Claims
- 1. An apparatus for use to grippingly and sealingly engage a wellbore surface within a wellbore having a wellbore fluid flowing therein for preventing said wellbore fluid flow therethrough, said apparatus comprising:
- a settable wellbore tool for use in downhole oil and gas operations which is operable in a plurality of operating modes including a running mode of operation with a reduced radial dimension, an expansion mode of operation in which said settable wellbore tool is urged radially outward from said reduced radial dimension to an intermediate radial dimension, and a setting mode of operation in which said settable wellbore tool is further radially expanded into a setting radial dimension and urged into a fixed position within said wellbore for grippingly and sealingly engaging said wellbore surface, wherein flowing of said wellbore fluid may create a pressure differential across said settable wellbore tool during at least said expansion mode of operation, said pressure differential urging said settable wellbore tool to move longitudinally within said wellbore;
- a bypass fluid flow path extending through said settable wellbore tool to direct said wellbore fluid through said settable wellbore tool in response to said pressure differential developed across said settable wellbore tool for preventing said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore prior to said settable wellbore tool radially expanding to attain a sufficient level of said setting mode of operation to grippingly engage said wellbore surface with enough force to prevent said settable wellbore tool from moving longitudinally within said wellbore with said bypass fluid flow path closed;
- a means for selectively maintaining said bypass fluid flow path in an open condition during at least said expansion mode of operation to diminish said pressure differential developed across said settable wellbore tool and prevent said pressure differential from urging said settable wellbore tool from moving longitudinally within said wellbore;
- a means for selectively closing said bypass fluid flow path and preventing said wellbore fluid from flowing therethrough after said sufficient level of said setting mode of operation is obtained and said settable wellbore tool grippingly engages said wellbore surface with enough force to prevent said settable wellbore tool from moving longitudinally within said wellbore once said bypass fluid flow path is closed; and
- a latch having at least one collet-finger member which couples with a mating member for retaining said by pass fluid flow path closed once said means for selectively closing said by pass fluid flow path selectively closes said bypass fluid flow path.
- 2. The apparatus of claim 1, wherein said means for selectively closing said bypass fluid flow path includes a valving subassembly having:
- a movable valve stem, wherein said movable valve stem is selectively movable at least once from an open state to a closed state by application of a predetermined force pressing against said movable valve stem with a selected force threshold, said predetermined force applied to said settable wellbore tool through a control fluid; and
- a valve closure surface included as a portion of said movable valve stem of said valving subassembly, said valve closure surface in contact with said control fluid, wherein a high pressure level in said control fluid urges said movable valve stem to close said bypass fluid flow path; and
- a mechanical biasing means which at least in part prevents movement of said valve closure surface of said movable valve stem until said control fluid exceeds a predetermined pressure level.
- 3. The apparatus of claim 1, wherein said settable wellbore tool is lowered downhole within said wellbore through a tubular conduit, which has an internal diameter which is smaller than said settable wellbore tool in a setting mode of operation, and said settable wellbore tool is urged into said fixed position in said wellbore below said tubular conduit during said setting mode of operation, and wherein said wellbore has larger internal diameter than said tubular conduit.
- 4. An apparatus according to claim 1, further comprising:
- said settable wellbore tool including an inflation chamber having a radially expandable annular wall disposed thereabout, said radially expandable annular wall being selectively expandable by application of a setting pressure through an actuation fluid to said inflation chamber of said settable wellbore tool wherein flowing of said wellbore fluid flow inside of said wellbore may create a pressure differential across said settable wellbore tool which urges said settable wellbore tool to move within said wellbore; and
- means for providing an actuation fluid which provides a selectable pressure level to said settable wellbore tool and which urges said settable wellbore tool to radially expand from said running mode of operation to said expansion mode of operation and further to said setting mode of operation, wherein after said settable wellbore tool is run into said wellbore, said actuation fluid is selectively applied to said settable wellbore tool to initiate said expansion mode of operation in which said settable wellbore tool is urged to radially expand outward.
