Combined disc-type cavitation structure for underwater navigation of underwater vehicle
US-2024182137-A1 · Jun 6, 2024 · US
US9738350B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9738350-B2 |
| Application number | US-201414911182-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 17, 2014 |
| Priority date | Oct 23, 2013 |
| Publication date | Aug 22, 2017 |
| Grant date | Aug 22, 2017 |
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A device for reducing frictional resistance includes: a chamber which is provided to a draft part of a hull and in which blowing holes blowing out air into the water of the outside of the hull from different positions to each other in a height direction of the hull are formed; a supply pipe supplying the air to an internal space of the chamber; and a distributor provided to each of the blowing holes, and guiding a part of the air, which was supplied inside the chamber from the supply pipe, to each of the blowing holes. The plurality of distributors has a flow-amount adjuster adjusting a flow amount of the air guided to the blowing hole corresponding to each of the distributors so that the flow amount of the air blown out from the plurality of blowing holes is equalized in each of the blowing holes.
Opening claim text (preview).
What is claimed is: 1. A device for reducing frictional resistance of a ship, the device comprising: a chamber which is provided to a draft part of a hull and in which a plurality of blowing holes blowing out a gas into the water of the outside of the hull from different positions to each other in a height direction of the hull are formed; a supply pipe that supplies the gas to an internal space of the chamber; and a plurality of distributors, each of which is provided at least to each of the plurality of blowing holes except for the blowing hole placed at the lowest position in the height direction of the plurality of blowing holes, the distributor guiding a part of the gas, which is supplied into the chamber from the supply pipe, to each of the blowing holes, wherein each of the plurality of distributors has a flow-amount adjuster that adjusts a flow amount of the gas guided to the blowing hole corresponding to the distributor so that the flow amount of the gas blown out from the plurality of blowing holes is equalized in each of the blowing holes. 2. The device for reducing frictional resistance of a ship according to claim 1 , wherein the distributor is provided to all of the plurality of blowing holes formed in the chamber. 3. The device for reducing frictional resistance of a ship according to claim 1 , wherein the higher the height position of the corresponding blowing hole is, the more the flow-amount adjuster of the plurality of distributors reduces the flow amount of the gas guided to the corresponding blowing hole. 4. The device for reducing frictional resistance of a ship according to claim 3 , wherein the plurality of distributors comprises: a partition member sectioning the internal space of the chamber to a supply-pipe-side space communicating with an opening of the supply pipe connecting to the chamber and a partial space including a space of the corresponding blowing hole, and wherein the flow-amount adjuster is provided to the partition member. 5. The device for reducing frictional resistance of a ship according to claim 4 , wherein the flow-amount adjuster of the distributor is configured of at least one penetration hole formed in the partition member and penetrating to the partial space side from the supply-pipe-side space, and the number of penetration holes of each of the plurality of distributors is different for each of the plurality of distributors. 6. The device for reducing frictional resistance of a ship according to claim 5 , wherein of plate members forming the chamber, the penetration hole is not formed on an extension of the blowing hole in the penetration direction of the blowing hole in an outer-wall plate in which the blowing hole corresponding to the distributor is formed. 7. The device for reducing frictional resistance of a ship according to claim 5 , wherein a change-direction member changing the flow direction of the gas from the penetration hole is provided in the partial space. 8. The device for reducing frictional resistance of a ship according to claim 4 , wherein the flow-amount adjuster of the distributor is formed in the partition member and is configured of a penetration hole penetrating to the partial space side from the supply-pipe-side space, and an opening area of the penetration hole of each of the plurality of distributors is different for each of the plurality of distributors. 9. The device for reducing frictional resistance of a ship according to claim 4 , wherein the flow-amount adjuster of each of the plurality of distributors is a screen provided to the partition member and formed a plurality of openings through which the gas passes to the partial space side from the supply-pipe-side space, and a size of openings of the screen of each of the plurality of distributors is different for each of the plurality distributors. 10. The device for reducing frictional resistance of a ship according to claim 4 , wherein the flow-amount adjuster of each of the plurality of distributors is configured of a pipe which is provided to the partition member and through which the gas passes to the partial space side from the supply-pipe-side space, and an opening area of the pipe of each of the plurality of distributors is different for each of the plurality of distributors. 11. The device for reducing frictional resistance of a ship according to claim 4 , wherein the flow-amount adjuster of each of the plurality of distributors is configured of a pipe which is provided to the partition member and through which the gas passes to the partial space side from the supply-pipe-side space, and a length of the pipe of each of the plurality of distributors is different for each of the plurality of distributors. 12. The device for reducing frictional resistance of a ship according to claim 4 , wherein the flow-amount adjuster of each of the plurality of distributors is configured of a valve which is provided to the partition member and through which the gas passes to the partial space side from the supply-pipe-side space, and a valve opening position of the valve of each of the plurality of distributors is different for each of the plurality of distributors. 13. The device for reducing frictional resistance of a ship according to claim 4 , wherein the partition member of the distributor comprises a cylinder and a cover, wherein the cylinder forms the partial space in the chamber with one end of the cylinder being connected to the outer-wall plate in which the corresponding blowing hole is formed and which is included in the plate members forming the chamber, and wherein the cover covers an opening of the other end of the cylinder. 14. The device for reducing frictional resistance of a ship according to claim 4 , wherein the partition member of the plurality of distributors comprises: an internal-space-partition plate that divides the internal space of the chamber into two spaces consisting of the supply-pipe-side space and a blowing-side space defined as another space, and a blowing-side-partition plate that divides the blowing-side space into a plurality of partial spaces by sectioning the blowing-side space with respect to each blowing hole, and wherein the flow-amount adjuster is provided to the internal-space-partition plate. 15. The device for reducing frictional resistance of a ship according to claim 4 , wherein the partition member of the distributor comprises: a facing plate facing the corresponding blowing hole and facing a portion around the corresponding blowing hole in the outer-wall plate in which the blowing hole is formed and which is included in the plate members forming the chamber, and the facing plate made contact with the outer-wall plate, and wherein the flow-amount adjuster is provided to the facing plate. 16. The device for reducing frictional resistance of a ship according to claim 4 , wherein the partition member of the distributor comprises: a facing plate facing the corresponding blowing hole and a portion around the corresponding blowing hole in the outer-wall plate in which the blowing hole is formed and which is included in the plate members forming the chamber with a clearance between the facing plate member and the outer-wall plate, and a clearance-maintaining member maintaining the clearance between the facing plate and the outer-wall plate, wherein the flow-amount adjuster is configured of an opening provided between the edge of the facing plate and the outer-wall plate, and wherein an area of the opening of each of the plurality of distributors is different for each of the plur
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