IP Library Granted Patent US 10,315,741
Granted Patent B2
US 10,315,741 · App. 15/516,669 · Granted Jun 11, 2019

Underwater propulsion apparatus and underwater exploration apparatus

Inventors: Hayato Kondo (Tokyo, JP); Masahiro Osakabe (Tokyo, JP)
Assignee: National University Corporation Tokyo University Of Marine Science And Technology
B63G8/14B63H11/08B63H11/103B63H11/107
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Quick Facts
Patent No.
US 10,315,741
App. No.
15/516,669
Granted
Jun 11, 2019
Kind
B2
Abstract

An underwater propulsion apparatus 1 according to an embodiment includes a main body 2 having a conical tail portion, a channel 4 having an inlet 6 in the outer circumferential surface of the main body 2 and a nozzle 7 on the side downstream of the inlet 6 and in the tail portion, at least one pump 3 having an impeller 5 provided in the channel 4 , a diffuser 8 attached to the main body 2 so as to surround the outer circumference of the nozzle 7 , and a plurality of direction control wings 9 attached to the outer surface of the main body 2 and located in positions downstream of the nozzle 7 and close thereto, each of the plurality of direction control wings 9 having an upstream end pivotally supported by the main body 2.

Claims (22)

1. An underwater propulsion apparatus comprising:

a main body;

at least one pump having a channel and an impeller provided in the channel, the channel having an inlet in an outer circumferential surface of the main body and a nozzle on a side downstream of the inlet and in a tail portion of the main body; and

a plurality of direction control wings attached to an outer surface of the main body and located in positions downstream of the nozzle and close thereto, each of the plurality of direction control wings having an upstream end pivotally supported by the main body,

wherein the nozzle is configured to blast jet flow along a surface of at least one of the direction control wings,

the underwater propulsion apparatus further comprising a diffuser attached to the main body so as to surround an outer circumference of the nozzle.

2. The underwater propulsion apparatus according to claim 1 , wherein the diffuser is provided with a first entrained flow introducing channel that passes through the diffuser and introduces water flow flowing along an outer side of the diffuser into a propulsion channel sandwiched between the diffuser and the direction control wings.

3. The underwater propulsion apparatus according to claim 1 , wherein an outer surface of a downstream end portion of the diffuser is provided with a plurality of first entrained flow introducing grooves that extend from an upstream side toward a downstream side and have a depth that increases with distance toward the downstream side.

4. The underwater propulsion apparatus according to claim 1 , wherein an edge portion upstream of the nozzle is provided with a second entrained flow introducing channel that passes through the edge portion and introduces water flow flowing along an outer side of the main body into the channel.

5. The underwater propulsion apparatus according to claim 1 , wherein an outer surface of an edge portion upstream of the nozzle is provided with a plurality of second entrained flow introducing grooves that extend from an upstream side toward a downstream side and have a depth that increases with distance toward the downstream side.

6. The underwater propulsion apparatus according to claim 1 , wherein the tail portion of the main body has a conical shape with a head portion truncated.

7. An underwater exploration apparatus comprising:

a hull having a stern;

at least one pump having a channel and an impeller provided in the channel, the channel having an inlet in an outer circumferential surface of the hull and a nozzle on a side downstream of the inlet and in the stern; and

a plurality of direction control wings attached to an outer surface of the hull and located in positions downstream of the nozzle and close thereto, each of the plurality of direction control wings having an upstream end pivotally supported by the hull,

wherein the nozzle is configured to blast jet flow along a surface of at least one of the plurality of direction control wings,

the underwater exploration apparatus further comprising a diffuser attached to the hull so as to surround an outer circumference of the nozzle.

8. The underwater exploration apparatus according to claim 7 , wherein the diffuser is provided with an entrained flow introducing channel that passes through the diffuser and introduces water flow flowing along an outer side of the diffuser into a propulsion channel sandwiched between the diffuser and the direction control wings.

9. The underwater exploration apparatus according to claim 7 , wherein an outer surface of a downstream end portion of the diffuser is provided with a plurality of entrained flow introducing grooves that extend from an upstream side toward a downstream side and have a depth that increases with distance toward the downstream side.

10. The underwater exploration apparatus according to claim 7 , wherein an edge portion upstream of the nozzle is provided with a second entrained flow introducing channel that passes through the edge portion and introduces water flow flowing along an outer side of the hull into the channel and in a portion close to the nozzle.

11. The underwater exploration apparatus according to claim 7 , wherein an outer surface of an edge portion upstream of the nozzle is provided with a plurality of second entrained flow introducing grooves that extend from an upstream side toward a downstream side and have a depth that increases with distance toward the downstream side.

12. The underwater exploration apparatus according to claim 7 , wherein the stern of the hull has a conical shape with a head portion truncated.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2017
From: KONDO, HAYATO; OSAKABE, MASAHIRO
To: NATIONAL UNIVERSITY CORPORATION TOKYO UNIVERSITY OF MARINE SCIENCE AND TECHNOLOGY
Reel/Frame 043106/0038 →
Priority Claims (1)
JP 2014-205122 · Oct 3, 2014 · national
Continuity (1)
Related Publication 20170334534A1 · Nov 23, 2017