This non-provisional application claims priority under 35 U.S.C. §119(a) on PCT Application No. PCT/CN2012/079051 filed in WIPO on Jul. 23, 2012, the entire contents of which are hereby incorporated by reference.
Some references, if any, which may include patents, patent applications and various publications, may be cited and discussed in the description of this invention. The citation and/or discussion of such references, if any, is provided merely to clarify the description of the present invention and is not an admission that any such reference is “prior art” to the invention described herein. All references listed, cited and/or discussed in this specification are incorporated herein by reference in their entireties and to the same extent as if each reference was individually incorporated by reference.
The invention relates to a sealing or packoff apparatus within a borehole, in particular to a liner hanger top packer.
With the continuous development of the oil well completion technique, the number of some complex wells, such as ultra-deep wells, horizontal wells, extended reach wells, high-pressure wells, is increasing, and the hanging screen well completion technique plays a big role in solving complex problems of the well-completion practice. The liner hanger packer is a key to hanging screen well completion.
According to a product sample introduction published by TIW Corporation (US) in 1997, the product from that company is such a product that a packing segment is arranged at an upper end of a hanging apparatus, the packing segment is sleeved with several plastic cylinders with their lower ends abutting against a shoulder and upper ends pressed by a locking sleeve. The hanging apparatus is in a cylindrical shape with its upper end connecting with a sealing apparatus, and an upper end of the locking sleeve is connected with a tie-back receptacle. During assembly, the locking sleeve and the hanging apparatus is fixed and thus prevented from relative sliding by a pin arranged therebetween, allowing the plastic cylinder to be in an unstressed condition. When descending the well for packing, the tie-back receptacle pushes the locking sleeve downward to shear the pin, and the locking sleeve moves downward to press the plastic cylinder so as to cause radial expansion of the latter, thereby packing an annular space between the liner and an outside casing. A retaining apparatus is arranged below an inner circle of the locking sleeve to allow for a downward movement of the locking sleeve but not a reverse movement, so that the plastic cylinder cannot rebound, and the annular space is effectively packed.
However, such a product has a disadvantage that as the diameter of an outer rim of the plastic cylinder is the same as that of the liner and the locking sleeve, damage occurs when this apparatus descends the well, thereby affecting the packing effect. During a descent process, a premature activation is caused easily, thus leading to accidents.
How to improve the reliability and security of base sealing and base hanging has always been a big problem that manufacturers of liner hanger packers are facing. For many years, many domestic and foreign manufacturers have offered one after another new-type liner hanger packers with unique structures, but due to the influence of the severe downhole environment, premature base-hanging and base-sealing during a descent process of the liner hanger packer has always been a big technical disadvantage in the application of the liner hanger packer.
The main object of the invention is to provide a liner hanger top packer which can be base-hung more reliably and has an excellent base-sealing performance, thereby allowing a greatly improved base-hanging and base-sealing success rate. Meanwhile, during operation, premature base-hanging and base-sealing will not occur, so that the defect of premature base-hanging and base-sealing of the prior art packer is overcome.
A first aspect of the present invention discloses a liner hanger top packer, the liner hanger top packer comprising a body and, an adjusting sleeve, a retaining apparatus, a base-sealing apparatus, a base-hanging apparatus and a locking mechanism which are sleeved sequentially from top to bottom on the body, wherein, the locking mechanism is arranged between the base-sealing apparatus and the base-hanging apparatus, the locking mechanism comprising: a locking ball sleeve sleeved on the base-sealing apparatus with its upper end abutting against the base-sealing apparatus; a ball socket arranged at a junction of the base-sealing apparatus, the locking ball sleeve and the hanging apparatus, and formed by a first ball socket arranged in the base-sealing apparatus, a second ball socket arranged in the locking ball sleeve and a third ball socket arranged in the base-hanging apparatus which close up facing one another; and a steel ball, arranged in the ball socket for restricting an axial relative movement between the base-sealing apparatus, the locking ball sleeve and the base-hanging apparatus. When the base-sealing apparatus moves downward relative to the body, the steel ball falls into a ring slot in an outer surface of the body, thereby removing the restriction to the axial relative movement between the base-sealing apparatus, the locking ball sleeve and the base-hanging apparatus.
