Undersea cable, undersea cable installation structure, and method for installing undersea cable
US-2016301198-A1 · Oct 13, 2016 · US
US9466405B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9466405-B2 |
| Application number | US-201213442110-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 9, 2012 |
| Priority date | May 2, 2011 |
| Publication date | Oct 11, 2016 |
| Grant date | Oct 11, 2016 |
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A high voltage power cable ( 1 ) includes at least two insulated conductors ( 2 ) and an armor package ( 6 ) surrounding the conductors ( 2 ). The cable ( 1 ) has a longitudinal central element ( 4 ) of an elastic material, and longitudinal elements ( 3 ) of polymer material placed between the said insulated conductors ( 2 ).
Opening claim text (preview).
The invention claimed is: 1. High voltage power cable comprising: at least two insulated conductors with an elongation capacity of approximately 0.1%, each of said insulated conductors constructed with a central copper conductor, an inner semi conductive sheath surrounding the conductor, a cross-linked polymer sheath surrounding the inner semi conductive sheath, an outer semi conductive sheath surrounding the cross-linked polymer sheath, and an outer protective polymer sheath surrounding said outer semi conductive sheath; and an armour package surrounding said insulated conductors having an elongation capacity of 0.3% or more, said armour package has at least two layer's at least one of which is made from composite materials including either one of aramid or carbon fibers, wherein said cable has a longitudinal central element of an elastic material, and longitudinal elements of a polymer material placed between the insulated conductors, wherein the central elastic element functions as soft bedding and allows said insulated conductors to move toward center under radial forces applied from said armour packaging and, under axial tensile load in said insulated conductors from the elongation capacities difference between said insulated conductors and said armour package, wherein said polymer elements being supplementary passageways for transferring loads from said armour package towards said longitudinal central element and hence relieve the strain on said insulated conductors. 2. High voltage power cable according to claim 1 , wherein said insulated conductors have three power phases, each being in contact with the central elastic element and with two of said polymer elements. 3. High voltage power cable according to claim 2 , wherein the transversal cross section of the longitudinal central elastic element is approximately triangular, each of the insulated conductors being in contact with one side of the cross section. 4. High voltage power cable according to claim 2 , wherein at least one of said two layers of the armour package is made from steel wires. 5. High voltage power cable according to claim 2 , wherein the armour package which is the load bearing element is applied with a lay-angle less than the lay-angle in the centre bundle of the three power phases, the lay-angle in the centre bundle and armour package is controlled by one another. 6. High voltage power cable according to claim 1 , wherein the central elastic element includes elastomer. 7. High voltage power cable according to claim 6 , wherein the central elastic element includes EPDM elastomer. 8. High voltage power cable according to claim 1 , wherein the central elastic clement includes either one of natural or synthetic rubber. 9. High voltage power cable according to claim 1 , wherein said cross-linked polymer sheath and said outer protective polymer sheath are made from polyethylene.
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