Overwater floating equipment platform

A floating equipment and platform technology, applied in underwater operation equipment, mechanical equipment, motor vehicles, etc., can solve problems such as complex combat procedures, coordination and cooperation, strict time delay requirements, and reduced reliability of multi-program transmission data. To achieve the effect of reducing mechanical noise

Active Publication Date: 2020-05-08
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, my country's current anti-submarine network system needs to combine surface ships equipped with towed line array sonar with anti-submarine helicopters and sonobuoy positioning. Complicated, the reliability of multi-program transmission data is reduced

Method used

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Embodiment

[0059] Such as figure 1 with figure 2 As shown, the designed detection vessel is about 154m long and is expected to accommodate 20 people, including 5 crew members and 15 scientific researchers. The increase of the captain greatly improves the living environment of the staff in the vertical state of the ship, and provides a highly stable scientific research operation environment. Table 1 shows the main performance parameters of the new probe ship.

[0060] Design characteristic parameters Value Design characteristic parameters Value Hull length154m Vertical draft91~104m Waterline length148m recharge mileage 2200 n mile Maximum width11m Installed power 1196 kw Sailing draught4m Operating speed 8 kt

[0061] The probe ship includes multiple ballast tanks 14, air receiver 9, tunnel propulsion device 10, telescopic propulsion device 11, multi-layer deck 15, mooring device 16, wave energy generating device 13 and surface coating 8.

[0062] The plurality of ballast tanks 14 inc...

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Abstract

The invention discloses an overwater floating equipment platform. The overwater floating equipment platform comprises a No.1 ballast tank, a No.2 ballast tank, a No.3 ballast tank, a No.4 ballast tank, a propulsion tank, a No.6 ballast tank, a wave energy power generation tank and a multilayer deck from head to tail. The No.2 ballast tank is divided into a No.2 top ballast tank and a No.2 bottom ballast tank. The No.3 ballast tank is divided into a No.3 top ballast tank, a No.3 bottom ballast tank, a No.3 left ballast tank and a No.3 right ballast tank. A propelling device is arranged in the propelling tank. The propelling device comprises a tunnel type propeller, a telescopic propeller and a battery pack. A wave energy power generation device is arranged in the wave energy power generation tank and comprises a piston rod, a vibrator and a hydraulic cylinder. According to the invention, a propulsion mode of combining the electrically-driven tunnel propeller and the telescopic propelleris adopted, autonomous navigation can be realized, interference of the propellers to experiments can be effectively avoided, and a plurality of ballast tanks are arranged, so that ship rotation operation can be realized more stably.

Description

Technical field [0001] The invention relates to the field of water equipment research, in particular to a new type of floating equipment platform on water that can be detected vertically, which can be applied to provide a marine experimental platform for relevant researches on water and underwater sound wave propagation laws. Background technique [0002] In recent years, with the launch of domestically-produced aircraft carriers, there is an urgent need to grasp the enemy's movements to ensure the safety of aircraft carrier formations and underwater submarines, and prevent attacks by enemy water and underwater vehicles. However, the anti-submarine network system currently adopted by our country needs to combine surface ships equipped with towed line array sonar, anti-submarine helicopters, and sonar buoy positioning. The coordination and cooperation of various parts and the time delay requirements are strict, and the combat procedures are very strict. Complicated, the reliabilit...

Claims

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Application Information

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IPC IPC(8): B63B35/00B63B21/50B63B1/40B63G8/22B63H21/17F03B13/20
CPCB63B1/40B63B21/50B63B35/00B63B2021/505B63G8/22B63H21/17F03B13/187F03B13/20Y02E10/30Y02T70/10
Inventor 马东方马伟皓郝顺丰
Owner ZHEJIANG UNIV
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