The present invention relates to inflatable packers for wellbore operations.
Inflatable packers are sealing devices that may be carried on a conveyance in a retracted position into a wellbore and then expanded to provide a seal against the wellbore wall or conduit. Inflatable packers typically include an inner elastomer bladder that is connected at its ends by moveable mechanical fittings to a mandrel. Commonly, a retaining cover comprising metal slats or cables is provided over the inner bladder to serve as the principal load bearing member when the packer is set and to prevent extrusion of the bladder when it is expanded. For example, slat-type packers typically comprise metal slats that are oriented longitudinally between the mechanical end fittings of the packers. The slats are positioned to substantially overlap when the bladder is retracted so that when the bladder is expanded the slats will provide a barrier against extrusion of the bladder. While the retaining cover provides anchoring against the wall and limits longitudinal movement of the assembly in the wellbore, it does not provide a fluid seal across the inflatable packer. Thus, it is common for inflatable packers to include a thick elastomer sleeve circumferentially about a portion of the retention member to provide sealing between the packer and the wellbore.
Drawbacks in the current outer sealing covers have been realized. One drawback is that in high temperature wellbores the outer sealing cover is often damaged or fails. For example, sealing may be lost and/or portions of the outer covering may part from the packer assembly. Another drawback of the outer rubber sealing covers is that in high pressure drawdown situations, the outer rubber cover tends to distend and move past or over the top of the mechanical end fitting. Positioning of a portion of the rubber covering over the mechanical end fittings can prevent removal of the packer from its set position.
Therefore, it is a desire of the present invention to provide an inflatable packer that addresses drawbacks of current inflatable packers. It is a still further desire to provide an inflatable packer that includes a reinforced outer sealing cover.
In view of the foregoing and other considerations, the present invention relates to wellbore packers and more specifically to an inflatable packer having enhanced high temperature and high differential pressure performance is provided.
Accordingly, a packer having an outer sealing member that is reinforced is provided. The reinforced sealing member may include reinforcing fibers contained within a sealing material. The reinforced sealing member may be constructed of an elastomer matrix with embedded fibers.
The reinforced sealing member may be positioned circumferentially about an expandable bladder. The reinforced sealing member may be positioned circumferentially about a support member. The support member may be positioned about an expandable inner bladder.
The support member may constitute metal slats. The reinforced sealing member fibers may be oriented substantially parallel to the metal slats. The support members may constitute cables. The reinforced sealing member fibers may be oriented at an angle, and thus not parallel, to the support member cables.
The foregoing has outlined the features and technical advantages of the present invention in order that the detailed description of the invention that follows may be better understood. Additional features and advantages of the invention will be described hereinafter which form the subject of the claims of the invention.
The foregoing and other features and aspects of the present invention will be best understood with reference to the following detailed description of a specific embodiment of the invention, when read in conjunction with the accompanying drawings, wherein:
Refer now to the drawings wherein depicted elements are not necessarily shown to scale and wherein like or similar elements are designated by the same reference numeral through the several views.
As used herein, the terms “up” and “down”; “upper” and “lower”; and other like terms indicating relative positions to a given point or element are utilized to more clearly describe some elements of the embodiments of the invention. Commonly, these terms relate to a reference point as the surface from which drilling operations are initiated as being the top point and the total depth of the well being the lowest point.
Inner bladder 14 is constructed of an elastomer material such that the application of pressure in at interior 24 will expand bladder 14 and inflation unit 12 outward toward the casing wall 5 (
Support structure 16 surrounds bladder 14 and comprises physical structures 26, such as slats or cables, to provide load bearing support to packer 10 and to retain bladder 14 when it is expanded. In the illustrated example, support structure 16 is constituted by a plurality of metal slats 26.
It is noted that inflation assembly 12 may not include an inner bladder. In some instances, a bladder or other mechanism may be utilized to expand support structure 16 outward and into contact with the casing. In such circumstances, reinforced sealing cover 18 will provide a seal along the wall of the casing (annular seal) as well as provide a barrier to lateral fluid flow from interior 24 to the exterior of packer 10.
Slats 26 are relativity thin metal slats that partially overlap one another around the circumference of inner bladder 14. Slats 26 extend longitudinally between opposing end connections 7. As the diameter of bladder 14 is increased during expansion, adjacent ones of slats 26 slide across one another as their composite diameter is increases as well. The individual slats 26 should be wide enough so that when bladder 14 is fully expanded the central portions of the slats are pressed against the inner walls of the casing with some overlap remaining so that there are substantially no cracks or other openings through which portions of bladder 14 might extrude and be damaged.
Slats 26 provided the principle load bearing members which carry the pressure forces on the packer due to the greater pressures in the wellbore below the packer than in the annulus above it. Slats 26 also commonly provide the frictional grip on casing 5 (
Reinforced outer covering 18 is provided circumferentially about support structure 16 to prevent fluid leakage between the inner wall of casing 5 (
Reinforced covering 18 is formed of a sealing material having reinforcement fibers 28. For example, reinforced cover may be constructed of a composite of reinforcement fibers 28 and an elastomer matrix 30. In some embodiments, the thickness of the each elastomer layer can be optimized (for example, it can be from about 0.2 mm to about 2.0 mm, such as about 0.7 mm). The total thickness of the reinforced covering 18 can be between about 3 mm and about 30 mm. Examples of reinforcement fibers 28 include carbon fibers, KEVLAR fibers, fiberglass, basalt fibers and thermoplastic fibers (PEEK, PPS, etc.). Examples of matrix 30 may be formed of numerous materials such as hydrogenated nitrite, hydrogenated nitrite butadiene rubber (HNBR), fluorinated elastomers (FKM), nitrite butadiene rubber (NBR), EPDM, silicon based rubber, and natural rubber. The bonding between fibers 28 and matrix 30 may be improved by impregnating fibers 28 with rubber dissolution, or by chemical bonding.
It may be desired for fibers 28, to be set longitudinally relative to packer 10 or inflation assembly 12 when utilized with a slat-type support structure 16. In the described embodiment, fibers 28 are oriented substantially parallel to slats 26.
If support structure 16 includes cables, it may be desired for reinforcement fibers 28 to be set with an angle relative to the longitudinal axis of inflation assembly 12, the angle preferably from about 7° to about 20°. Orienting fibers 28 so as not to be parallel with inflation assembly 12, complements the natural shortening of reinforced cover 18 with the shortening of support structure 16 and bladder 14. In some embodiments, the fibers angle will be slightly higher than the cables angles. For example, when the outer cables are set with an angle of about 15°, the fibers will be set with an angle comprised between about 15.5 and about 20°; the fibers set close to the cables will be set with an angle close to about 15°; and the outer fibers, far from the cables, will be set with a wider angle, for example about 20°
With reference to
From the foregoing detailed description of specific embodiments of the invention, it should be apparent that an inflatable packer that is novel has been disclosed. Although specific embodiments of the invention have been disclosed herein in some detail, this has been done solely for the purposes of describing various features and aspects of the invention, and is not intended to be limiting with respect to the scope of the invention. It is contemplated that various substitutions, alterations, and/or modifications, including but not limited to those implementation variations which may have been suggested herein, may be made to the disclosed embodiments without departing from the spirit and scope of the invention as defined by the appended claims which follow.
This application claims the benefit of U.S. Provisional Patent Application No. 60/805,028 filed Jun. 16, 2006.
Number | Date | Country | |
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60805028 | Jun 2006 | US |