Nested lock screw
12012818 ยท 2024-06-18
Assignee
Inventors
Cpc classification
International classification
E21B33/04
FIXED CONSTRUCTIONS
E21B23/02
FIXED CONSTRUCTIONS
E21B23/04
FIXED CONSTRUCTIONS
Abstract
A wellhead assembly includes a wellhead housing, the wellhead housing including a lock screw receptacle. The wellhead assembly includes an outer nested wellhead component positioned within the wellhead housing, the outer nested wellhead component including a lock screw aperture. The wellhead assembly includes an inner nested wellhead component, the inner nested wellhead component including an inner receptacle. The wellhead assembly includes a nested lock screw. The nested lock screw includes an outer sleeve, the outer sleeve having external threads formed on an outer surface thereof, the outer sleeve threadedly coupled to the lock screw receptacle of the wellhead housing. The nested lock screw includes an inner lock screw, the inner lock screw positioned within and threadedly coupled to the outer sleeve, the inner lock screw passing through the lock screw aperture and engaging the inner receptacle.
Claims
1. A nested lock screw, comprising: an outer sleeve, the outer sleeve having external threads formed on an outer surface thereof; an external seal positioned around an outer circumference of the outer sleeve; an inner lock screw, the inner lock screw positioned within and threadedly coupled to the outer sleeve, wherein the inner lock screw comprises a non-rotating inner lock screw and a rotating inner lock screw, the non-rotating inner lock screw and the rotating inner lock screw rotatably coupled together, wherein threaded coupling between the inner lock screw and the outer sleeve is formed between the rotating inner lock screw and the outer sleeve; and an internal seal positioned around an outer circumference of the inner lock screw within an annulus formed between the inner lock screw and the outer sleeve.
2. The nested lock screw of claim 1, wherein the external seal is positioned on a non-rotating portion of the outer sleeve.
3. The nested lock screw of claim 1, wherein the internal seal is positioned on a non-rotating portion of the inner lock screw.
4. The nested lock screw of claim 1, wherein the outer sleeve comprises a non-rotating outer lock sleeve and a rotating outer lock sleeve, wherein the external threads are formed on the rotating outer lock sleeve, wherein the non-rotating outer lock sleeve and the rotating outer lock sleeve are rotatably coupled together by an outer sleeve coupler.
5. The nested lock screw of claim 1, wherein the non-rotating inner lock screw and the rotating inner lock screw are rotatably coupled together with an inner screw coupler.
6. The nested lock screw of claim 1, wherein the inner lock screw is engaged with the outer sleeve at a distal end of the inner lock screw.
7. The nested lock screw of claim 1, wherein the outer sleeve is adapted to extend or retract relative to a wellhead housing when rotated.
8. A wellhead assembly, comprising: a wellhead housing, the wellhead housing including a lock screw receptacle; an outer nested wellhead component positioned within the wellhead housing, the outer nested wellhead component including a lock screw aperture; an inner nested wellhead component, the inner nested wellhead component including an inner receptacle; and a nested lock screw, the nested lock screw including: an outer sleeve, the outer sleeve having external threads formed on an outer surface thereof, the outer sleeve threadedly coupled to the lock screw receptacle of the wellhead housing; and an inner lock screw, the inner lock screw positioned within and threadedly coupled to the outer sleeve, the inner lock screw passing through the lock screw aperture and engaging the inner receptacle, wherein the inner lock screw comprises a non-rotating inner lock screw and a rotating inner lock screw, the non-rotating inner lock screw and the rotating inner lock screw rotatably coupled together, wherein threaded coupling between the inner lock screw and the outer sleeve is formed between the rotating inner lock screw and the outer sleeve.
9. The wellhead assembly of claim 8, further comprising an external seal positioned around an outer circumference of the outer sleeve and in abutment with the wellhead housing.
10. The wellhead assembly of claim 8, further comprising an internal seal positioned around an outer circumference of the inner lock screw within an annulus formed between the outer sleeve and the inner lock screw.
11. The wellhead assembly of claim 8, wherein the outer sleeve comprises a non-rotating outer lock sleeve and a rotating outer lock sleeve, wherein the external threads are formed on the rotating outer lock sleeve, wherein the non-rotating outer lock sleeve and the rotating outer lock sleeve are rotatably coupled together by an outer sleeve coupler.
12. A nested lock screw, comprising: an outer sleeve, the outer sleeve having external threads formed on an outer surface thereof, wherein the outer sleeve comprises a non-rotating outer lock sleeve and a rotating outer lock sleeve, wherein the external threads are formed on the rotating outer lock sleeve, wherein the non-rotating outer lock sleeve and the rotating outer lock sleeve are rotatably coupled together by an outer sleeve coupler; an external seal positioned around an outer circumference of the outer sleeve; an inner lock screw, the inner lock screw positioned within and threadedly coupled to the outer sleeve; and an internal seal positioned around an outer circumference of the inner lock screw within an annulus formed between the inner lock screw and the outer sleeve.
