Background of the Invention
In the production of hydrocarbons from a wellbore, it is sometimes advantageous to use a hydraulically-actuated pump device which can be circulated into the wellbore; and thereafter a supply of power fluid is connected to the tubing string so that the engine end of the pump device actuates the production end thereof, thereby producing fluid from a hydrocarbon-bearing formation, along with the spent power fluid from the engine.
A specially constructed cavity is usually attached to the lower end of the tubing string and receives the pump assembly therewithin in such a manner that power fluid flows from the surface of the earth, down through the tubing, to the engine end of the pump, while formation fluid flows into the production end of the pump, and produced fluid, along with spent power fluid, is conducted along another flow path to the surface of the earth.
In my previous U.S. Pat. No. 3,517,741, there is disclosed a free-type pump such as discussed above, along with a cavity therefor. In my previous U.S. Pat. No. 3,453,963, there is disclosed an engine end which has proven successful in the production of hydrocarbons from a deep well. In my previous U.S. Pat. No. 4,080,111 there is set forth a production end of the double-acting type which has proven successful in producing hydrocarbons.
It would be desirable to be able to employ a double-acting engine end along with a double-acting production end, and to arrange such a pump assembly so that it is of the free type and can therefore be circulated into and out of the borehole.
It would furthermore be desirable to provide the engine end of such a pump with a closed flow system so that filtered, high pressure power fluid is pumped from the surface of the earth, down the tubing string to the inlet at the engine end of the pump assembly, with the spent power fluid being returned along an isolated flow path and back to the surface of the earth, thereby enabling the power fluid to be maintained separate from the production fluid so that it can be recirculated. The combination of an engine end, production end, and cavity which achieves this desirable attribute is the subject of the present invention.
Summary of the Invention
A downhole, hydraulically-actuated pump assembly of the free type having a double-acting engine end connected to a double-acting production end, and a cavity which is adapted to receive the pump assembly in such a manner that a plurality of spaced-apart, axially aligned, annular chambers are formed between the main body of the pump assembly and the inner cylindrical surface of the cavity. The pump assembly and cavity further include various different flow passageways and ports arranged respective to one another whereby power fluid flows from the surface of the earth down to a packer nose assembly, through a hollow production rod and piston, through a hollow engine rod and piston, and into an engine valve assembly, where power fluid is effected across alternate faces of the engine piston, thereby driving the piston in a reciprocating manner. The engine and production pistons share a common hollow connecting rod so that reciprocation of the engine piston imparts reciprocatory motion into the production piston, thereby causing the production end to produce fluid.
Spent power fluid from the valve assembly is conducted into one of the before-recited annular chambers, through a port formed into the cavity, and into a flow conduit which extends uphole to the surface of the earth, thereby providing an isolated flow path for the power fluid system of the pump assembly.
Formation fluid is received through a standing valve device formed at the lower extremity of the cavity. The formation fluid enters the lowermost end of the pump assembly, flows through one of the before-recited annular chambers, through a passageway formed with the cavity, and to the intake valve assembly of the production end. The production piston is of the double-acting type and therefore produces fluid each stroke thereof. The production end includes upper and lower exhaust valves which exhaust from the production end, into another of the before-recited annular chambers, through a port formed within the cavity, along a passageway formed within the cavity, where the produced fluid then flows into another conduit which conducts produced fluid to the surface of the ground.
The pump assembly and cavity combination of this invention includes additional annular chambers arranged respective to one another and to other annular chambers of the system whereby the pressure generated within various ones of the annular chambers are maintained at a value which provides a minimum pressure drop across the seals which separate one annular chamber from another. Provision is also made by which the free-type pump can be retrieved from the cavity by pumping high pressure fluid down the spent power fluid return passageway.
Accordingly, a primary object of the present invention is the provision of a free-type pump assembly in combination with a cavity, together with various flow conduits and passageways, which enable the power fluid system to be maintained separate from the flow of production fluid.
Another object of the present invention is the provision of a downhole, free-type, hydraulically-actuated pump assembly in combination with a cavity therefor which enables power fluid to be flowed downhole through the production end and to the engine end, while formation fluid is conducted around the engine end to the production end, and spent power fluid is conducted along an isolated flow path back up to the surface of the ground, thereby enabling the power fluid to be recirculated.
