High pressure marine drilling riser assembled using mechanical components
10731425 ยท 2020-08-04
Assignee
Inventors
Cpc classification
F16L23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E21B17/0853
FIXED CONSTRUCTIONS
F16L15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/036
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/036
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A marine riser having a pressure level rating of twenty ksi or more includes riser tubulars and auxiliary lines that are made of steel having an API grade C110 and C125 and is NACE certified. The riser tubulars and auxiliary lines are not welded, but are assembled via threaded, clamped, stabbed or other mechanical and/or hydraulic connections. Some of the connections may be pre-assembled to reduce assembly time on the drill ship.
Claims
1. A riser joint for a marine riser, comprising: a tubular having first and second threaded pin ends; a first collar having a threaded box end that engages the first threaded pin end of the tubular, wherein the first collar comprises a first opening, wherein the first collar has a first flange, the first flange having a plurality of through holes including a first through hole; a second collar having a threaded box end that engages the second threaded pin end of the tubular, wherein the second collar comprises a second opening, wherein the second collar has a second flange, the second flange having a plurality of through holes including a second through hole; a gasket configured for being sealingly engaged within the first or second opening; a fastener configured for coupling the first collar or the second collar to another collar; an auxiliary line having first and second threaded pin ends; a receptacle having a threaded box end that engages the first threaded pin end of the auxiliary line, the receptacle being received in the first through hole; and a stab having a threaded box end that engages the second threaded pin end of the auxiliary line, the stab being received in the second through hole.
2. The riser joint of claim 1, wherein the tubular comprises first and second tubes each having first and second threaded pin ends, and a joint having first and second threaded box ends, wherein the first threaded box end of the joint engages the first threaded pin end of the first tube, and the second threaded box end of the joint engages the second threaded pin end of the second tube.
3. The riser joint of claim 1, wherein the first through hole comprises a shoulder for retaining the receptacle in the first through hole.
4. The riser joint of claim 3, wherein the second through hole comprises a shoulder for retaining the stab in the second through hole.
5. The riser joint of claim 4, wherein the auxiliary line comprises first and second pipes each having first and second threaded pin ends, and a joint having first and second threaded box ends, wherein the first threaded box end of the joint engages the first threaded pin end of the first pipe, and the second threaded box end of the joint engages the second threaded pin end of the second pipe.
6. The riser joint of claim 5, wherein the auxiliary line is placed in tension between the stab and the receptacle.
7. The riser joint of claim 1, wherein the tubular is made of grade C110 or C125 steel.
8. A marine riser comprising: a first tubular having a first threaded pin end; a second tubular having a second threaded pin end; a first collar having a threaded box end that engages the first threaded pin end of the first tubular, wherein the first collar comprises a first opening, wherein the first collar has a first flange, the first flange having a plurality of through holes including a first through hole; a second collar having a threaded box end that engages the second threaded pin end of the second tubular, wherein the second collar comprises a second opening, wherein the second collar has a second flange, the second flange having a plurality of through holes including a second through hole; a gasket sealingly engaged within the first or second opening; a fastener for coupling the first collar to the second collar; a first auxiliary line having a threaded pin end; a second auxiliary line having a threaded pin end; a receptacle having a threaded box end that engages the threaded pin end of the first auxiliary line, the receptacle being received in the first through hole; a stab having a threaded box end that engages the threaded pin end of the second auxiliary line, the stab being received in the second through hole; and wherein the fastener is received through one of the plurality of through holes in the first flange and one of the plurality of through holes in the second flange.
9. The marine riser of claim 8, wherein the fastener comprises a bolt and a nut.
10. The marine riser of claim 8, further comprising: a ring attached to the first tubular; and a brace for clamping the first auxiliary line onto the ring.
