Subsea well equipment landing indicator and locking indicator
20190178077 ยท 2019-06-13
Assignee
Inventors
- Thiago Bigarella (Houston, TX, US)
- Richard Meronek (Houston, TX, US)
- Laura Small (Houston, TX, US)
- Douglas Caraway (Conroe, TX, US)
Cpc classification
B32B2535/00
PERFORMING OPERATIONS; TRANSPORTING
E21B23/02
FIXED CONSTRUCTIONS
B32B2325/00
PERFORMING OPERATIONS; TRANSPORTING
B32B37/15
PERFORMING OPERATIONS; TRANSPORTING
E21B33/038
FIXED CONSTRUCTIONS
E21B47/098
FIXED CONSTRUCTIONS
International classification
E21B47/09
FIXED CONSTRUCTIONS
E21B23/02
FIXED CONSTRUCTIONS
Abstract
A subsea well equipment landing body (1) comprising an indicator assembly to indicate landing of the landing body or to indicate locking of the landing body. The indicator assembly has a stem bore (7), a sliding stem (11) within the stem bore that has a stem head (23) protruding beyond an external face of the landing body. A stem channel (25) in the sliding stem extends between the stem head and a stem channel mouth (27), and is in fluid communication with the outside of the landing body. A hydraulic channel (9) in the landing body is in fluid communication with the stem bore. The stem channel mouth is positionable in a communicating position, in which there is fluid communication between the hydraulic channel and the stem channel, and a non-communicating position, without fluid communication between the hydraulic channel and the stem channel.
Claims
1. A subsea well equipment landing body (1) comprising an indicator assembly configured to indicate landing of the landing body (1) or to indicate locking of the landing body (1), the indicator assembly comprising a stem bore (7); a sliding stem (11) within the stem bore, with a stem head (23) protruding beyond an external face of the landing body; a stem channel (25) in the sliding stem, extending between the stem head and a stem channel mouth (27), and in fluid communication with the outside of the landing body; a hydraulic channel (9) in the landing body (1), in fluid communication with the stem bore (7); wherein the stem channel mouth is positionable in a communicating position, in which there is fluid communication between the hydraulic channel (9) and the stem channel (25); and a non-communicating position, in which there is no fluid communication between the hydraulic channel (9) and the stem channel (25).
2. A subsea well equipment landing body (1) according to claim 1, wherein the sliding stem (11) is configured to slide in an axial stem direction, wherein the sliding stem has an outer radial stem face (12) facing radially with respect to the axial stem direction, wherein the stem channel mouth (27) is arranged on the outer radial stem face (12), and wherein a seal ring (29) is arranged between the outer radial stem face and the opposite face of the stem bore (7), adjacent the stem channel mouth (27).
3. A subsea well equipment landing body (1) according to claim 1, wherein the stem channel mouth (27) is positionable in two non-communicating positions, one on respective sides of the communicating position.
4. A subsea well equipment landing body (1) according to claim 1, further comprising a head extension element (24) attached to the stem head (23).
5. A subsea well equipment landing body (1) according to claim 1, further comprising a locking actuator component (3, 103), the locking actuator component being configured to slide against a locking element (5, 105) for movement of the locking element towards a locked position, wherein the locking actuator component comprises a recessed locking indication face (73), which is recessed with respect to a radially inwardly facing first sliding face (71) of the locking actuator component.
6. A subsea well equipment landing body (1) according to claim 1, wherein the landing body (1) is a tubing hanger that comprises a locking sleeve (3) which is axially movable on the landing body.
7. A subsea well component (53) having a bore (51) configured to receive a landing body (1), the bore (51) having a locking profile (57) configured to engage with locking means (5) of the landing body, wherein the bore further comprises a landing indication profile (59) on a radially inwardly facing face of the bore and at a vertical distance from the locking profile (57).
8. A subsea well component according to claim 7, wherein the landing indication profile (59) has a finite extension in the circumferential direction of the bore.
9. A subsea well equipment landing body (1) comprising a landing indication assembly, comprising a stem bore (7) with a sliding stem (11), wherein the sliding stem (11) has a stem head (23) configured to abut the inner face of a bore (51) of a well component (53) that is configured to receive the landing body, wherein the sliding stem is configured to slide between a landed indicating position and a non-landed indicating position, of which in one position there is fluid communication between a hydraulic channel (9) in the landing body and the bore (51) and in the other position there is not fluid communication between the hydraulic channel and the bore, and wherein the stem bore (7) extends in a radial or inclined direction, with respect to the axial direction of the bore.