Further, an elastic serrated thread for connecting the base-sealing tool is arranged on the adjusting sleeve of the liner hanger top packer of the invention.
Further, the base-sealing apparatus of the liner hanger top packer of the invention comprises: an upper gauge ring, sleeved on the body and abutting against a step of the body and the retaining apparatus, the upper gauge ring being provided with the first ball socket; a plastic cylinder, sleeved on the upper gauge ring with its upper end abutting against the shoulder of the upper gauge ring; and a lower gauge ring, sleeved on the upper gauge ring and abutting against the lower end of the plastic cylinder and the upper end of the locking ball sleeve.
Further, the upper gauge ring and the lower gauge ring have an outer diameter larger than that of the plastic cylinder. Thus, the plastic cylinder can be prevented from being damaged during tripping, resulting in an effective packing.
Further, the base-hanging apparatus of the liner hanger top packer of the invention comprises: an upper conical body being in screw connection with the lower gauge ring and pressing against the locking ball sleeve, the upper conical body being provided with the third ball socket; a baffle ring, sleeved on the upper conical body; a slip, sleeved on the body and abutting against with the conical surface of the upper conical body and the baffle ring; a slip cage, sleeved outside the slip, the baffle ring and the upper conical body in a connecting way, being in screw connection with the upper conical body, and being in shear pin connection with the baffle ring through the baffle ring; and a lower conical body, sleeved on the body, being fixedly connected with the body and abutting against the slip, wherein when the upper conical body transfers force to the slip, the latter protrude along the conical surface of the lower conical body so as to achieve the base-hanging.
Further, the outer diameter of the lower conical body of the liner hanger top packer of the invention is the maximum outer diameter of the liner hanger top packer. Thus, the plastic cylinder and the slip cage can be protected during tripping.
Further, a longitudinal flow slot is arranged on the surface of the lower conical body of the liner hanger top packer of the invention. Thus, a flow area can be increased.
Further, the retaining apparatus of the liner hanger top packer of the invention comprises: a connecting sleeve sleeved on the body and abutting against the upper gauge ring, wherein the connecting sleeve and the body are in pin connection through a connecting sleeve pin, and when the packer is set, the connecting sleeve pin is sheared; a retaining ring sleeved on the body and abutting against the connecting sleeve, ratchets arranged on the inner surface of the retaining ring matching with that of the body to prevent the retaining ring from moving upward relative to the body; and a base-sealing sleeve sleeved on the body and abutting against the connecting sleeve and the retaining ring, the base-sealing sleeve and the connecting sleeve being connected by a countersunk screw.
Further, the adjusting sleeve and the base-sealing sleeve of the liner hanger top packer of the invention are fixed by an anti-rotational screw, and a fixed hole formed in the adjusting sleeve is a long hole.
Further, a seal is provided between the connecting sleeve and the body, between the upper gauge ring and the body, as well as between the lower gauge ring and the upper gauge ring of the liner hanger top packer of the invention respectively by a seal ring.
Hereinafter, the invention is described in detail with reference to the accompanying drawings and embodiments, which, however, are not to limit the invention.
Body 10
Serrated thread 11
Ratchet 12
Step 13
Ring slot 14
Adjusting sleeve 20
Anti-rotational screw 21
Serrated thread 22
Retaining apparatus 30
Connecting sleeve 31
Connecting sleeve pin 311
Retaining ring 32
Ratchet 321
Base-sealing sleeve 33
Countersunk screw 331
Seal ring 332
Base-sealing apparatus 40
Upper gauge ring 41
Seal ring 412
First ball socket 413
Plastic cylinder 42
Lower gauge ring 43
Seal ring 432
Base-hanging apparatus 50
Upper conical body 51
Third ball socket 513
Baffle ring 52
Baffle ring shear pin 521
Slip 53
Slip cage 54
Lower conical body 55
Locking mechanism 60
Locking ball sleeve 61
Second ball socket 613
Ball socket 62
Steel ball 63
Hereinafter, the structure principle and operating principle of the present invention are described in detail with reference to the accompanying drawings.
