IP Library Granted Patent US 9,127,793
Granted Patent B2
US 9,127,793 · App. 13/463,644 · Granted Sep 8, 2015

Power umbilical comprising separate load carrying elements of composite material

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Quick Facts
Patent No.
US 9,127,793
App. No.
13/463,644
Granted
Sep 8, 2015
Kind
B2
Abstract

A power umbilical for transfer of large amounts of electric power, fluids and electric current/signals from the sea surface to equipment deployed on the sea bed, in particular in deep waters includes a number of electric power conducting cables, pipes and electric conductors/wires collected in a bundle, a filler material lying at least partly around and between the pipes, cables and the conductors/wires, and a protective sheath enclosing the pipes, cables conductors/wires and filler material. The load carrying elements of the power umbilical are light weighted rods of composite material that can either be collected in bundles or appear individually or in a combination thereof.

Claims (29)

1. A power umbilical for transmission of large quantities of electric power, fluids and electric current signals from the sea surface to equipment arranged on the sea bed, said power umbilical being adapted for use at depths where power umbilicals having metal load carrying elements and electric power cables of substantial transversal cross section, fluid pipes, and ropes which can create yield stresses that cause the metal load carrying elements to be torn off, said power umbilical comprising:

a plurality of electric power conducting cables of substantial transversal cross section to supply high voltage electrical power;

pipes to supply fluid; and

electric conductors/wires supplying small quantities of electric current or control signals; and

a filler material arranged at least partly around and between the pipes, cables and the conductors/wires, and a protective sheath enclosing the pipes, cables conductors/wires and filler material,

wherein the power umbilical comprises separate load carrying elements, said load carrying elements being light weight carbon rods of composite material having embedded strength fibers.

2. The power umbilical according to claim 1 , wherein the filler material, the pipes, the cables and the conductors/wires are laid in a helix configuration about the longitudinal axis of the power umbilical.

3. The power umbilical according to claim 1 , wherein the filler material, the pipes, the cables and the conductors/wires are laid in a substantially rectilinear configuration without substantial twisting or spiraling.

4. The power umbilical according to claim 1 , wherein the load carrying elements of the power umbilical are collected in a bundle located centrally as a core element within the power umbilical.

5. The power umbilical according to claim 1 , wherein the load carrying elements of the power umbilical are distributed in a plurality of bundles located peripherally relative to the longitudinal axis of the umbilical.

6. The power umbilical according to claim 1 , wherein the power umbilical includes weight elements in order to add mass/weight to the power umbilical.

7. The power umbilical according to claim 1 , wherein the filler material, the pipes, the cables and the conductors/wires are laid in several layers viewed in a radial direction.

8. The power umbilical according to claim 1 , wherein the power cables are collected in groups within the protective sheath.

9. The power umbilical according to claim 1 , wherein the load carrying elements are individual rods distributed within the protective sheath.

10. The power umbilical according to claim 1 , wherein the filler material is in the form of elongated channel elements which are able to at least partly enclose the respective pipes, cables and electric conductors/wires in order to keep these in position relative to each other.

11. The power umbilical according to claim 2 , wherein the load carrying elements of the power umbilical are collected in a bundle located centrally as a core element within the power umbilical.

12. The power umbilical according to claim 3 , wherein the load carrying elements of the power umbilical are collected in a bundle located centrally as a core element within the power umbilical.

13. The power umbilical according to claim 2 , wherein the load carrying elements of the power umbilical are distributed in a plurality of bundles located peripherally relative to the longitudinal axis of the umbilical.

14. The power umbilical according to claim 3 , wherein the load carrying elements of the power umbilical are distributed in a plurality of bundles located peripherally relative to the longitudinal axis of the umbilical.

15. The power umbilical according to claim 1 , wherein the power cables are collected in groups within the protective sheath, and wherein the load carrying elements are individual rods distributed within the protective sheath.

16. The power umbilical according to claim 6 , wherein the separate load carrying elements are spaced apart from the weight elements by the electrical power cable or electric conductor wires.

17. A power umbilical for transmission of large quantities of electric power, fluids and electric current signals from the sea surface to equipment arranged on the sea bed, said power umbilical being adapted for use at depths where power umbilicals having metal load carrying elements and electric power cables of substantial transversal cross section, fluid pipes, and ropes which can create yield stresses that cause the metal load carrying elements to be torn off, said power umbilical comprising:

a plurality of electric power conducting cables of substantial transversal cross section to supply high voltage electrical power;

pipes to supply fluid; and

electric conductors/wires supplying small quantities of electric current or control signals;

a filler material arranged at least partly around and between the pipes, cables and the conductors/wires, and a protective sheath enclosing the pipes, cables conductors/wires and filler material; and

a plurality of weight elements configured to add mass/weight to the power umbilical,

wherein the power umbilical comprises separate load carrying elements, said load carrying elements being light weight carbon rods of composite material having embedded strength fibers, and

wherein the separate load carrying elements are in the form of separated individual elements distributed around the power cables, and adjacent ones of the separate load carrying elements are spaced apart from each other by one of the plurality of weight elements.

Assignments (1)
CHANGE OF NAME DUE TO MERGER Recorded Mar 2, 2017
From: AKER KVAERNER SUBSEA AS; AKER SUBSEA AS
To: AKER SOLUTIONS AS
Reel/Frame 041859/0304 →