Pipeline unit
09657872 ยท 2017-05-23
Assignee
Inventors
Cpc classification
F16L58/181
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L13/0272
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L59/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L58/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The ends of two pipeline units are joined together at a pipe joint. Each pipeline unit has a pipe member and a pipe coating surrounding the pipe member. The pipe coating extends along a length of the pipe member. A joint coating surrounds the pipe joint and is made from a material comprising a silicone.
Claims
1. An assembly of two pipeline units, wherein: each pipeline unit comprises a pipe member and a pipe coating surrounding the pipe member, which pipe member comprises a pipe end, and which pipe coating extends along a length of the pipe member and ends at a coating end face located at a distance from the pipe end, the pipe ends of the pipeline units are joined together at a pipe joint, such that the coating end faces of the pipeline units are located at opposite sides of the pipe joint, a joint coating is provided at the pipe joint, the joint coating surrounds the pipe joint, is attached to the two opposite coating end faces of the pipeline units and is made from a material comprising a solidified silicone resin.
2. The assembly according to claim 1, wherein the joint coating is made from a silicone material.
3. The assembly according to claim 1, wherein the material of the joint coating is made from a silicone resin.
4. The assembly according to claim 1, wherein the material of the pipe coating comprises a polyolefin.
5. The assembly according to claim 1, wherein the pipe coating is made from a polypropylene material.
6. The assembly according to claim 1, wherein the pipe member comprises an outer pipe surface and an anti corrosion agent is provided on the outer pipe surface of the pipe ends and the pipe joint.
7. The assembly according to claim 6, wherein the anti corrosion agent is a fusion bonded epoxy or liquid epoxy.
8. The assembly according to claim 6, wherein the anti corrosion agent comprises aluminium.
Description
(1) Embodiments of the assembly and method according the invention will be described by way of example only, with reference to the accompanying schematic drawings in which corresponding reference symbols indicate corresponding parts, and in which:
(2)
(3)
(4)
(5) the
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(8)
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DETAILED DESCRIPTION OF THE INVENTION
(12)
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(14) The pipe member 2 comprises an outer pipe surface 10. The first and second coating end faces 7, 8 surround the pipe member 2 and extends transverse to the outer pipe surface 10.
(15) The pipe coating 3 is made from a polypropylene material. In other examples, the pipe coating 3 is made from a different polyolefin material.
(16) The pipe member 2 defines a longitudinal pipe axis 13. The pipe coating 3 comprises an outer coating surface 17. The first and second coating end faces 6, 7 extend between the outer pipe surface 10 and the outer coating surface 17 at an angle () between 20 and 50 degrees from the longitudinal pipe axis 13. In other examples, the first and second coating end faces 6, 7 extend between the outer pipe surface 10 and the outer coating surface 17 at an angle () between 10 and 90 degrees from the longitudinal pipe axis 13. In other examples, the first and second coating end faces 6, 7 extend between the outer pipe surface 10 and the outer coating surface 17 at an angle () between 0 and 90 degrees from the longitudinal pipe axis 13.
(17) The
(18) In
(19) In
(20) In
(21) The joint coating 16 is produced by injection moulding of the silicone material. A mould 18 is placed around the pipe joint 15 and in contact with the pipe coating 3. The pipe joint 15 is enclosed by the mould 18 that defines a cavity 19 between the uncoated first pipe ends 4 and the pipe joint 15, the two opposite first coating end faces 6 and the mould 18. Pre-set silicone is then injected via an inlet 21 provided in the mould 18 into the cavity 19 where it subsequently cools and solidifies. After that, the mould 18 is removed from the pipeline units 1.
(22) Before the joint coating is formed, the following steps may be performed: cleaning the coating end faces, subjecting the coating end faces to a heat source, treating the coating end face with a plasma jet, and applying a silicone primer to the coating end faces.
(23) The coating end faces are cleaned to remove contamination. The coating end faces may be cleaned by using a lint-free cloth, alcohol, or a chemical cleaner.
(24) The heat source may melt the coating end faces at least partly. The heat source may be a hot air blower.
(25) The plasma jet activates the coating end faces and tends to create a better adhesion with the material of the joint coating or the primer.
(26) The silicone primer may be applied by spraying or wiping it on the surfaces. The silicone primer may also be applied on the pipe ends and the pipe joint. A pump 23 is used to pump the silicone material from an silicone supply 22 via supply channel 24 connected with the inlet 21 into the cavity 19 of the mould 18. A layer of an anti corrosion agent may be provided on the first pipe ends 4 and the pipe joint 15 before the joint coating 16 is applied.
(27) The joining of the pipeline units 1 and the placing the joint coating 16 can be performed in the field, such as on a quay or off-shore, as for example on a pipeline laying vessel.
(28) The
(29) The assembly 14 comprises two pipeline units 1 as shown in
(30)
(31)
(32)
(33) In other examples of the assembly, the anti corrosion joint layer 40 extends over the full distance between the opposite first coating end faces 6. In said situation, the anti corrosion joint layer 40 is placed in contact with both first coating end faces.