A further object of the present invention is the provision of a downhole, free-type pump assembly having a double-acting engine end and a double-acting production end, and which includes a cavity which receives the pump assembly therewithin in such a manner to provide a plurality of spaced-apart annular chambers therebetween connected together in such a manner that the power fluid system and produced fluid are maintained isolated from one another.
A still further object of this invention is the provision of a free-type, downhole, hydraulically-actuated pump assembly having a production end located above an engine end, with power fluid flowing through the central axis of the production end, through the piston of the engine end, and to a valve assembly located below the engine end, with the produced fluid and the power fluid system being maintained isolated from one another.
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 sets forth a part diagrammatical, part schematical, part cross sectional representation of a borehole having a downhole pump assembly and flow system therefor arranged in accordance with the present invention;
FIG. 2 is an enlarged, part cross-sectional representation of part of the apparatus disclosed in FIG. 1;
FIG. 3 is a cross-sectional view taken along line 3--3 of FIG. 2; and
FIG. 4 is a cross-sectional view taken along line 4--4 of FIG. 2.
Detailed Description of the Preferred Embodiment
In FIG. 1 of the drawings there is disclosed a cased borehole 45 having a tubing string 49 located therewithin which conducts power fluid downhole, thereby making the power fluid available to the hydraulically-actuated pump assembly (seen in FIGS. 2-4) of the present invention. As seen in FIG. 2, the pump assembly includes a packer nose assembly 2 having a plurality of resilient packer elements located thereon, with the elements being arranged respective to one another whereby flow is precluded in either direction thereacross. A power oil inlet 26 makes power fluid available to the upper marginal end of the production end of the pump assembly by means of a hollow, upper balance tube 3, while the lower marginal end of the engine end thereof includes a lower, hollow balance tube at 4. A check valve 32 prevents uphole flow through the interior 26 of the packer nose assembly.
The engine end includes an engine control valve assembly 5, made in accordance with my previous U.S. Pat. No. 3,865,516, for providing a controlled flow of hydraulic fluid to and from working chambers 6 and 8 located on either side of engine piston 7.
The production end of the pump assembly is located above the engine end and includes a lower working chamber 9 connected to intake valve 10, a production piston 11 which separates an upper working chamber 12 from the before-mentioned, lower working chamber 9, and an intake valve 13 connected to working chamber 12.
Upper seal assemblies 14 and 16 underlie the packer nose assembly and form an annular chamber therebetween for providing formation fluid at suction ports 15 of the production end. The suction ports are in communication with intake valves 10 and 13 of the production end by means of the illustrated, longitudinal flow passageway 42 formed through the main body of the pump housing.
The packer nose assembly and seal assembly 16 provide an annular chamber about the upper marginal end 17 of the production end. Annular chambers 18 and 20 are separated from one another by seal assembly 19, with the chamber 18 being placed in communication with the chamber 17 by means of the flow conduit 25'. Seal assembly 21 separates annular chambers 20 and 36 from one another. The production end includes exhaust valves 22 and 23, which permit flow to occur from working chambers 9 and 12 into annular chamber 40.
Seal assembly 27 separates the annular chambers at 18 and 28 from one another, while seal assembly 29 separates the annular chambers 28 and 55 from one another. A standing valve 30 is formed within the illustrated shoe of the cavity and permits flow of formation fluid to occur at 31 towards the illustrated pump inlet. Spent power fluid flows into annular chamber 36, which is connected to flow conduit 33' and to the annular chamber 55. Connector 35 enables tail pipe 50 to be connected to the lower extremity of the pump.
The lower marginal engine end of the pump assembly includes an axial passageway 60 which communicates annular chamber 20 with formation fluid at 31. Production outlet passageway 43 is formed longitudinally through the sidewall of the cavity and interconnects annulus 40 with annulus 17.
As seen in FIGS. 2-4, the production and engine pistons are spaced apart from one another and attached to an axially aligned connecting rod having an axial passageway 44 formed therethrough. A plurality of radial passageways 42 are employed as may be required.
As seen in FIG. 1, the cased borehole is connected to the usual Christmas tree 46. Power oil storage tank 47 is connected to a high pressure pump 48 so that power oil can flow downhole through the tubing 49 and to the cavity, which is attached to the lower end of the tubing string. Numeral 51 indicates the production formation from which formation fluid is obtained through casing perforations 52. The produced fluid is conducted uphole through conduit 25 and to storage facility 53.