- 5. An apparatus according to claim 4, wherein said settable wellbore tool is positioned within said wellbore by a flexible suspension member which includes a coiled tubing string which at least in part routes actuation fluid to said settable wellbore tool.
- 6. An apparatus according to claim 4, wherein said settable wellbore tool is positioned within said wellbore by a flexible suspension member which includes an electric wireline which energizes a wellbore pump for providing said actuation fluid to said settable wellbore tool.
- 7. The apparatus of claim 4, wherein said means for selectively closing said bypass fluid flow path, which operates after said setting mode of operation is obtained, automatically closes said bypass fluid flowpath in response to said actuation fluid pressure exceeding said selectable fluid pressure level.
- 8. An apparatus for use in a wellbore for reducing pressure differential forces caused by wellbore fluid flowing through said wellbore and which act on a settable wellbore tool which is suspended in said wellbore on a suspension member, wherein said settable wellbore tool is operable in a plurality of operating modes including a running mode of operation with a reduced radial dimension, an expansion mode of operation in which said settable wellbore tool is urged radially outward from said reduced radial dimension to an intermediate radial dimension which at least in-part obstructs flow of said wellbore fluid within said wellbore in a region of said settable wellbore tool and creates a pressure differential across said settable wellbore tool, and a setting mode of operation in which said settable wellbore tool is further radially expanded into a setting radial dimension and urged into a fixed position within said wellbore in a gripping engagement with a wellbore surface, said apparatus comprising:
- a bypass fluid flow path extending through said settable wellbore tool for directing said wellbore fluid through said settable wellbore tool in response to said pressure differential developed across said settable wellbore tool during said expansion mode of operation;
- a means for selectively maintaining said bypass fluid flow path in an open condition during at least said expansion mode of operation to diminish said pressure differential developed across said settable wellbore tool;
- a means for selectively closing said bypass fluid flow path once said setting mode of operation is obtained to prevent fluid flow therethrough, said means for selectively closing said bypass fluid flow path including a valving subassembly having a moveable valve stem, wherein said moveable valve stem is selectively moveable at least once from an open state to a closed state by application of a predetermined force amount above a selected force threshold to said settable wellbore tool through a control fluid;
- said moveable valve stem having a valve closure surface in contact with said control fluid, wherein a selectable pressure level in said control fluid urges said movable valve stem to close said bypass fluid flow path; and
- a mechanical biasing means which at least in-part prevents movement of said valve closure surface of said moveable valve stem until said control fluid exceeds a predetermined pressure level, said mechanical biasing means comprised at least in part of at least one fingerlike collet with external ratchet teeth disposed around said fingerlike collet for engagement with mating ratchet teeth on said moveable valve stem, wherein said at least one fingerlike collet retains said moveable valve stem from moving to close said bypass fluid flowpath until said control fluid supplies a predetermined force amount above a selected force threshold which causes said at least one fingerlike collet to be displaced by a resulting bending movement.
