Background of the Invention
It is often desirable to place various downhole equipment into a borehole and later on retrieve the equipment therefrom. For example, in a cased borehole having a production tubing extending downhole into proximity of a fluid-producing formation, it is often desirable to place a package of instruments or other downhole equipment in the production tubing by circulating fluid in a downward direction through the production tubing until the package arrives at its destination. Later, when it is desired to retrieve the package of instruments, reverse circulation is employed to circulate the package back uphole to the top of the production tubing.
Accordingly, it is desirable to have made available a packer nose assembly for pumping downhole equipment of the free type into and out of boreholes. It is further desirable that the packer nose assembly be of a design which reduces flow across a packer element thereof so that very little slippage of fluid occurs as the assembly is being circulated into or out of a borehole. A device of this type is especially useful in conjunction with downhole, hydraulically-actuated pumps. A packer nose assembly of the above described type is the subject of this invention. The following patents exemplify the prior art: U.S. Pat. Nos. 2,719,768; 2,802,535; 2,893,493; 3,525,401; 3,530,935; Great Britain Pat. No. 703,381; and Great Britain Pat. No. 917,863.
Summary of the Invention
A packer nose assembly for pumping downhole equipment of the free type into and out of a tubing string located within a borehole. The assembly comprises a mandrel having a lower end portion which can be removably affixed to the downhole equipment. A fishing neck is located on the opposed, upper end portion thereof. A pair of spaced packer members are located intermediate of the opposed ends of the mandrel which sealingly engage the tubing wall in a slidable manner.
The packer members are cylindrical in form and include a resilient cup which is removably affixed to the mandrel by means of a mount member. One marginal end of the cup is removably affixed to the mount member, while the other marginal end of the cup circumferentially extends about the mandrel and away from the mount member to provide a lip. The lip sealingly engages the tubing wall, while the mount member sealingly supports the cup to the mandrel. The mount member also protects the cup from damage. The packer nose assembly is especially adapted for forming the upper end portion of a free-type, downhole, hydraulically-actuated pump assembly.
A primary object of this invention is to provide improvements in a packer nose assembly for downhole equipment of the free type.
Another object of the invention is to provide a packer nose assembly for a free-type, downhole, hydraulically-actuated pump assembly.
A further object of this invention is to disclose and provide a packer device for pumping downhole equipment into and out of a borehole.
A still further object of this invention is to provide a resilient packer member which is efficient in operation, rugged in design, and low in cost.
Still another object of this invention is the provision of a packer nose assembly having a cup which is free of wire and other metal objects which could come loose in the well, causing expensive fishing and pulling jobs.
These and various other objects and advantages of the invention will become readily apparent to those skilled in the art upon reading the following detailed description and claims and by referring to the accompanying drawings.
The above objects are attained in accordance with the present invention by the provision of a combination of elements which are fabricated in a manner substantially as described in the above abstract and summary.
Brief Description of the Drawings
FIG. 1 is a vertical, part cross-sectional view of a borehole having disposed therein apparatus made in accordance with the present invention;
FIG. 2 is an enlarged, part cross-sectional view of the present invention;
FIG. 3 is a further enlarged, fragmentary, cross-sectional representation of part of the apparatus seen in FIG. 1;
FIG. 4 is an enlarged, cross-sectional view taken along lines 4--4 of FIG. 2; and,
FIG. 5 is an exploded view of the apparatus disclosed in FIG. 3.
Detailed Description of the Preferred Embodiments
In FIG. 1 there is schematically disclosed a wellbore having a Christmas tree 8 and a casing 9 within which there is disposed a tubing string 68. A packer nose assembly 10, made in accordance with the present invention, is attached to the upper end of a downhole pump 21 of the free type so that the pump can be circulated into and out of the borehole.
As seen in FIG. 2, in conjunction with other figures of the drawings, the packer nose assembly includes spaced-apart upper and lower packer apparatus 12 and 14. The packer apparatus are axially aligned respective to one another and affixed to a mandrel 16. An apertured fishing neck 18 is attached to the upper end of the mandrel, while the lower marginal end of the mandrel is in the form of a box or female threaded sub 20 which is threadedly attached to a downhole, hydraulically-actuated pump 21 of the free type.
