1. Field of the Invention
This invention relates generally to locking rings for securing inner wellhead tubular members to outer wellhead tubular members. More particularly, this invention relates to a locking ring on an inner wellhead tubular member that is actuated by a series of pins that may be compressed by an annulus seal and that, when compressed, pushes the locking ring into engagement with the outer wellhead tubular member.
2. Brief Description of Related Art
Typically, locking mechanisms are used between inner and outer wellhead tubular members to help prevent relative axial movement between the members. In some cases, such locking mechanisms are integrated with seals or packoffs, which are typically used as a pressure barrier in the annular space between the inner and outer tubular members.
For example, U.S. Patent Appln. Pub. No. 2012/0025470 discloses an arrangement that includes a casing hanger inserted in a well bore. An annular seal is inserted so as to seal the space between the casing hanger and the well bore. To accomplish this, the annular seal includes ridges that, when pressed against surfaces of the casing hanger and the wellbore, become embedded in the surfaces. Not only does this arrangement seal the space between the casing hanger and the well bore, but it also locks the casing hanger in place axially relative to the wellbore.
One characteristic of such an integrated sealing/locking arrangement, is that ridges perform both a sealing and a locking function. Such an arrangement is advantageous in certain applications. It is possible, however, that there may be annulus seal designs that would perform the sealing function well, but that do not have the required profile to lock the casing hanger relative to the well bore. Another characteristic of such an integrated sealing/locking arrangement, is that the ridges, which lock the casing hanger in place by engaging the walls of the casing hanger and the well bore, are positioned in the load path for lockdown. Again, this feature is advantageous in certain applications. In some instances, however, it may be desirable to have a locking mechanism that is separate from the annulus seal, and not located in the load path. Such a situation may arise, for example, where there is a need to increase resistance to fatigue and the reliability of the seal.
Disclosed herein is a wellhead having a locking ring assembly for locking an inner tubular member, such as a casing hanger, axially relative to an outer tubular member, such as a well bore. The assembly includes a radially expandable locking ring that is substantially contained in a recess around the circumference of the inner tubular member. The ring has an unlocked position, in which it is substantially fully seated within the recess, and a locked position, in which it expands at least partially out of the recess and into engagement with a corresponding recess in the outer tubular member. When in the locked position, the ring prevents the inner tubular member from moving axially relative to the outer tubular member.
The ring may be actuated by an actuating mechanism that substantially surrounds the inner tubular member and slides axially between an up position and a down position. When in the up position, the actuating mechanism is substantially disengaged from the locking ring so that the locking ring can remain in its unlocked position within the recess of the inner tubular member. Conversely, when in the down position, the actuating mechanism may at least partially displace the locking ring from the recess, forcing the locking ring to expand into a locked position and engage the recess of the outer tubular member.
In one example embodiment the actuating member may be a series of pins that are substantially vertically oriented around the circumference of the inner tubular member. In another embodiment, the actuating member may be a ring that surrounds the inner tubular member.
Further disclosed herein is a method of locking a casing hanger to a wellhead, where a casing hanger having a recess around its circumference, and a radially expandable locking ring within the recess, is inserted into a well bore. Thereafter, an actuating mechanism may be employed to expand the locking ring so that it engages a recess of the well bore, thereby locking the casing hanger axially relative to the well bore. In an example embodiment, the actuating mechanism may be deployed by an annular seal inserted into the well bore above the casing hanger. As discussed above with respect to the locking ring assembly, the actuating mechanism may be a series of pins surrounding the casing hanger. Alternatively, it may be a ring that surrounds the inner tubular member.
The present invention will be better understood on reading the following detailed description of nonlimiting embodiments thereof, and on examining the accompanying drawings, in which:
The foregoing aspects, features, and advantages of the present invention will be further appreciated when considered with reference to the following description of preferred embodiments and accompanying drawings, wherein like reference numerals represent like elements. In describing the preferred embodiments of the invention illustrated in the appended drawings, specific terminology will be used for the sake of clarity. However, the invention is not intended to be limited to the specific terms used, and it is to be understood that each specific term includes equivalents that operate in a similar manner to accomplish a similar purpose.