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The plastic cylinder 42 and the lower gauge ring 43 are sleeved on the upper gauge ring 41 of the liner hanger top packer of the invention, and the upper gauge ring 41 is integrally connected with the steel ball 63 by the locking ball sleeve 61. During a descent process, the lower part of the liner hanger top packer of the invention is met with friction, since the steel ball 63 restricts the axial relative movement between the upper gauge ring 41, the locking ball sleeve 61 and the upper conical body 51, the resistance transferred to the upper conical body 51 will not be transferred to the lower gauge ring 43, but is directly transferred to the upper gauge ring 41 through the steel ball 63 and is further transferred to the adjusting sleeve 20 through the retaining apparatus 30. Thus, relative movement between the upper gauge ring 41 and the lower gauge ring 43 will not be produced during a descent process, and the plastic cylinder 42 does not deform, thereby preventing the possibility of premature base-sealing.
After the completion of the descent process, drilling and completion fluid is driven into a central string, and a piston mechanism 25 in a running service tool is connected with the adjusting sleeve 20 through the serrated thread 22. As the serrated thread 22 is elastic, the piston mechanism disengages from the adjusting sleeve 20 under pressure of the drilling and completion fluid and continues to move axially downward, driving the base-sealing sleeve 33 to have a certain downward axial displacement. After the connecting sleeve pin 311 is sheared completely, the upper gauge ring 41 will be urged to move, thereby making the steel ball 63 fall into the ring slot 14 of the body 10. Then, the resistance is no longer transferred to the upper conical body 51 through the steel ball 63, but to the plastic cylinder 42. The plastic cylinder 42 is pressed and undergoes a radial elastic deformation, causing the gap between an inner string and an outer string to be completely filled and sealed, thereby realizing the base-sealing. Axial displacement occurs when the plastic cylinder 42 expands radically, and after shearing a next stop pin baffle ring shear pin 521, the plastic cylinder 42 urges the slip cage 54 and the upper conical body 51 to make axial movement at the same time. As the lower conical body 55 has already been fixed to the body 10, the upper conical body 51 and the lower conical body 55 will move toward each other, thereby unlocking the slip 53 to allow it to move downward along the conical surface of the lower conical body 55 and protrude radically. Then, barbs on the slip 53 may be used to clip the inner wall of the outer string, thereby realizing the base-hanging.
In other preferred embodiments of the invention, the outer diameter of a lower conical body 55 may be set to be the maximum outer diameter of the liner hanger top packer so as to protect the plastic cylinder 42 and the slip cage 54 during tripping. Or, longitudinal flow slots may be formed on the surface of the lower conical body to increase flow area. The outer diameter of the upper gauge ring 41 and the lower gauge ring 43 may also be set to be greater than the outer diameter of the 42, thus the plastic cylinder 42 can be protected from being damaged during tripping, thereby accomplishing the packing effectively.
In addition, the present invention may have a variety of other embodiments. Those skilled in the art can make all kinds of corresponding changes and modifications according to the present invention without departing from the spirit and essence of the present invention. It is intended that all these changes and modifications be covered by the appended claims of the present invention.
The upper gauge ring of the liner hanger top packer of the invention is sleeved with the plastic cylinder and the lower gauge ring, and integrally connects with the steel ball through the locking ball sleeve. During a descent process, the lower part of the liner hanger top packer of the invention is met with friction, since the steel ball restricts the axial relative movement between the upper gauge ring, the locking ball sleeve and the upper conical body, the friction transmitted to the upper conical body is not transmitted to the lower gauge ring, but is directly transmitted directly to the upper gauge ring via the steel ball and is further transmitted to the adjusting sleeve via the retaining apparatus. As such, relative movements are not generated between the upper gauge ring and the lower gauge ring, while a plastic cylinder does not deform, thus preventing the possibility to premature base-sealing.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2012/079051 | 7/23/2012 | WO | 00 | 1/22/2015 |
Publishing Document | Publishing Date | Country | Kind |
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WO2014/015469 | 1/30/2014 | WO | A |
Number | Name | Date | Kind |
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20100038073 | Carro | Feb 2010 | A1 |
Number | Date | Country |
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2305482 | Jan 1999 | CN |
2368973 | Mar 2000 | CN |
2620079 | Jun 2004 | CN |
2729299 | Sep 2005 | CN |
101555778 | Oct 2009 | CN |
2280461 | Feb 1995 | GB |
Number | Date | Country | |
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20150176354 A1 | Jun 2015 | US |