11. The marine riser of claim 8, wherein the first and second tubulars are made of grade C110 or C125 steel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a more detailed description of the embodiments of the disclosure, reference will now be made to the accompanying drawings, wherein:
(2)
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DETAILED DESCRIPTION
(7) It is to be understood that the following disclosure describes several exemplary embodiments for implementing different features, structures, or functions of the invention. Exemplary embodiments of components, arrangements, and configurations are described below to simplify the disclosure; however, these exemplary embodiments are provided merely as examples and are not intended to limit the scope of the invention. Additionally, the disclosure may repeat reference numerals and/or letters in the various exemplary embodiments and across the Figures provided herein. This repetition is for the purpose of simplicity and clarity and does not in itself dictate a relationship between the various exemplary embodiments and/or configurations discussed in the various figures. Moreover, the formation of a first feature over or on a second feature in the description that follows may include embodiments in which the first and second features are formed in direct contact, and may also include embodiments in which additional features may be formed interposing the first and second features, such that the first and second features may not be in direct contact. Finally, the exemplary embodiments presented below may be combined in any combination of ways, i.e., any element from one exemplary embodiment may be used in any other exemplary embodiment, without departing from the scope of the disclosure.
(8) Additionally, certain terms are used throughout the following description and claims to refer to particular components. As one skilled in the art will appreciate, various entities may refer to the same component by different names, and as such, the naming convention for the elements described herein is not intended to limit the scope of the invention, unless otherwise specifically defined herein. Further, the naming convention used herein is not intended to distinguish between components that differ in name but not function. Additionally, in the following discussion and in the claims, the terms including and comprising are used in an open-ended fashion, and thus should be interpreted to mean including, but not limited to. All numerical values in this disclosure may be approximate values unless otherwise specifically stated. Accordingly, various embodiments of the disclosure may deviate from the numbers, values, and ranges disclosed herein without departing from the intended scope. Furthermore, as it is used in the claims or specification, the term or is intended to encompass both exclusive and inclusive cases, i.e., A or B is intended to be synonymous with at least one of A and B, unless otherwise expressly specified herein.
(9) One option to achieve pressure level ratings above fifteen ksi is to use steels that have a much higher strength than the eighty ksi that is typical in traditional marine risers. Higher strength steels are now available. For example steels having an API grade C110 and C125 and being NACE certified are either commercially available or on the verge of being commercially available. Using these materials, a marine riser having a pressure level rating of twenty ksi or more can have the same weight as a traditional marine riser having a pressure level rating of fifteen ksi or less. Thus, riser tubulars and auxiliary lines can be made of steels having an API grade C110 and C125 and being NACE certified. Such riser tubulars and auxiliary lines may not be welded, and may require the use of threaded or mechanical connections, as described herein.
(10) Referring initially to
(11) The riser joint 10 further comprises a first collar 20 having a threaded box end 18 that engages the first threaded pin end 14 of the tubular 12. The first collar 20 includes a first flange 22. The first flange 22 includes a plurality of through holes, for example twelve through holes, including a first through hole 24. The first collar 20 (including the flange 22) may be made as a unitary body by forging.
(12) The riser joint 10 further comprises a second collar 36 having a threaded box end 38 that engages the second threaded pin end 16 of the tubular 12. The second collar 36 includes a second flange 40. The second flange 40 includes a plurality of through holes 94, 94a, 94b, 94c, 94d, 94e, 94f, etc. (in
(13) The riser joint 10 further comprises an auxiliary line 42 having first and second threaded pin ends, respectively 44 and 46. In the example shown, the auxiliary line 42 comprises first and second pipes, respectively 48a and 48b. The pipe 48a has first and second threaded pin ends, respectively 50a and 52a. The pipe 48b has first and second threaded pin ends, respectively 50b and 52b. The auxiliary line 42 further comprises a joint 54 having first and second threaded box ends, respectively 56a and 56b. The first threaded box end 56a of the joint 54 engages the first threaded pin end 50a of the first pipe 48a. The second threaded box end 56b of the joint 54 engages the second threaded pin end 52b of the second pipe 48b. As such, the auxiliary line 42 may be referred to as a thread and connect type line, and may comprise two or more threaded pipes interconnected by threaded joints.