- 9. A method for reducing pressure differential forces in a wellbore across a settable wellbore tool to prevent said pressure differential from urging said settable wellbore tool to move within said wellbore, wherein said pressure differential forces are caused by a wellbore fluid flowing across said settable wellbore tool suspended in said wellbore on a suspension member, said method comprising the steps of:
- operating said settable wellbore tool in a plurality of operating modes including a running mode of operation with a reduced radial dimension, an expansion mode of operation in which said settable wellbore tool is urged radially outward from said reduced radial dimension to an intermediate radial dimension, and a setting mode of operation in which said settable wellbore tool is further radially expanded into a setting radial dimension and urged into a fixed position within said wellbore for grippingly engaging a wellbore surface, wherein when said settable wellbore tool is urged to radially expand in said expanding mode;
- preventing said pressure differential from urging said settable wellbore tool to move within said wellbore prior to said settable wellbore tool attaining said setting mode of operation for grippingly engaging said wellbore surface by providing a bypass fluid flow path extending through said settable wellbore tool to direct said wellbore fluid through said settable wellbore tool in response to said pressure differential developed across said settable wellbore tool;
- selectively maintaining said bypass fluid flow path in an open condition during at least said expansion mode of operation to diminish said pressure differential developed across said settable wellbore tool;
- selectively closing said bypass fluid flow path after said setting mode of operation is obtained to prevent fluid flow therethrough in response to an actuation fluid pressure which urges said settable wellbore tool from said running mode of operation, to said expansion mode of operation and further to said setting mode of operation;
- wherein said settable wellbore tool grippingly and sealingly engages said wellbore surface to prevent said wellbore fluid from flowing between said settable wellbore tool and said wellbore surface;
- wherein said settable wellbore tool includes a fluid inflatable packer which is inflated by an actuation fluid;
- passing said actuation fluid, having an actuation fluid pressure, to said fluid inflatable packer from a source of actuation fluid;
- automatically closing said bypass fluid flow path once said settable wellbore tool is sufficiently urged to said setting mode of operation to prevent movement of said settable wellbore tool with said bypass fluid flow path closed;
- wherein said bypass fluid flow is automatically closed by said actuation fluid pressure urging said settable wellbore tool to radially expand into said setting mode of operation; and
- latching said bypass fluid flow path closed by coupling at least one collet finger member with a mating latch member.
- 10. The method of claim 9, further comprising the step of:
- lowering said settable wellbore tool downhole within said wellbore secured to a coiled tubing string.
- 11. The method of claim 9, further comprising the step of:
- lowering said settable wellbore tool downhole within said wellbore secured to a wireline as part of a wireline tool string, which includes an electric pump for delivering said actuation fluid to said settable wellbore tool and providing said actuation fluid pressure.
- 12. A settable wellbore tool for use in a wellbore having a wellbore fluid flowing therein, said settable wellbore tool selectively operable to radially expand from a radially reduced dimension, for lowering downhole within a wellbore surface of said wellbore, to a radially enlarged dimension in which said settable wellbore tool is urged to grippingly engage said wellbore surface, said settable wellbore tool comprising:
- an actuation fluid having an actuation fluid pressure provided by a fluid pressurization source which directs said actuation fluid to said settable wellbore tool;
- an actuation fluid flowpath extending to said settable wellbore tool, and providing a fluid flow path for said actuation fluid to flow into said settable wellbore tool;
- a fluid actuated wellbore tool disposed about a portion of said actuation fluid flowpath for receipt of said actuation fluid, said fluid actuated wellbore tool including:
- a mandrel disposed concentrically within said fluid actuated wellbore tool, having a bypass fluid flowpath extending therein, and defining a portion of said actuation fluid flowpath;
- an inflation chamber concentrically disposed about said mandrel for receiving said actuation fluid directed from said fluid pressurization source, and wherein said actuation fluid directed into said inflation chamber urges an expansion of said inflation chamber from a deflated running position to an inflated setting position;
- an annular inflatable wall concentrically disposed about said inflation chamber;
- wherein said expansion of said inflation chamber from a deflated running position to an inflated setting position urges a radial expansion of said annular inflatable wall from an unexpanded running position for allowing passage of said settable wellbore tool within said wellbore surface, to a radially expanded position for grippingly engaging said wellbore surface;
- wherein said radial expansion of said annular inflatable wall restricts flow of said wellbore fluid and creates a pressure differential across said fluid actuated wellbore tool which urges said settable wellbore tool to move longitudinally within said wellbore;
- said bypass fluid flow path extending within said settable wellbore tool to provide a fluid flowpath within which said wellbore fluid flows therethrough in response to said pressure differential across said fluid actuated wellbore tool for preventing said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore prior to said actuation fluid urging said annular inflatable wall to grippingly engage said wellbore surface with a sufficient level of force to, at least in part, prevent said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore with said bypass fluid flow path closed;
- a valving assembly disposed about said bypass fluid flow path and selectively moveable into said bypass fluid flow path for preventing said wellbore fluid flow therethrough once said annular inflatable wall is urged into said sufficiently inflated position having said sufficient level of said gripping engagement with said wellbore surface to, at least in part, prevent said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore after said bypass fluid flow path is closed; and
- a latch having at least one collet-finger member which couples with a mating member for retaining said valving assembly within said bypass fluid flow path once said valving assembly is selectively moved into said by pass fluid flow path to prevent said wellbore fluid for flowing therethrough.
