IP Library Granted Patent US 8,196,611
Granted Patent B2
US 8,196,611 · App. 12/377,258 · Granted Jun 12, 2012

Pipe

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Quick Facts
Patent No.
US 8,196,611
App. No.
12/377,258
Granted
Jun 12, 2012
Kind
B2
Abstract

A pipe comprising an outer rigid conduit and an inner tubular structure, the inner tubular structure comprising a flexible hose, wherein the hose comprises a tubular body disposed between inner and outer gripping members, the tubular body including a sealing layer, and being formed of a material capable of withstanding cryogenic temperatures, wherein the inner tubular structure has insulation properties sufficient to protect the outer conduit from the low temperature of cryogenic fluid flowing within the inner tubular structure.

Claims (29)

1. A pipe comprising an outer rigid conduit and an inner tubular structure, the inner tubular structure comprising a flexible hose, wherein the hose comprises a tubular body disposed between inner and outer gripping members, the tubular body including a sealing layer, and being formed of a material capable of withstanding cryogenic temperatures, wherein the inner tubular structure has insulation properties sufficient to protect the outer conduit from the low temperature of cryogenic fluid flowing within the inner tubular structure, wherein the ends of the rigid conduit and the flexible hose are sealed to prevent the ingress of fluids between the rigid conduit and the hose.

2. A pipe according to claim 1 , wherein at least one end of the pipe is adapted to be connected to an underwater riser.

3. A hose according to claim 1 or 2 , wherein the tubular body comprises at least two reinforcing layers with the sealing layer sandwiched therebetween.

4. A hose according to claim 1 or 2 , wherein the hose further includes an axial strengthening means.

5. A hose according to claim 4 , wherein the axial strengthening means comprises a generally tubular braid formed of a sheet of material provided in a tubular shape.

6. A hose according to claim 4 , wherein the axial strengthening means comprises a plurality of axial strengthening strips extending along the length of the hose.

7. A hose according to claim 3 , wherein each reinforcing layer is formed of a sheet of material which has been wound into a tubular form in the inner tube.

8. A hose according to claim 1 , wherein the sealing layer is formed of a sheet of material which has been wound into a tubular form in the hose.

9. A hose according to claim 1 , wherein the insulation layer is incorporated in the hose.

10. A hose according to claim 1 wherein the insulation layer is disposed between the inner and outer gripping members.

11. A hose according to claim 1 , wherein the insulation layer overlies the outer gripping member.

12. A hose according to claim 11 , wherein the insulation layer comprises an elongate member, made of an insulating material, having opposing longitudinal edges, the elongate member being helically wound around the tubular body such that the opposing longitudinal edges of the layer are in an adjacent or overlapping arrangement, wherein each longitudinal edge includes a formation capable of interengaging with a cooperating formation on the opposing longitudinal edge.

13. A hose according to claim 9 , 10 or 11 , wherein the insulation layer includes a fabric formed of basalt fibres.

14. A hose according to claim 1 , further comprising an end fitting disposed at each end of the hose.

15. A hose according to claim 1 , wherein the inner and outer gripping members of the hose are helical gripping members.

16. A hose according to claim 1 , wherein the inner and outer gripping members of the hose are helical wires.

17. A pipeline comprising a plurality of pipes as defined in claim 1 , said pipes being connected end to end.

18. A system for transporting fluids between a first surface offshore structure and a second surface offshore structure, comprising: a first riser operatively connected to the first surface offshore structure and to a first end of a pipeline arranged along a seabed; a second riser operatively connected to the second surface offshore structure and to a second end of the pipeline, whereby fluid can flow from the first surface offshore structure to the second surface offshore structure or vice versa, at least part of the pipeline further comprising an outer rigid conduit and an inner tubular structure, the inner tubular structure comprising a flexible hose, wherein the hose comprises a tubular body disposed between inner and outer gripping members, the tubular body including a sealing layer, and being formed of a material capable of withstanding cryogenic temperatures, wherein the inner tubular structure has insulation properties sufficient to protect the outer conduit from the low temperature of cryogenic fluid flowing within the inner tubular structure, wherein the ends of the rigid conduit and the flexible hose are sealed to prevent the ingress of fluids between the rigid conduit and the hose.

19. A system for transporting fluids between a first surface offshore structure and a land-based structure, comprising: a first riser operatively connected to the first surface offshore structure and to a first end of a pipeline arranged along a seabed; a pipe operatively connected to the land based structure and to a second end of the pipeline, whereby fluid can flow from the first surface offshore structure to the land-based structure or vice versa, at least part of the pipeline further comprising an outer rigid conduit and an inner tubular structure, the inner tubular structure comprising a flexible hose, wherein the hose comprises a tubular body disposed between inner and outer gripping members, the tubular body including a sealing layer, and being formed of a material capable of withstanding cryogenic temperatures, wherein the inner tubular structure has insulation properties sufficient to protect the outer conduit from the low temperature of cryogenic fluid flowing within the inner tubular structure, wherein the ends of the rigid conduit and the flexible hose are sealed to prevent the ingress of fluids between the rigid conduit and the hose.

20. A hose according to claim 5 , wherein the axial strengthening means comprises a plurality of axial strengthening strips extending along the length of the hose.

21. A hose according to claim 6 , wherein the or each reinforcing layer is formed of a sheet of material which has been wound into a tubular form in the inner tube.

22. A hose according to claim 6 , wherein the sealing layer is formed of a sheet of material which has been wound into a tubular form in the hose.

23. A hose according to claim 6 , wherein the insulation layer is incorporated in the hose.

24. A hose according to claim 6 wherein the insulation layer is disposed between the inner and outer gripping members.

25. A hose according to claim 6 , wherein the insulation layer overlies the outer gripping member.

26. A hose according to claim 6 , further comprising an end fitting disposed at each end of the hose.

27. A hose according to claim 6 , wherein the inner and outer gripping members of the hose are helical gripping members.

28. A hose according to claim 6 , wherein the inner and outer gripping members of the hose are helical wires.

29. A pipeline comprising a plurality of pipes as defined in claim 6 , said pipes being connected end to end.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2017
From: BHP BILLITON PETROLEUM PTY LTD
To: DUNLOP OIL AND MARINE LTD
Reel/Frame 044427/0238 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2009
From: WITZ, JOEL ARON
To: BHP BILLITON PETROLEUM PTY LTD.
Reel/Frame 023073/0678 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2009
From: COX, DAVID CHARLES
To: BHP BILLITON PETROLEUM PTY LTD.
Reel/Frame 022769/0141 →