface, providing a fluid-tight seal at a selected location between said conveyance tubular and said wellbore tubular;
- a substantially conical wedge ring, the wedge ring being selectively and remotely slidably insertable between the sealing ring and the conveyance tubular to selectively cause the wedge ring to urge said sealing ring between said running and sealing modes of operation;
- wherein, while urging said sealing ring between said running and sealing modes of operation, said substantially conical wedge ring is in sliding metal-to-metal engagement with said conveyance tubular at a first interface and with said sealing ring at a second interface;
- a first dynamic sliding interface seal located at said first interface for sealing a potential leak path therethrough; and
- a second dynamic sliding interface seal located at said second interface for sealing a potential leak path therethrough.
- 42. A seal apparatus according to claim 41:
- wherein said wellbore surface comprises an inner surface of said wellbore tubular;
- wherein said first surface of said sealing ring comprises an inner surface which is proximate an outer surface of said conveyance tubular; and
- wherein said second surface of said sealing ring comprises an outer surface which sealingly engages said inner surface of said wellbore tubular during said sealing mode of operation.
- 43. A seal apparatus according to claim 41:
- wherein said sealing ring is radially expanded in shape, by deformation wedging action of said wedge ring, from said radially-reduced running mode of operation to said radially-expanded sealing mode of operation.
- 44. A seal apparatus according to claim 41:
- wherein said wedge ring drives said at least one metal seal point of said sealing ring into penetrating engagement with said wellbore surface of said wellbore tubular during said sealing mode of operation.
- 45. A seal apparatus according to claim 41:
- wherein said at least one metal seal point of said sealing ring comprises at least one circumferential seal bead which is generally triangular in cross-section, which is urged to penetrate said wellbore surface during said sealing mode of operation by operation of said actuator member.
- 46. A seal apparatus according to claim 41:
- wherein said seal apparatus further includes a layer of resilient material disposed over at least a portion of said sealing surface of said sealing ring, said layer of resilient material having an inner surface in engagement with said plurality of portions of said sealing ring, with said selected ones of said plurality of portions of said sealing rings extending radially outward and into said layer of resilient material, and in gripping engagement therewith, to prevent said layer of resilient material from swabbing-off during said running mode of operation.
- 47. A seal apparatus according to claim 46:
- wherein said layer of resilient material comprises an elastomeric band formed upon said sealing ring.
- 48. A seal apparatus according to claim 46:
- wherein said layer of resilient material includes an exterior surface of substantially uniform radially dimension, which sealingly engages said wellbore surface during said sealing mode of operation in supplementation of said at least one metal seal point of said sealing ring.
- 49. A seal apparatus according to claim 47:
- wherein said wellbore tubular is in contact with wellbore fluids; and
- wherein said layer of resilient material prevents entrapment of said wellbore fluids between selected ones of said at least one metal seal point during said sealing mode of operation.
- 50. A seal apparatus according to claim 41:
- wherein said plurality of portions of said sealing ring extend radially from said conveyance tubular and define a plurality of metal seal points for engagement with said wellbore surface during said sealing mode of operation;
- wherein a layer of resilient material is disposed over said sealing surface of said sealing ring and extends between said plurality of metal seal points; and
- wherein, during said sealing mode of operation, said plurality of metal seal points penetrate said wellbore surface, each providing a seal, and said layer of resilient material is urged into sealing contact with said wellbore surface, and is prevented from extrusion by said metal seal points.
- 51. A seal apparatus according to claim 41:
- wherein said seal apparatus further includes a layer of resilient material disposed over at least a portion of said sealing surface of said sealing ring;
- wherein said sealing surface of said sealing ring includes a plurality of portions which define a plurality of extender members which extend into said layer of resilient material, providing a skeletal structure for said layer of resilient material to prevent swabbing-off of said layer of resilient material during said running mode of operation.
- 52. A seal apparatus according to claim 51:
- wherein said plurality of extender members are oriented at selective angles relative to said sealing ring to counteract directional forces acting on said layer of resilient material during said running mode of operation.
- 53. A seal apparatus according to claim 51:
- wherein said plurality of extender members includes at least one extender member oriented generally outward and downward from said sealing surface of said sealing ring to counteract upward axial forces acting on said layer of resilient material during said running mode of operation, and at least one extender member oriented generally outward and upward from said sealing surface of said sealing ring to counteract downward axial forces acting on said layer of resilient material during said running mode of operation.
