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Deep-sea solar diving device

A technology of submersibles and solar energy, applied in vehicle energy storage, underwater ships, underwater operating equipment, etc., can solve the problems of energy consumption, inability to carry large instruments, and large energy burden, etc., and achieve compact design and wide use value , simple and reliable cost-effective

Inactive Publication Date: 2007-11-14
SHANGHAI JIAO TONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the disadvantage of underwater glider is that its trajectory must be zigzag, its speed is very low, its maneuverability is poor, it does not have fixed depth and altitude and plane maneuverability, and it cannot carry large instruments and support higher speed navigation. , so its tasks are mainly limited to water profile surveys
For large-depth investigation tasks, it will consume a lot of energy, form a large energy burden, and consume more time, reducing charging or operating time
SAUV is driven by a pure propeller in terms of motion realization, and the motion state is based on horizontal motion, so it cannot effectively overcome the above contradictions

Method used

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Embodiment Construction

[0029] The embodiments of the present invention are described in detail below in conjunction with the accompanying drawings: this embodiment is implemented under the premise of the technical solution of the present invention, and detailed implementation methods and processes are provided, but the protection scope of the present invention is not limited to the following implementations example.

[0030] As shown in accompanying drawing 1, present embodiment comprises: submersible main body 1, hang glider or solar cell panel 2, main thruster 3 and vertically stabilized empennage 4, the outside of submersible main body 1 is the water-permeable shell 16 that rectification is used, and water-permeable Inside the shell 16 are a center of gravity adjustment system 14 , a buoyancy adjustment system 13 and a pressure chamber 17 . The water-permeable shell 16 is a rotating body with an aspect ratio between 7 and 10, and has a low fluid resistance shape. The hang glider or solar panel 2...

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Abstract

The invention is about a deep-sea solar energy diving instrument. It includes: the diving instrument body, the glider vane or solar panel, the main thruster and the vertical stable empennage; the glider vane or the solar panel are installed on the diving instrument back; the main thruster is set in the middle vertical axis of the diving instrument; it also includes the permeable shell out of the main body, which has the flotage adjusting system, the barycenter adjusting system and the pressure capsule, the velometer, the depth gauge, the sonar responder near to the head, the altimeter near to the bow and the sonar transducer near to the tail part. The solar energy is the main driving mode and the big angle gliding technology driven by the flotage is the assistant driving mode. So it has the low energy cost, long endurance time and wide work field to improve it's investigate ability in deep sea.

Description

technical field [0001] The invention relates to a submersible in the technical field of marine engineering, in particular to a deep sea solar submersible (DSV). Background technique [0002] Autonomous underwater vehicle (AUV for short) technology has been widely used in marine surveys. However, there are still three problems in conventional AUVs, which limit its application range in marine surveys, that is, conventional AUVs have limited carrying energy and cannot support long-term and large-scale navigation; The platform conducts real-time information exchange. This makes the mission execution time of conventional AUVs usually only calculated in hours or days. In response to these three problems, two types of special AUV systems have been developed in the world, namely underwater glider and solar AUV. Underwater glider adopts buoyancy drive mode. Different from the propeller drive of conventional AUVs, the buoyancy drive does not have an external propeller, but adjusts...

Claims

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Application Information

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IPC IPC(8): B63G8/00B63C11/46B63C11/49B63H21/00B60L8/00
CPCY02T10/7083Y02T10/7072
Inventor 李英辉葛彤连琏
Owner SHANGHAI JIAO TONG UNIV
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