13. The nested lock screw of claim 12, wherein the external seal is positioned on a non-rotating portion of the outer sleeve.
14. The nested lock screw of claim 12, wherein the internal seal is positioned on a non-rotating portion of the inner lock screw.
15. The nested lock screw of claim 12, wherein the inner lock screw comprises a non-rotating inner lock screw and a rotating inner lock screw, the non-rotating inner lock screw and the rotating inner lock screw rotatably coupled together, wherein threaded coupling between the inner lock screw and the outer sleeve is formed between the rotating inner lock screw and the outer sleeve.
16. The nested lock screw of claim 15, wherein the non-rotating inner lock screw and the rotating inner lock screw are rotatably coupled together with an inner screw coupler.
17. The nested lock screw of claim 15, wherein the rotating inner lock screw and the non-rotating inner lock screw are adapted to rotate relative to each other while remaining axially aligned.
18. The nested lock screw of claim 12, wherein the inner lock screw is engaged with the outer sleeve at a distal end of the inner lock screw.
19. The nested lock screw of claim 12, wherein the outer sleeve is adapted to extend or retract relative to a wellhead housing when rotated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present disclosure is best understood from the following detailed description when read with the accompanying figures. It is emphasized that, in accordance with the standard practice in the industry, various features are not drawn to scale. In fact, the dimensions of the various features may be arbitrarily increased or reduced for clarity of discussion.
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DETAILED DESCRIPTION
(8) It is to be understood that the following disclosure provides many different embodiments, or examples, for implementing different features of various embodiments. Specific examples of components and arrangements are described below to simplify the present disclosure. These are, of course, merely examples and are not intended to be limiting. In addition, the present disclosure may repeat reference numerals and/or letters in the various examples. This repetition is for the purpose of simplicity and clarity and does not in itself dictate a relationship between the various embodiments and/or configurations discussed.
(9)
(10) In some embodiments, one or more components of wellhead assembly 10 may be secured together using one or more nested lock screws 100. For example, in some embodiments, as shown in
(11) In some embodiments, as shown in
(12) In some embodiments, inner lock screw 103 may be threadedly coupled to outer sleeve 101 such that rotation of inner lock screw 103 relative to outer sleeve 101 may extend or retract inner lock screw 103 relative to outer sleeve 101. The position of outer sleeve 101 relative to wellhead housing 12 may therefore be adjustable independently from the position of inner lock screw 103 relative to outer sleeve 101. In some embodiments, the clearance between outer sleeve 101 and inner lock screw 103 may be of generally tight tolerance such that, for example and without limitation, inner lock screw 103 engages outer sleeve 101 at a distal end thereof, thereby supporting inner lock screw 103 against bending stresses incurred while nested lock screw 100 is used to secure components of wellhead assembly 10.
(13) In some embodiments, nested lock screw 100 may include one or more internal seals 107 positioned to form a fluid seal between outer sleeve 101 and inner lock screw 103. In some embodiments, nested lock screw may include one or more external seals 109 positioned to form a fluid seal between outer sleeve 101 and wellhead housing 12. Internal seals 107 and external seals 109 may reduce or prevent fluid egress from within wellhead assembly 10.
(14) In some embodiments, as shown in
(15) In some embodiments, nested lock screw 100 may include two-part inner lock screw 103. Two-part inner lock screw 103 may include rotating inner lock screw 103a and non-rotating inner lock screw 103b. Rotating inner lock screw 103a and non-rotating inner lock screw 103b may be mechanically coupled together by a coupler or, as shown in
(16)
(17) As shown in
(18) Nested lock screw 100 may then be installed to wellhead housing 12 by inserting nested lock screw 100 into lock screw receptacle 20 and rotating two-part outer sleeve 101 of nested lock screw 100 as shown in
(19) In some embodiments, two-part inner lock screw 103 may then be rotated until two-part inner lock screw 103 engages inner receptacle 24 and is fully seated thereto as shown in
(20) The foregoing outlines features of several embodiments so that a person of ordinary skill in the art may better understand the aspects of the present disclosure. Such features may be replaced by any one of numerous equivalent alternatives, only some of which are disclosed herein. One of ordinary skill in the art should appreciate that they may readily use the present disclosure as a basis for designing or modifying other processes and structures for carrying out the same purposes and/or achieving the same advantages of the embodiments introduced herein. One of ordinary skill in the art should also realize that such equivalent constructions do not depart from the spirit and scope of the present disclosure and that they may make various changes, substitutions, and alterations herein without departing from the spirit and scope of the present disclosure.