(34) The following clauses provide a further description of the pipeline unit according to the invention, the assembly according to the invention, the method according to the invention, and the use of the pipeline unit and the assembly according to the invention.
(35) 1. Assembly of two pipeline units, wherein; each pipeline unit comprises a pipe member and a pipe coating surrounding the pipe member, which pipe member comprises a pipe end, and which pipe coating extends along a length of the pipe member and ends at a coating end face located at a distance from the pipe end, the pipe ends of the pipeline units are joined together at a pipe joint, such that the coating end faces of the pipeline units are located at opposite sides of the pipe joint, a joint coating is provided at the pipe joint, the joint coating surrounds the pipe joint, is attached to the two opposite coating end faces of the pipeline units and is made from a material comprising a silicone.
(36) 2. Assembly according to clause 1, wherein the joint coating is made from a silicone material.
(37) 3. Assembly according to clause 1 or 2, wherein the joint coating is provided by an injection moulding process.
(38) 4. Assembly according to any of the preceding clauses, wherein the material of the joint coating comprises a silicone resin.
(39) 5. Assembly according to any of the preceding clauses, wherein the material of the joint coating is made from a silicone resin.
(40) 6. Assembly according to clause 4 or 5, wherein the silicone resin is a reinforced silicone resin.
(41) 7. Assembly according to clause 6, wherein the reinforced silicone resin comprises reinforcement particles.
(42) 8. Assembly according to clause 7, wherein the reinforcement particles comprise glass particles.
(43) 9. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises a polyolefin.
(44) 10. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises a thermoplastic polyolefin.
(45) 11. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises a polyolefin elastomer.
(46) 12. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises polypropylene.
(47) 13. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises polyethylene.
(48) 14. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises polystyrene.
(49) 15. Assembly according to any of the preceding clauses, wherein the material of the pipe coating comprises polymethylpentene.
(50) 16. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a polyolefin material.
(51) 17. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a thermoplastic polyolefin material.
(52) 18. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a polyolefin elastomeric material.
(53) 19. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a polypropylene material.
(54) 20. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a polyethylene material.
(55) 21. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a polystyrene material.
(56) 22. Assembly according to any of the clauses 1-8, wherein the pipe coating is made from a polymethylpentene material.
(57) 23. Assembly according to any of the preceding clauses, wherein the joint coating extends over the full distance between the two opposite coating end faces of the pipeline units.
(58) 24. Assembly according to any of the preceding clauses, wherein the pipe member comprises an outer pipe surface.
(59) 25. Assembly according to clause 24, wherein an anti corrosion agent is provided on the outer pipe surface of the pipe ends and the pipe joint.
(60) 26. Assembly according to clause 25, wherein the anti corrosion agent is an epoxy.
(61) 27. Assembly according to clause 25, wherein the anti corrosion agent is a fusion bonded epoxy or liquid epoxy.
(62) 28. Assembly according to clause 25, wherein the anti corrosion agent comprises aluminium.
(63) 29. Assembly according to clause 25, wherein the anti corrosion agent is made from aluminium.
(64) 30. Assembly according to clause 25, wherein the anti corrosion agent is a thermal sprayed aluminium.
(65) 31. Assembly according to any of the clauses 24-30, wherein in each pipeline unit the coating end face surrounds the pipe member and extends transverse to the outer pipe surface.
(66) 32. Assembly according to any of the preceding clauses, wherein in each pipeline unit the pipe member defines a longitudinal pipe axis and the pipe coating comprises an outer coating surface.
(67) 33. Assembly according to clause 32, wherein in each pipeline unit the coating end face extends between the outer pipe surface and the outer coating surface at an angle between 0 and 90 degrees from the longitudinal pipe axis.
(68) 34. Assembly according to clause 32, wherein in each pipeline unit the coating end face extends between the outer pipe surface and the outer coating surface at an angle between 10 and 90 degrees from the longitudinal pipe axis.
(69) 35. Assembly according to clause 32, wherein in each pipeline unit the coating end face extends between the outer pipe surface and the outer coating surface at an angle between 20 and 50 degrees from the longitudinal pipe axis.
(70) 36. Assembly according to any of the clauses 33-35, wherein in each pipeline unit the angle of the coating end face varies.
(71) 37. Method of producing an assembly of two pipeline units, the method comprising the steps of: providing two pipeline units, wherein each pipeline unit comprises a pipe member and a pipe coating surrounding the pipe member, which pipe member comprises a pipe end, and which pipe coating extends along a length of the pipe member and ends at a coating end face located at a distance from the pipe end, joining the pipe ends of the pipeline units together at a pipe joint, such that the coating end faces of the pipeline units are located at opposite sides of the pipe joint, providing a joint coating made from a material comprising silicone at the pipe joint, such that the joint coating surrounds the pipe members and is attached to the two opposite coating end faces of the pipeline units.
(72) 38. Method according to clause 37, wherein the method comprises making the joint coating from a silicone material.
(73) 39. Method according to clause 37 or 38, wherein the method comprises providing the joint coating by an injection moulding process.
