Subsea fuse assembly
A subsea fuse assembly is provided. The subsea fuse assembly is adapted to be operated in a pressurized environment. The subsea fuse assembly includes an enclosure adapted to be filled with a dielectric liquid, and a pressure compensator including a flexible element for pressure compensation. The subsea fuse assembly also includes a first penetrator and a second penetrator each passing through a wall of the enclosure for leading a first electric conductor and a second electric conductor, respectively, into the enclosure. The subsea fuse assembly includes a fuse arranged inside the enclosure and connected between the first electric conductor and the second electric conductor.
1. A subsea fuse assembly for operation in a pressurized environment, the subsea fuse assembly comprising:
an enclosure filled with a dielectric liquid;
a pressure compensator comprising a flexible element configured to perform a pressure equalization between an inside of the enclosure and the pressurized environment outside of the enclosure, the pressure compensator being mounted to the enclosure and sealing an opening in the enclosure;
a first penetrator and a second penetrator each passing through a wall of the enclosure for leading a first electric conductor and a second electric conductor, respectively, into the enclosure; and
a fuse arranged inside the enclosure and connected between the first electric conductor and the second electric conductor,
wherein the subsea fuse assembly is configured such that the inside of the enclosure is sealed to the outside of the enclosure.
2. The subsea fuse assembly according to claim 1 , wherein the flexible element is a membrane, a bladder, a bellow, or a combination thereof.
3. The subsea fuse assembly according to claim 1 , wherein the flexible element is arranged so as to seal the opening in the enclosure, the flexible element being deformable such that a deformation of the flexible element results in a change of a volume confined by the enclosure.
4. The subsea fuse assembly according to claim 3 , wherein the flexible element comprises a membrane, the membrane being arranged to seal the opening in the enclosure,
wherein the membrane is deformable into an equilibrium position in accordance with a force applied to the membrane by a pressure outside the enclosure and a force applied to the membrane by a pressure inside the enclosure, and
wherein in the equilibrium position, the pressure inside the enclosure is equalized to the pressure outside the enclosure.
5. The subsea fuse assembly according to claim 1 , wherein the flexible element is a membrane selected from the group consisting of a rubber membrane, a nitrile rubber membrane, a thermoplastic polyurethanes (TPU) membrane, a membrane comprising polyester filaments, a membrane comprising polyvinyl chloride, and a butyl rubber membrane.
6. The subsea fuse assembly according to claim 1 , wherein the fuse arranged inside the enclosure and connected between the first electric conductor and the second electric conductor comprises a fuse housing.
7. The subsea fuse assembly according to claim 1 , wherein the fuse arranged inside the enclosure and connected between the first electric conductor and the second electric conductor comprises two terminals and a fuse element coupled to the two terminals, the fuse element comprising a metal wire or a metal sheet.
8. The subsea fuse assembly according to claim 1 , wherein the fuse is a first fuse, and
wherein the subsea fuse assembly further comprises at least a second fuse and two further penetrators each passing through a wall of the enclosure, the second fuse being connected between conductors lead into the enclosure by the two further penetrators.
9. The subsea fuse assembly according to claim 1 , wherein the first penetrator and the second penetrator are configured to provide an electric insulation between the enclosure and the respective electric conductor and to provide a seal between the inside of the enclosure and the outside of the enclosure.
10. The subsea fuse assembly according to claim 1 , wherein the fuse arranged inside the enclosure and connected between the first electric conductor and the second electric conductor has a current rating in a range of 500 to 10000 A.
11. The subsea fuse assembly according to claim 10 , wherein the current rating is in the range of 1000 to 5000 A.
12. The subsea fuse assembly according to claim 1 , wherein sealing between the inside of the enclosure and the outside of the enclosure is a fluid-tight sealing.
13. The subsea fuse assembly according to claim 1 , wherein the enclosure is a box shaped enclosure having an open side, the flexible element being a membrane sealing the open side.
14. The subsea fuse assembly according to claim 13 , wherein at the open side, the enclosure is provided with a flange, the membrane being arranged and compressed between the flange and a further mating flange.
15. The subsea fuse assembly according to claim 1 , wherein the enclosure is made from metal and is provided with a layer of insulating material lining inner faces of the enclosure.
16. The subsea fuse assembly according to claim 15 , wherein the insulating material is a polycarbonate material.
17. The subsea fuse assembly according to claim 1 , wherein the enclosure is filled with dielectric liquid, the fuse being submerged in the dielectric liquid.
18. A subsea electric device comprising:
a first enclosure, the first enclosure being pressure compensated and being filled with a first dielectric liquid;
an electric component submerged in the first dielectric liquid;
a subsea fuse assembly comprising:
a second enclosure filled with a second dielectric liquid;
a first pressure compensator comprising a flexible element configured to perform a pressure equalization between an inside of the second enclosure and the pressurized environment outside of the second enclosure, the first pressure compensator being mounted to the second enclosure and sealing an opening in the second enclosure;
a first penetrator and a second penetrator each passing through a wall of the second enclosure for leading a first electric conductor and a second electric conductor, respectively, into the second enclosure; and
a fuse arranged inside the second enclosure and connected between the first electric conductor and the second electric conductor; and
a second pressure compensator configured such that when the subsea electric device is installed at a sea bed, a pressure inside the subsea electric device and a pressure acting on the subsea fuse assembly is substantially similar to a water pressure at a location of the subsea electric device,
wherein the subsea fuse assembly is configured such that the inside of the second enclosure is sealed to the outside of the second enclosure, and
wherein the subsea fuse assembly is submerged in the first dielectric liquid and is electrically coupled to the electric component.
19. The subsea electric device according to claim 18 , wherein the flexible element is a membrane, a bladder, a bellow, or a combination thereof.
20. The subsea electric device according to claim 18 , wherein the flexible element is arranged so as to seal the opening in the second enclosure, the flexible element being deformable such that a deformation of the flexible element results in a change of a volume confined by the second enclosure.