The present technology may be used in oil and gas wells, and in particular in wellheads at the top of the wells. Typical wellheads may serve a number of different functions, including casing suspension, tubing suspension, pressure sealing, and so forth. Some of these functions require an inner well member, such as, for example, a casing hanger, to be inserted into the wellhead and locked axially relative to the wellhead.
Referring to
As further shown in
In the example embodiment shown in
Referring now to
In one non-limiting example, the locking ring of the present technology may lock a casing hanger in place relative to wellhead tubing according to the following method. After the casing hanger 2 is inserted into a bore 32 of a wellhead 34, the pins 20 and locking ring 12 are configured as shown in
Next, as shown in
In the event that the casing hanger 2 needs to be retrieved from the wellbore, the following process may be employed. First, the annulus seal 36 may be removed from the bore 32. Thereafter a running tool (not shown) may be inserted into the bore. The running tool should have means to engage the retrieval teeth 30 of the pins 20. The running tool is lowered over the top of the casing hanger 2 until it engages each of the retrieval teeth 30. Thereafter the running tool is raised, thereby exerting an upward force on the retrieval teeth 30 and moving the pins 20 into the up position. As the pins 20 move into the up position, the ends of the pins 20 move out of the bottom portions of the holes 10 and cease to displace the locking ring 12. Accordingly, the locking ring 12 contracts back into the recess 8 and disengages from the recess 44 in the wellhead wall. With the locking ring 8 thus disengaged, the casing hanger 2 may move axially relative to the wellhead and can be withdrawn from the well. In an alternative embodiment, the annular seal 36 itself may be equipped with means for engaging the retrieval teeth 30 and may pull the pins 20 into the up position, thereby eliminating the need to insert a separate running tool.
Referring to
Although the above example embodiments use pins to displace the locking ring 12 and expand it into locked engagement with the recess 44 in the wellhead wall, it is to be understood that other ring actuating mechanisms are also contemplated by the present invention. For example, instead of pins, one example embodiment employs a tapered ring (not shown) that has an up position and a down position. Similar to the pins disclosed above, when the tapered ring is in the down position it is configured to at least partially displace the locking ring 12 from the recess 8 and into locked engagement with the wellhead wall. Conversely, when the tapered ring is in the up position, it ceases to displace the ring 12 from the recess 8, and the ring contracts back into the recess 8.
One advantage to the pin actuated locking rings is that, unlike some known locking rings, the pin actuated locking rings of the present technology does not share a profile with the back-up seal of an annulus seal. Thus, there is more room for back-up sealing geometry, thereby allowing for more flexibility in the design and location of the back-up seal. In addition, with the above disclosed design, the load path for lockdown need not run through the annulus seal. Accordingly, the reliability and resistance to fatigue of the annulus seal will be improved. Furthermore, the locking rings disclosed herein allow for a secure lockdown of the casing hanger without modification of the annulus seal, thereby eliminating the need for time consuming and costly testing of alternative annulus seal designs.
While the invention has been shown or described in only some of its forms, it should be apparent to those skilled in the art that it is not so limited, but is susceptible to various changes without departing from the scope of the invention. For example, although the example embodiments have disclosed use of the locking ring with a casing hanger, the inner tubular member could instead be a tubing hanger, plug, safety valve, or other device. Furthermore, it is to be understood that the above disclosed embodiments are merely illustrative of the principles and applications of the present invention. Accordingly, numerous modifications may be made to the illustrative embodiments and other arrangements may be devised without departing from the spirit and scope of the present invention as defined by the appended claims.
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PCT Search Report and Written Opinion issued Jun. 12, 2014 in connection with corresponding PCT Patent Application No. PCT/U52013/058731. |
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