LOW PROFILE CONNECTION FOR PRESSURE CONTAINMENT DEVICES
20220325595 ยท 2022-10-13
Assignee
Inventors
Cpc classification
E21B33/038
FIXED CONSTRUCTIONS
International classification
E21B33/038
FIXED CONSTRUCTIONS
Abstract
An annular blowout preventer (BOP). The annular BOP includes an annular housing having a base. The base includes a plurality of fasteners extending from an interior of the housing to an exterior of the housing via fastener holes formed through the connector base. The annular BOP further includes a seal plate positioned at least partially adjacent interior ends of the plurality of fastener. The annular BOP further includes an annular elastomeric element positioned within the interior of the housing and an annular piston positioned within the interior of the housing. The piston, when driven towards the elastomeric element, deforms the elastomeric element and forces the elastomeric element to constrict radially inward.
Claims
1. An annular blowout preventer (BOP), comprising: an annular housing having a connector base, the connector base comprising a plurality of fasteners extending from an interior of the housing to an exterior of the housing via fastener holes formed through the connector base; a seal plate positioned at least partially adjacent interior ends of the plurality of fasteners to seal against the fastener holes; an annular elastomeric element positioned within the interior of the housing; and an annular piston positioned within the interior of the housing, wherein the piston, when driven towards the elastomeric element, deforms the elastomeric element and forces the elastomeric element to constrict radially inward.
2. The annular BOP of claim 1, further comprising: a seal positioned circumferentially around the seal plate between the seal plate and an interior surface of the housing.
3. The annular BOP of claim 1, further comprising: a seal positioned at an inner diameter of the seal plate.
4. The annular BOP of claim 1, further comprising: a plurality of stud nuts or bolts located within the interior of the housing and securing the plurality of studs or bolts, respectively.
5. The annular BOP of claim 1, wherein the housing further includes a recessed chamber adjacent fastener holes, the recessed chamber sealed by the seal plate, and wherein a vent port formed in the housing communicatively couples the recessed chamber to outside of the housing.
6. The annular BOP of claim 1, wherein the plurality of fasteners are configured to couple to another component positioned adjacent the annular BOP.
7. The annular BOP of claim 6, wherein the other equipment is a ram BOP, spool, or connector.
8. The annular BOP of claim 1, wherein the housing comprises a body forming a bottom portion of the housing and a cap forming a top portion of the housing.
9. A subsea system, comprising: a riser coupled to a vessel; a lower marine riser package coupled to the riser opposite the vessel; an annular blowout preventer (BOP) coupled to the lower marine riser package, the BOP comprising: an annular housing having a base, the base comprising: a plurality of fasteners extending from an interior of the housing to an exterior of the housing via fastener holes formed through the base; a seal plate positioned at least partially adjacent interior ends of the plurality of fasteners; and an annular elastomeric element positioned within the interior of the housing; and an annular piston positioned within the interior of the housing, wherein the piston, when driven towards the elastomeric element, deforms the elastomeric element and forces the elastomeric element to constrict radially inward; and one or more ram BOPs coupled to the annular BOP.
10. The annular BOP of claim 1, further comprising: a seal positioned circumferentially around the seal plate between the seal plate and an interior surface of the housing.
11. The annular BOP of claim 1, further comprising: a seal positioned at an inner diameter of the seal plate.
12. The annular BOP of claim 1, further comprising: a seal positioned at an interior surface of the base.
13. The annular BOP of claim 1, wherein the housing further includes a recessed chamber adjacent the fastener holes, the recessed chamber sealed by the seal plate, and wherein a vent port formed in the housing communicatively couples the recessed chamber to outside of the housing.
14. The annular BOP of claim 1, wherein the plurality of fasteners include at least one of studs, bolts, or screws.
15. A method of installing an annular blowout preventer (BOP), comprising: placing a body of a housing of the annular BOP onto a piece of equipment, wherein the body has a base with a plurality of fastener holes formed therethrough; securing the body to the equipment with a plurality of fasteners inserted through the plurality of fastener holes; and placing a top portion of the annular BOP onto the body, wherein the top portion includes a cap, an elastomeric element, and a piston, wherein the cap couples with the body to form the housing and enclose the elastomeric element and piston inside of the housing.