- 13. The settable wellbore tool of claim 12, having said annular inflatable wall of said inflatable wellbore tool, wherein said annular inflatable wall includes:
- a packing sleeve concentrically disposed around said mandrel and said inflation chamber for sealingly engaging said wellbore surface when urged to sealingly engage said wellbore surface; and
- a plurality of flexible overlapping slats disposed around said mandrel and said inflation chamber, and concentrically disposed about said elastomeric sleeve for reinforcement of said elastomeric sleeve.
- 14. The settable wellbore tool of claim 12, wherein said fluid pressurization source is a wireline pump which urges said actuation fluid within said inflation chamber to a preselected fluid pressure differential having an actuation fluid pressure sufficiently greater than a wellbore pressure of said wellbore fluid about said settable wellbore tool to urge said annular inflatable well to grippingly and sealingly engage said wellbore surface;
- wherein said actuation fluid within said inflation chamber at said actuation fluid pressure urges said inflation chamber into said setting position and said annular inflatable wall to grippingly and sealingly engage said wellbore surface with said sufficient level of force; and
- wherein said actuation fluid within said inflation chamber at said actuation fluid pressure automatically urges a movable valve stem and a plug section to move into a sealing engagement within said bypass fluid flow path for preventing said wellbore fluid from flowing therethrough.
- 15. The settable wellbore tool of claim 12, having said annular inflatable wall of said inflatable wellbore tool, wherein said annular inflatable wall includes:
- a packing sleeve concentrically disposed around said mandrel and said inflation chamber for sealingly engaging said wellbore surface when urged to sealingly engage said wellbore surface.
- 16. The settable tool of claim 12, wherein said settable wellbore tool is lowered within said wellbore secured to a coiled tubing string through which said actuation fluid flows in passing between said fluid pressurization source and said settable wellbore tool.
- 17. A settable wellbore tool for use in a wellbore having a wellbore fluid flowing therein, said settable wellbore tool selectively operable to radially expand from a radially reduced dimension, for lowering downhole within a wellbore surface of said wellbore, to a radially enlarged dimension in which said settable wellbore tool is urged to grippingly engage said wellbore surface, said settable wellbore tool comprising:
- an actuation fluid having an actuation fluid pressure provided by a fluid pressurization source which directs said actuation fluid to said settable wellbore tool;
- an actuation fluid flowpath extending to said settable wellbore tool, and providing a fluid flow path for said actuation fluid to flow into said settable wellbore tool;
- a fluid actuated wellbore tool disposed about a portion of said actuation fluid flowpath for receipt of said actuation fluid, said fluid actuated wellbore tool including:
- a mandrel disposed concentrically within said fluid actuated wellbore tool, having a bypass fluid flowpath extending therein, and defining a portion of said actuation fluid flowpath;
- an inflation chamber concentrically disposed about said mandrel for receiving said actuation fluid directed from said fluid pressurization source, and wherein said actuation fluid directed into said inflation chamber urges an expansion of said inflation chamber from a deflated running position to an inflated setting position;
- an annular inflatable wall concentrically disposed about said inflation chamber;
- wherein said expansion of said inflation chamber from a deflated running position to an inflated setting position urges a radial expansion of said annular inflatable wall from an unexpanded running position for allowing passage of said settable wellbore tool within said wellbore surface, to a radially expanded position for grippingly engaging said wellbore surface;
- wherein said radial expansion of said annular inflatable wall restricts flow of said wellbore fluid and creates a pressure differential across said fluid actuated wellbore tool which urges said settable wellbore tool to move longitudinally within said wellbore;
- said bypass fluid flow path extending within said settable wellbore tool to provide a fluid flowpath within which said wellbore fluid flows therethrough in response to said pressure differential across said fluid actuated wellbore tool for preventing said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore prior to said actuation fluid urging said annular inflatable wall to grippingly engage said wellbore surface with a sufficient level of force to, at least in part, prevent said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore with said bypass fluid flow path closed;