- 54. A seal apparatus according to claim 41:
- wherein said first surface of said sealing ring at least in-part defines a cavity between said sealing ring and said conveyance tubular, which is generally triangular in cross-section;
- wherein said wedge ring terminates at a tip portion which is generally triangular in cross-section, and which extends a selected distance into said cavity during said running mode of operation but which is urged deeper into said cavity during said sealing mode of operation;
- wherein said sealing ring is formed of a selected material which yields to expand a selected distance relative to said conveyance tubular in response to insertion of said wedge ring into said cavity.
- 55. A seal apparatus according to claim 54 further comprising:
- an actuator sleeve which circumferentially engages said conveyance tubular and is coupled to said wedge ring; and
- means for applying a selected axial force to said actuator sleeve.
- 56. In a wellbore containing fluid therein and having a tubular member disposed therein which includes a central bore which defines a wellbore surface having a particular nominal inner diameter, the method of sealing comprising:
- providing a metal conveyance tubular with a cylindrical outer surface carrying a first dynamic sliding interface seal;
- providing a metal sealing ring with at least one circular metal extender portion extending radially outward from an outer surface of said metal sealing ring, and having a contoured inner surface carrying a second dynamic sliding interface seal;
- placing said metal sealing ring around said metal conveyance tubular so that said contoured inner surface at least in-part defines an annular cavity around said metal conveyance tubular;
- wherein said metal conveyance tubular and said metal sealing ring together define a tool portion with a predetermined outer diameter which determines a particular conveyance clearance relative to said tubular member which includes a central bore which defined a wellbore surface having a particular nominal inner diameter;
- providing a metal substantially conical wedge ring having a sloped outer surface;
- placing said metal substantially conical wedge ring around said metal conveyance tubular and disposing at least a portion of it in said annular cavity and in engagement with both of said first and second dynamic sliding interface seals;
- lowering said metal conveyance tubular, said metal sealing ring, and said metal substantially conical wedge ring to a desired downhole remote location of unknown condition within said wellbore within said central bore of said tubular member;
- applying an axial load to said metal conical wedge ring to drive said metal substantially conical wedge ring between said metal conveyance tubular and said metal sealing ring and cause said metal sealing ring to deform by expanding radially outward to completely span said conveyance clearance and to urge said at least one circular metal extender portion into sealing metal-to-metal engagement with said wellbore surface of said tubular member while maintaining a sealed coupling between said metal conveyance tubular, said metal sealing ring, and said metal substantially conical wedge ring with said first and second dynamic sliding interface seals; and
- wherein an annular region defined between said conveyance tubular and said tubular member is occluded by a gas-tight barrier which is composed substantially entirely of metal components.
- 57. The method of sealing according to claim 56, further comprising:
- providing a layer of resilient material;
- securing said layer of resilient material to said outer surface of said metal sealing ring; and
- sealing, with at least a portion of said layer of resilient material, against said wellbore surface in supplementation to metal-to-metal sealing engagement of said at least one circular metal extender portion and said wellbore surface.
- 58. The method of sealing according to claim 57, wherein said at least one circular metal extender portion comprises a plurality of circular metal extender portions, further comprising:
- evacuating said fluid from between said plurality of circular metal extender portions to prevent entrapment of said fluid between said metal sealing ring and said wellbore surface.
- 59. The method of sealing according to claim 58, further comprising:
- containing at least a portion of said layer of resilient material between selected ones of said plurality of circular metal extender portions in a manner which prevents extrusion.
- 60. The method of sealing according to claim 57, further comprising:
- counteracting, with said at least one circular metal extender portion, axial forces on said layer of resilient material to prevent detachment of said layer of resilient material from said outer surface of said metal sealing ring.
CROSS-REFERENCE TO RELATED APPLICATION
This is a continuation of application Ser. No. 08/026,365, filed Mar. 4, 1993 now abandoned, which is a CIP of application Ser. No. 07/827,411 filed Jan. 29, 1992, now the U.S. Pat. No. 5,333,69.
US Referenced Citations (14)
Continuations (1)
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26365 |
Mar 1993 |
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Continuation in Parts (1)
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827411 |
Jan 1992 |
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