16. The method of claim 15, wherein the equipment is a ram BOP, a connector, or a spacer spool.
17. The method of claim 15, further comprising: forming a seal between the fastener holes and a main cavity of the annular BOP via a seal plate, a first seal on an outer perimeter of the seal plate, and a second seal on an inner perimeter of the seal plate.
18. The method of claim 15, further comprising: forming a seal between the fastener holes and a main cavity of the annular BOP via a piston sleeve with a first seal on an outer perimeter and a second seal on a bottom face of the piston sleeve.
19. The method of claim 18, wherein the housing further includes a recessed chamber adjacent fastener holes, the recessed chamber sealed by the seal plate or the piston sleeve.
20. The method of claim 15, wherein the housing further comprises a vent port for leakage detection.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] The present technology can be better understood on reading the following detailed description of nonlimiting embodiments thereof, and on examining the accompanying drawings, in which:
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0015] The foregoing aspects, features, and advantages of the present technology can be further appreciated when considered with reference to the following description of preferred embodiments and accompanying drawings, wherein like reference numerals represent like elements. The following is directed to various exemplary embodiments of the disclosure. The embodiments disclosed should not be interpreted, or otherwise used, as limiting the scope of the disclosure, including the claims. In addition, those having ordinary skill in the art can appreciate that the following description has broad application, and the discussion of any embodiment is meant only to be exemplary of that embodiment, and not intended to suggest that the scope of the disclosure, including the claims, is limited to that embodiment.
[0016] Referring to
[0017]
[0018]
[0019] In some embodiments, the annular housing 31 is comprised of a body 43 and a cap 45, in which the body 43 forms a bottom portion of the annular housing 31 and the cap 45 forms a top portion of the annular housing 31. The body 43 and the cap 45 are secured to each other to form the annular housing 31 and contain the piston 37 and the elastomeric element 41. In some embodiments, the cap 45 secures to the body 43 with a locking member 47. Cap 45 has a concentric upper opening 49 with a diameter the same or smaller than the diameter of central passage of the elastomeric element 41 when the elastomeric element 41 is not being deformed. A concentric lower opening 51 is located at a lower end of the body 43 and is the same or smaller diameter as upper opening 49.
[0020] The body 43 includes a connector base 39 located at the bottom of the annular BOP 29 and configured to connect the annular BOP 29 to another piece of equipment, such as a ram BOP or connector 27 (
[0021] Referring still to
[0022] A recessed chamber 67 is formed adjacent the fastener holes 53 to accommodate the fasteners 55 and stud nuts 65, and allows for sealing the region from the rest of annular BOP 29. Specifically, the recessed chamber 67 is sealed by the seal plate 57 and the first and second seals 59, 69. In some embodiments, a vent port 71 is formed in the housing 31 and communicatively couples the recessed chamber 67 to outside of the housing annular BOP 29. This allows for any leaks in the recessed chamber 67 to be detected, such as from wellbore fluids that may have moved past the piston sleeve seal 72 and/or hydraulic closing chamber seals 59 and 69.
[0023]
[0024] The annular BOP 29 of the present disclosure provides a way to create a connect between the annular BOP 29 and a ram BOP or a connector on a subsea stack to connect to the BOP stack 11 without the need for a connection flange, which is how the connection is conventionally made. The connection flange adds additional height and weight to the annular BOP 29. Thus, the present annular BOP 29 which is connectable directly from the base of the housing does not require the flange and thus can be shorter overall.
[0025] While the present disclosure has been described with respect to a limited number of embodiments, those skilled in the art, having benefit of this disclosure, can appreciate that other embodiments may be devised which do not depart from the scope of the disclosure as described herein. Accordingly, the scope of the disclosure should be limited only by the attached claims.