- a valving assembly disposed about said bypass fluid flow path and selectively moveable into said bypass fluid flow path preventing said wellbore fluid flow therethrough once said annular inflatable wall is urged into said sufficiently inflated position having said sufficient level of said gripping engagement with said wellbore surface to, at least in part, prevent said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore after said bypass fluid flow path is closed;
- said valving assembly including:
- a moveable valve stem concentrically disposed within said valving assembly and having at least one ratchet tooth;
- a plurality of longitudinally extending collet fingers which engage said at least one ratchet tooth to prevent movement of said moveable valve stem in a first longitudinal direction of said settable wellbore tool, and which further flex to allow movement of said moveable valve stem in a second longitudinal direction of said settable wellbore tool;
- a plug section concentrically disposed within said valving assembly and at least adjacent to said bypass fluid flowpath, said plug section secured to said moveable valve stem wherein a movement of said moveable valve stem in said second longitudinal direction urges said plug section into a sealing engagement within said bypass fluid flowpath; and
- at least one shearable element disposed adjacent to said moveable valve stem to, at least in part, maintain said moveable valve stem against movement in a said second longitudinal direction until a preselected fluid pressure differential is applied to said actuation fluid within said inflation chamber.
- 18. A settable wellbore tool for use a wellbore having a wellbore fluid flowing therein, said settable wellbore tool selectively operable to radially expand from a radially reduced dimension, for lowering within a wellbore surface of said wellbore, to a rapidly enlarged dimension in which said settable wellbore tool is urged into a gripping engagement with said wellbore surface, said settable wellbore tool comprising:
- an actuation fluid having an actuation fluid pressure provided by a fluid pressurization source which directs said actuation fluid to said settable wellbore tool;
- an actuation fluid flowpath extending to said settable wellbore tool, and providing a fluid flow path for said actuation fluid to flow into said settable wellbore tool;
- a fishing neck assembly having a fishing neck profile disposed at an upper end of said settable wellbore tool and about said actuation fluid flowpath;
- a poppet valve assembly disposed about said actuation fluid flowpath for directing said actuation fluid within said settable wellbore tool, and selectively preventing at least a portion of said actuation fluid from flow towards said fluid pressurization source to maintain said actuation fluid within said settable wellbore tool;
- a fluid actuated wellbore tool disposed about a portion of said actuation fluid flowpath for receipt of said actuation fluid, said fluid actuated wellbore tool including:
- a mandrel disposed concentrically within said fluid actuated wellbore tool, having said bypass fluid flowpath therethrough, and defining a portion of said actuation fluid flowpath;
- an inflation chamber concentrically disposed about said mandrel for receiving said actuation fluid directed from said fluid pressurization source, and wherein said actuation fluid directed into said inflation chamber urges an expansion of said inflation chamber from a deflated running position to an inflated setting position;
- an annular inflatable wall concentrically disposed about said inflation chamber, said annular inflatable wall including:
- an elastomeric sleeve concentrically disposed around said mandrel and said inflation chamber;
- a plurality of flexible overlapping slats disposed around said mandrel and said inflation chamber, and concentrically disposed about said elastomeric sleeve for reenforcement of said elastomeric sleeve;
- wherein said expansion of said inflation chamber from a deflated running position to an inflated setting position urges a radial expansion of said annular inflatable wall from an unexpanded running position, which allows passage of said settable wellbore tool within said wellbore surface, and into a radially expanded position in said gripping engagement with said wellbore surface;
- wherein said radial expansion of said annular inflatable wall restricts flow of said wellbore fluid and creates a pressure differential across said fluid actuated wellbore tool which urges said settable wellbore tool to move longitudinally within said wellbore;
- a bypass fluid flow path extending through said settable wellbore tool for providing a fluid flowpath for said wellbore fluid to flow therethrough in response to said pressure differential across said fluid actuated wellbore tool to prevent said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore prior to said annular inflatable wall being in said gripping engagement with said wellbore surface; and