The lower terminal end of the free pump assembly includes the illustrated seat which forms a sealing surface which seats against the shoe 54, thereby forming the before-mentioned chamber 55, which is interconnected with the spent power fluid return 33.
In operation, the apparatus of the present invention is assembled in the manner of FIG. 1 so that when the free-type pump assembly is placed within tubing 49, the pump apparatus can be circulated downhole by pumping fluid from 47 into the power oil tubing. The packer nose assembly 2 sealingly engages the tubing string and prevents power oil from flowing across the resilient elements of the packer device. The pump is received within the illustrated cavity in sealing relationship against the shoe 54, as set forth in my U.S. Pat. No. 3,627,048, for example.
The packer nose assembly serves as an uppermost seal. The main body of the pump is provided with spaced upper seals 16 and 14; while additional seals 39, 21, 19, 27 and 29 provide for additional axially aligned, spaced annular chambers. The shoe 54, together with the lowermost end of the pump assembly, form the lowermost annular chamber 55. Accordingly, the pump assembly and cavity cooperate together to provide a first annular chamber at 17, a second annular chamber at 15, a third annular chamber at 40, a fourth annular chamber at 36, a fifth annular chamber at 20, a sixth annular chamber at 18, a seventh annular chamber at 28, and an eighth and lowermost annular chamber at 55. The eighth and fourth annular chambers are connected together and to the spent power oil return conduit 33. The seventh and fifth annular chambers are tied together and to the passageway 24. The sixth and first annular chambers are tied together and to the production outlet conduit 25. The third and first annular chambers are tied together and to the production conduit 25.
As power fluid flows at 1, the high pressure fluid enters the axial passageway of the packer nose assembly. The upper, hollow balance tube sealingly reciprocates within the upper marginal end of the engine end and is in fluid communication with passageway 26, so that power fluid must follow an isolated flow path from the packer nose assembly, down through the upper, hollow balance tube, in a manner similar to U.S. Pat. No. 3,517,741. Power fluid continues on through the production piston 11, through the hollow connecting rod, through the engine piston 7, and to the engine valve assembly 5, where power fluid is alternately directed into either of the chambers 6 and 8, while spent power fluid is directed into the fourth annular chamber 36. This action causes the engine end to reciprocate the production piston, while spent power fluid is conducted up the spent power fluid tubing 33 and to the storage tank 47 where the fluid can be filtered and recycled by pump 48.
As the production piston reciprocates, formation fluid from an oil-bearing formation 51 enters perforations 52 and flows into the tail pipe 50, through the one-way check valve 30, into the lowermost end or suction end of the pump assembly, where the formation fluid continues up passageway 24 into the fifth annular chamber 20. The formation fluid is also available at the seventh annular chamber 28. Formation fluid is also conducted up longitudinal passageway 24 to the second annular chamber at 15, where the formation fluid enters the main body of the production end and flows through longitudinal passageway 42 formed within the body of the pump assembly and is thereby made available to the intake or suction valves 10 and 13 of the pump assembly.
As the double-acting production end piston reciprocates, formation fluid is forced through production end exhaust valves 22 and 23, causing produced fluid to be provided at the third annular chamber 40. The produced fluid is forced up the longitudinal passageway 43 into the first annular chamber at 17 where the produced fluid then flows through ports 34, up the production conduit 25, and to the storage tank 53 located above the ground.
When it becomes necessary to retrieve the downhole pump assembly, power fluid is effected along spent power fluid flow conduit 33, thereby increasing the pressure within the eighth or lowermost annular chamber 55, to thereby unseat the pump and thereafter to force the pump assembly to flow uphole to the surface of the ground. A new pump is circulated downhole in a similar manner.
As previously noted, spent power fluid is effected at annular chambers 36 and 55, pump suction pressure at annular chambers 20, 24, and 28, and produced fluid pressure at annular chambers 17 and 18. Hence, seals 19, 29, and 39 are forced in an uphole direction, while seals 21 and 27 are forced in a downhole direction. This arrangement of pressure gradients across the various seal assemblies sets the o-ring seal against the o-ring groove and prevents leakage thereacross.