Sub 22 threadedly mates with the fishing neck and abuttingly engages a nut 24. Sleeve 26 abuttingly engages the adjacent ends of the spaced-apart packer apparatus and is slidably received externally of the hollow mandrel 28. Sleeve 30 abuttingly engages the box 20 and the lower end of packer 14.
As best seen in FIG. 3, in conjunction with other figures of the drawings, each packer apparatus includes a mount assembly 32 by which a resilient seal element or cup 33 is mounted to the mandrel in sealed relationship therewith. O-ring 34 is positioned within the central counterbore of the upper hub end 35 of the outer mount member. Skirt 36 is attached to the upper hub end and circumferentially extends about the upper marginal end of the cup in spaced relationship to an inner mount member 37 which forms part of the mount assembly.
Circumferentially extending lip 38 has a lower terminal end 40 spaced from the mandrel to form a downwardly opening annulus 42. Accordingly, the circumferentially extending outer wall 44 of the inner member and the circumferentially extending inner wall surface of the skirt member capture the upper marginal end of the cup therewithin, with the outer surface of the skirt protecting the upper end of the cup.
Lower terminal end 46 of the inner mount member terminates slightly below the lower terminal end 48 of the skirt. The upper end 50 of the inner member is reduced in diameter and is received within a counterbore 52 of the outer mount member such that spaced shoulders 54 and 56 result in a circumferentially extending cavity. Shoulder 54 is provided with a groove 58, while the inner wall surface 59 is provided with O-ring 60 set in the illustrated O-ring groove.
The upper end of the rubber cup is inwardly directed to form a flange at 62. The flange forms the upper marginal end of the constant diameter portion 64 of the cup.
The lip 38 of the rubber bears against the inside peripheral wall surface 66 of the tubing 68. The lip increases in thickness in a downward direction at 70 between edges 46 and 48 of the inner and outer mount members.
In operation, assuming the packer nose assembly 10 is attached to a downhole, hydraulically-actuated pump 21 of the free type, the apparatus is dropped into the tubing string in the usual manner and circulated downhole.
As the apparatus moves downhole, the circumferentially extending lip 38 sealingly engages the tubing wall 66 in a slidable manner. The trip to the bottom of the borehole is usually thousands of feet long; and accordingly, the outer surface of the lip bears against the inner surface of the tubing for a considerable length of time and is therefore subjected to a substantial amount of wear.
The lip 38 has an outside diameter slightly greater than the inside diameter of the tubing. Accordingly, the memory of the rubber causes the lip to always be biased into engagement with the inner peripheral wall surface of the tubing. As the lip encounters irregularities on the tubing wall, it is flexed inwardly and outwardly. As the lip flexes inwardly, the hinge point formed by edge portion 46 of the inner mount member is located in staggered relationship respective to the hinge point formed between edge portion 48 of the skirt and the rubber, thereby staggering the fatigue area on the inner and outer surfaces of the rubber. This provides two different hinge points which greatly elongate the life of the cup, as contrasted to a single hinge point which superimposes the flex areas and accelerates cup failure.
An important aspect of the present invention is the provision of a rubber having no reinforcing metal located therewithin. Accordingly, as the rubber reaches the end of its useful life, should it encounter an object and become ruptured, there are no metal pieces or wires to fall downhole into the borehole.
The flange 62 is tightly compressed between shoulders 56 and 54. Circumferential groove 58 deforms the lower surface of the cup flange sufficiently to form what appears to be one half of the O-ring and thus improves the seal therebetween.
The outer mount member provides a metal shield on the outer marginal end of the packer element and prevents the rubber cup from ballooning out of the mount member when unseating the pump. The outer mount member also provides a guide means as well as a protector for the upper marginal end of the rubber cup.
It is considered within the comprehension of this invention to invert one of the packers when operating in a well without an O-ring collar, or when using a pump which is too long to fit in a regular pump cavity. In this instance, the uphole pressure forces the lip of the cup out firmly against the tubing wall so that hydraulic fluid is forced into the ports of the fishing neck, through the hollow mandrel, and down to the hydraulically-actuated pump.
The rubber preferably is made of high temperature buna of a duro of 90 which is suitable for use up to 325.degree. F. Regular buna is suitable for downhole temperatures up to 275.degree. F.