- a valving assembly disposed below said fishing neck and about said bypass fluid flow path, said valving assembly further including:
- a movable valve stem concentrically disposed within said valving assembly and having at least one ratchet tooth, said movable valve stem selectively movable into an extended position once said annular inflatable wall is in said gripping engagement with said wellbore surface;
- a plurality of longitudinally extending collet fingers which engage said at least one ratchet tooth to prevent movement of said movable valve stem in a first longitudinal direction of said settable wellbore tool, and which further flex to allow movement of said movable valve stem in a second longitudinal direction of said settable wellbore tool into said extended position;
- a plug section concentrically disposed within said valving assembly and at least adjacent to said bypass fluid flowpath, said plug section secured to said movable valve stem wherein a selective movement of said movable valve stem in said second longitudinal direction into said extended position urges said plug section into a sealing engagement within said bypass fluid flowpath;
- at least one shearable element disposed adjacent to said movable valve stem to, at least in part, maintain said movable valve stem against movement in a said second longitudinal direction until a preselected fluid pressure differential is applied to said actuation fluid within said inflation chamber to sever said shearable element for allowing said movable valve stem to move in said second longitudinal direction; and
- a guide assembly disposed on a lower end of said settable wellbore tool and having a flow path therethrough defining a portion of said bypass fluid flowpath.
- 19. The settable wellbore tool of claim 18, wherein said fluid pressurization source is a wireline pump which urges said actuation fluid within said inflation chamber to said preselected fluid pressure differential having an actuation fluid pressure in excess of five hundred pounds per square inch greater than a wellbore pressure of said wellbore fluid about said settable wellbore tool;
- wherein said actuation fluid within said inflation chamber at said actuation fluid pressure urges said inflation chamber into said setting position and said annular inflatable wall into said gripping engagement with said wellbore surface; and
- wherein said actuation fluid within said inflation chamber at said actuation fluid pressure urges said selective movement of said movable valve stem into said extended position to urge said plug section into said sealing engagement within said bypass fluid flow path to prevent fluid flow therethrough.
- 20. A settable wellbore tool for use in through tubing operations in a wellbore having a wellbore fluid flowing therein, said settable wellbore tool selectively operable to radially expand from a radially reduced dimension, for lowering through a tubing string concentrically disposed within a wellbore surface, to a radially enlarged dimension in which said settable wellbore tool is urged into a gripping engagement with said wellbore surface after said settable wellbore tool is lowered through said tubing string, said settable wellbore tool comprising:
- an actuation fluid having an actuation fluid pressure provided by a fluid pressurization source which directs said actuation fluid to said settable wellbore tool;
- an actuation fluid flowpath extending to said settable wellbore tool, and providing a fluid flow path for said actuation fluid to flow into said settable wellbore tool;
- a fishing neck assembly having a fishing neck profile disposed at an upper end of said settable wellbore tool and about said actuation fluid flowpath;
- a poppet valve assembly disposed about said actuation fluid flowpath for directing said actuation fluid within said settable wellbore tool, and selectively preventing at least a portion of said actuation fluid from flow towards said fluid pressurization source to maintain said actuation fluid within said settable wellbore tool;
- a fluid actuated wellbore tool disposed about a portion of said actuation fluid flowpath for receipt of said actuation fluid, said fluid actuated wellbore tool including:
- a mandrel disposed concentrically within said fluid actuated wellbore tool, having said bypass fluid flowpath therethrough, and defining a portion of said actuation fluid flowpath;
- an inflation chamber concentrically disposed about said mandrel for receiving said actuation fluid directed from said fluid pressurization source, and wherein said
- actuation fluid directed into said inflation chamber urges an expansion of said inflation chamber from a deflated running position to an inflated setting position;