(74) 40. Method according to any of the clauses 37-39, wherein the method comprises making the joint coating of a material comprising a silicone resin.
(75) 41. Method according to any of the clauses 37-40, wherein the method comprises making the joint coating from a silicone resin.
(76) 42. Method according to clause 40 or 41, wherein the silicone resin is a reinforced silicone resin.
(77) 43. Method according to clause 42, wherein the reinforced silicone resin comprises reinforcement particles.
(78) 44. Method according to clause 43, wherein the reinforcement particles comprise glass particles.
(79) 45. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises a polyolefin.
(80) 46. Method according to any of the clauses 37-45, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises a thermoplastic polyolefin.
(81) 47. Method according to any of the clauses 37-46, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises a polyolefin elastomer.
(82) 48. Method according to any of the clauses 37-47, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises polypropylene.
(83) 49. Method according to any of the clauses 37-48, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises polyethylene.
(84) 50. Method according to any of the clauses 37-49, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises polystyrene.
(85) 51. Method according to any of the clauses 37-50, wherein the method comprises providing pipeline units wherein the material of the pipe coating comprises polymethylpentene.
(86) 52. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a polyolefin material.
(87) 53. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a thermoplastic polyolefin material.
(88) 54. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a polyolefin elastomeric material.
(89) 55. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a polypropylene material.
(90) 56. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a polyethylene material.
(91) 57. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a polystyrene material.
(92) 58. Method according to any of the clauses 37-44, wherein the method comprises providing pipeline units wherein the pipe coating is made from a polymethylpentene material.
(93) 59. Method according to any of the clauses 37-58, wherein the method comprises providing the joint coating such that the joint coating extends over the full distance between the two opposite coating end faces of the pipeline units.
(94) 60. Method according to any of the clauses 37-59, wherein the pipe member of the provided pipeline units comprises an outer pipe surface.
(95) 61. Method according to clause 60, wherein the method comprises providing an anti corrosion agent on the outer pipe surfaces of the pipe ends and the pipe joint before the joint coating is provided.
(96) 62. Method according to clause 61, wherein the provided anti corrosion agent is an epoxy.
(97) 63. Method according to clause 61, wherein the provided anti corrosion agent is a fusion bonded epoxy or liquid epoxy.
(98) 64. Method according to clause 61, wherein the provided anti corrosion agent comprises aluminium.
(99) 65. Method according to clause 61, wherein the provided anti corrosion agent is made from aluminium.
(100) 66. Method according to clause 61, wherein the provided anti corrosion agent is a thermal sprayed aluminium.
(101) 67. Method according to any of the clauses 60-66, wherein the coating end face of the provided pipeline units surrounds the pipe member and extends transverse to the outer pipe surface.
(102) 68. Method according to any of the clauses 37-67, wherein the pipe members of the provided pipeline units define a longitudinal pipe axis and the pipe coating comprises an outer coating surface.
(103) 69. Method according to clause 68, wherein the coating end face of the provided pipeline units extends between the outer pipe surface and the outer coating surface at an angle between 0 and 90 degrees from the longitudinal pipe axis.
(104) 70. Method according to clause 68, wherein the coating end face of the provided pipeline units extends between the outer pipe surface and the outer coating surface at an angle between 10 and 90 degrees from the longitudinal pipe axis.
(105) 71. Method according to clause 68, wherein the coating end face of the provided pipeline units extends between the outer pipe surface and the outer coating surface at an angle between 20 and 50 degrees from the longitudinal pipe axis.
(106) 72. Method according to any of the clauses 69-71, wherein the angle of the coating end face of the provided pipeline units varies.
(107) 73. Method according to any of the clauses 37-72, wherein the providing of the joint coating comprises the steps of:
(108) a. cleaning the coating end faces,
(109) b. subjecting the coating end faces to a heat source,
(110) c. treating the coating end face with a plasma jet,
(111) d. applying a silicone primer to the coating end faces, and
(112) e. forming the joint coating.
(113) 74. Method according to clause 73, wherein step e comprises the sub steps of: placing a mould around the pipe joint and in contact with the pipe coatings of the pipeline units such that the pipe joint is enclosed by the mould defining a cavity between the pipe ends and pipe joint, the opposite coating end faces and the mould, injecting the material of the joint coating into the cavity, where it subsequently cools and solidifies, removing the mould from the pipeline units.
(114) 75. Method according to clause 73 or 74, wherein in step d the silicone primer is also applied on the pipe ends and the pipe joint.
(115) 76. Method according to any of the clauses 37-75, wherein the production of the pipeline units is performed on-shore and the method comprises providing the joint coating on the joined pipeline units off-shore.
(116) 77. Method according to any of the clauses 37-76, wherein the method comprises providing the joint coating on the joined pipeline units on a vessel, such as a pipeline laying vessel.
(117) 78. Use of an assembly according to any of the clauses 1-36.
(118) It will be apparent to those skilled in the art that various modifications can be made to the assembly and method without departing from the scope of the invention.