10. A subsea well equipment landing body (1) according to claim 9, wherein it further comprises a locking indication assembly, comprising a stem bore (7) with a sliding stem (11), wherein the sliding stem (11) has a stem head (23) configured to abut the inner face of a locking actuator component (3, 103) of the landing body, wherein the sliding stem is configured to slide between a locked indicating position and a non-locked indicating position, of which in one position there is fluid communication between a hydraulic channel (9) in the landing body and the bore (51) and in the other position there is not fluid communication between the hydraulic channel and the bore, and wherein the stem bore (7) extends in a radial or inclined direction, with respect to the axial direction of the bore.
Description
EXAMPLE OF EMBODIMENT
[0022] In the following, a non-limiting discussion of an embodiment of the invention will be given with reference to the drawings, in which
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032] While the indication assembly according to the present invention may be used with a plurality of different types of subsea equipment, which is landed within the bore of a subsea component, the following example describes the landing of a tubing hanger that is landed in the bore of a subsea wellhead spool. As will be appreciated by the skilled person, the bore could also be the bore of a horizontal Xmas tree, or a tubing head spool, or any other bore of a subsea component. In particular, a landing body, which in the following example is in the form of the said tubing hanger, is a body used within the field subsea wells, such as for extraction of hydrocarbons or water injection.
[0033]
[0034]
[0035] It is now referred to
[0036] In the body of the tubing hanger 1, there is provided a stem bore 7, which in this embodiment has a substantially radial extension. Moreover, from the stem bore 7, a hydraulic channel 9 extends upwardly within the body of the tubing hanger 1.
[0037] Within the stem bore 7 there is arranged a sliding stem 11. The sliding stem 11 is configured to slide back and forth within the stem bore 7. At a rear portion, the sliding stem 11 has a protruding stud 13. The protruding stud 13 will enter into a receiving bore 15 at the rear portion of the stem bore 7 when the sliding stem 11 is in a retracted (rear) position. The diameter of the receiving bore 15 is less than the diameter of the stem bore 7.
[0038] At the interface between the protruding stud 13 and the rest of the sliding stem 11, the sliding stem 11 has a shoulder 17. Between the shoulder 17 and an end portion of the stem bore 7, there is arranged a spring 19 which circles about the protruding stud 13. When the sliding stem 11 is in a retracted position (
[0039] The sliding stem 11 has a stem head 23 at its end, which is opposite the protruding stud 13. In the extended position shown in
[0040]
[0041] In the mode shown in
[0042] Within the sliding stem 11, there is arranged a stem channel 25. The stem channel 25 extends between the stem head 23 and an intermediate portion of the sliding stem 11. At the intermediate portion, the stem channel 25 ends in a mouth 27 which faces radially with respect to the cylindrical shape or axial extension of the stem bore 7. That is, the sliding stem 11 has an outer radial stem face 12 that faces the radially inwardly facing face of the stem bore 7.
[0043] Moreover, on each axial side of the mouth 27, the sliding stem 11 is provided with two seal rings 29. The seal rings 29 thus seal between the sliding stem 11 and the stem bore 7, however permits the sliding movement of the sliding stem 11 back and forth.
[0044] To prevent the sliding stem 11 from excessive movement towards the extended position, there is arranged a retaining member 31 at the mouth of the stem bore 7. The stem head 23 extends beyond the retaining member 31.
[0045] When moving between the extended position shown in
[0046]
[0047] Thus, when moving the tubing hanger 1 from outside the bore 51 of the wellhead 53, into the landed position as shown in
[0048]
[0049]
[0050]
[0051]
[0052] In the position shown in
[0053] When entering into this engaged position, the spring 19 will become further compressed. The stem head 23 will abut a first sliding face 71 on the locking actuator component 103, while the latter continues to move down, so that the locking dogs 105 are moved towards the locked position.
[0054] When the locking actuator component 103 has moved down to its final, lower position, the locking dogs 105 are in their radially outward, locking position. When in this position, the stem head 23 has moved into a recess in the locking actuator component 103, within which there is a locking indication face 73. When the stem head 23 abuts the locking indication face 73, the mouth 27 will again be without fluid communication with the hydraulic channel 9, thereby signalling to the operator that the locking actuator component 103 has moved into its locking position.
[0055]
[0056]
[0057] To receive the key 24 when the sliding stem 11 is in the inner, retracted position, a key receiving recess 30 is provided in the landing body 1 (tubing hanger). Furthermore, in order to halt the radially directed outward movement of the sliding stem 11 and the engagement key 24, a retaining member 31 is attached to the landing body 1. The retaining member 31 thus performs the same function as the retaining member 31 shown in the previously discussed embodiments.
[0058] The head extension element 24 may take other shapes, which will depend on the design of the components with which it will interact. As will be appreciated by the skilled person, by arranging a head extension element 24 onto the stem head 23, one can obtain a more robust assembly. Also, one may produce a plurality of standard assemblies, all having identical or similar stem bores 7, sliding stems 11, springs 19 etc., while adapting the assemblies to the specific use by having different types of head extension elements 24.