- an annular inflatable wall concentrically disposed about said inflation chamber, said annular inflatable wall including:
- an elastomeric sleeve concentrically disposed around said mandrel and said inflation chamber;
- a plurality of flexible overlapping slats disposed around said mandrel and said inflation chamber, and concentrically disposed about said elastomeric sleeve for reenforcement of said elastomeric sleeve;
- wherein said expansion of said inflation chamber from a deflated running position to an inflated setting position urges a radial expansion of said annular inflatable wall from an unexpanded running position, which allows passage of said settable wellbore tool through said tubing, and into a radially expanded position in said gripping engagement with said wellbore surface;
- wherein said radial expansion of said annular inflatable wall restricts flow of said wellbore fluid and creates a pressure differential across said fluid actuated wellbore tool which urges said settable wellbore tool to move longitudinally within said wellbore;
- a bypass fluid flow path extending through said settable wellbore tool for providing a fluid flowpath for said wellbore fluid to flow therethrough in response to said pressure differential across said fluid actuated wellbore tool to prevent said pressure differential from urging said settable wellbore tool to move longitudinally within said wellbore prior to said annular inflatable wall being in said gripping engagement with said wellbore surface; and
- a valving assembly disposed below said fishing neck and about said bypass fluid flow path, said valving assembly further including:
- a movable valve stem concentrically disposed within said valving assembly and having at least one ratchet tooth, said movable valve stem selectively movable into an extended position once said annular inflatable wall is in gripping engagement with said wellbore surface;
- a plurality of longitudinally extending collet fingers which engage said at least one ratchet tooth to prevent movement of said movable valve stem in a first longitudinal direction of said settable wellbore tool, and which further flex to allow movement of said movable valve stem in a second longitudinal direction of said settable wellbore tool into said extended position;
- a plug section concentrically disposed within said valving assembly and at least adjacent to said bypass fluid flowpath, said plug section secured to said movable valve stem wherein a selective movement of said movable valve stem in said second longitudinal direction into said extended position urges said plug section into a sealing engagement within said bypass fluid flowpath;
- at least one shearable element disposed adjacent to said movable valve stem to, at least in part, maintain said movable valve stem against movement in a said second longitudinal direction until a preselected fluid pressure differential is applied to said actuation fluid within said inflation chamber to sever said shearable element for allowing said movable valve stem to move in said second longitudinal direction; and
- a guide assembly disposed on a lower end of said settable wellbore tool and having a flow path therethrough defining a portion of said bypass fluid flowpath.
- 21. The settable wellbore tool of claim 20, wherein said fluid pressurization source is a wireline pump which urges said actuation fluid within said inflation chamber to said preselected fluid pressure differential having an actuation fluid pressure in excess of five hundred pounds per square inch greater than a wellbore pressure of said wellbore fluid about said settable wellbore tool;
- wherein said actuation fluid within said inflation chamber at said actuation fluid pressure urges said inflation chamber into said setting position and said annular inflatable wall into said gripping engagement with said wellbore surface; and
- wherein said actuation fluid within said inflation chamber at said actuation fluid pressure urges said moveable valve stem to selectively move into said extended position to urge said plug section to sealingly engage within said bypass fluid flow path to prevent said wellbore fluid from flowing therethrough.
RELATED APPLICATIONS
This patent application is a continuation of U.S. patent application Ser. No. 07/745,910, which was filed on Aug. 16, 1991, entitled "Method and Apparatus for Reducing Wellbore-Fluid Pressure Differential Forces on a Settable Wellbore Tool in a Flowing Well," abandoned, and invented by Michael James Loughlin of Houston, Tex., from which the present application claims the priority of the filing date under 35 U.S.C. .sctn. 120.
US Referenced Citations (11)
Continuations (1)
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Number |
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745910 |
Aug 1991 |
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