(14) The riser joint 10 comprises a receptacle 58 having a threaded box end 60 that engages the first threaded pin end 44 of the auxiliary line 42. The receptacle 58 is received in the first through hole 24. The riser joint 10 further comprises a stab 62 having a threaded box end 64 that engages the second threaded pin end 46 of the auxiliary line 42. The stab 62 is received in the second through hole 94. In the example shown, the first through hole 24 comprises a shoulder for retaining the receptacle 58 in the first through hole 24. The second through hole 94 also comprises a shoulder for retaining the stab 62 in the second through hole 92. The shoulders in the first through hole 24 and the second through hole 94 face each other such that the auxiliary line 42 may be placed in tension between the stab 62 and the receptacle 58.
(15) To achieve high pressure rating and be corrosion resistant, one or more of the tubular 12, the auxiliary line 42, the first collar 20, the second collar 36, the stab 62, and the receptacle 58 may be made of grade C110 or C125 steel.
(16) While a single auxiliary line 42 is described herein in details, the riser joint 10 may include a plurality of auxiliary lines, for example four (in
(17) In the example shown, the design of the riser joint 10 may completely eliminate welding between components, which is the primary technical problem for building marine risers rated at a pressure level of twenty ksi or higher. As auxiliary lines may no longer require welding, the auxiliary lines may be placed closer to the central tubular because they do not need to be spaced at a significant stand-off for welding.
(18) Turning now to
(19) The stab 62 may be configured to sealingly engage a receptacle similar to the receptacle 58 shown in
(20) Turning to
(21) The marine riser comprises a first collar 78 having a threaded box end 80 that engages the threaded pin end 72 of the first tubular 70, the first collar 78 having a first flange 82, and the first flange 82 having a plurality of through holes. In alternative embodiments (e.g.,
(22) The marine riser comprises a second collar 84 having a threaded box end 86 that engages the threaded pin end 76 of the second tubular 74, the second collar 84 having a second flange 96, and the second flange 96 having a plurality of through holes. In alternative embodiments (e.g.,
(23) At least one fastener 100 is received through one of the plurality of through holes in the first flange 82 and one of the plurality of through holes in the second flange 96. In the example shown, twelve fasteners are used. However, less fastener, for example eight fasteners may be used (e.g., as shown in
(24) To ensure adequate sealing, the first and second collars, respectively 78 and 84, may comprise first and second openings (e.g., openings 88 in
(25) Turning now to
(26) The marine riser comprises a first tubular 112 having a first threaded pin end 114, a second tubular 116 having a second threaded pin end 118. The marine riser comprises a first collar 120 having a threaded box end 122 that engages the first threaded pin end 114 of the first tubular, the first collar 120 having a first bulge 124. The marine riser comprises a second collar that may be a mirror image of the first collar 120. The second collar has a threaded box end that engages the second threaded pin end 118 of the second tubular 116, the second collar having a second bulge.
(27) The marine riser further comprises first and second plates, respectively 126 and 128. Each of first and second plates has a cavity 130 configured to receive and retain the first bulge 124 and second bulge. Each of first and second plates has at least one ear 132. In the example shown, each of first and second plates has two ears. At least one fastener is configured to clamp together the ears 132 of the first and second plates, respectively 126 and 128. In the example shown, three fasteners are used on each pair of ears to be clamped. The fasteners may comprise a bolt and a nut, such as bolt 150 and nut 152. The plates may be made-up and the fasteners pre-tensioned with custom tooling to reduce assembly time on the drill ship.
(28) To achieve high pressure rating and be corrosion resistant, one or more of the first tubular 112, the first collar 120, the second tubular 116, the second collar, the first and the second plates 126 and 128 may be made of grade C110 or C125 steel.
(29) Auxiliary lines may be added to the marine riser illustrated in
(30) While the disclosure is susceptible to various modifications and alternative forms, specific embodiments thereof are shown by way of example in the drawings and description. It should be understood, however, that the drawings and detailed description thereto are not intended to limit the disclosure to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents and alternatives falling within the scope of the claims.