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Stabilizer suitable for low-speed ship

An anti-rolling device and a technology for ships, which are used in equipment to reduce ship motion, equipment to increase ship stability, use hydrofoils to reduce ship motion on the surrounding water surface, etc., which can solve the problem of limited installation location, high price, and hull space. Large and other problems, to achieve the effect of simple structure, reduced rolling and easy installation

Active Publication Date: 2019-07-16
HARBIN ENG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, anti-rolling devices are widely used in the world, such as fin stabilizers, anti-roll tanks and bilge keels, among which fin stabilizers and bilge keels are mainly suitable for high-speed ships and their installation positions are limited, while anti-roll tanks can be used for Low-speed ships take up too much space on the hull and are expensive, so this patent invented an economical and reliable anti-rolling device suitable for low-speed ships

Method used

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  • Stabilizer suitable for low-speed ship
  • Stabilizer suitable for low-speed ship
  • Stabilizer suitable for low-speed ship

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Embodiment Construction

[0021] The specific embodiments of the present invention will be further described below in conjunction with the accompanying drawings.

[0022] The invention is a ship anti-rolling device designed according to the Magnus effect. The invention is a high-speed rotating conical cylinder installed on the bilge or bottom of the ship, which can realize the reduction of the ship by virtue of the lift generated when the conical cylinder rotates and is perpendicular to the direction of the incoming flow and the rotation curve of the conical cylinder. purpose of shaking. The invention includes main components such as a conical rotating column 1, a rotatable support frame 2, a driving device and a control system. Among them, the conical rotating column is conical instead of the ordinary cylinder, and the anti-rolling effect is better than that of the ordinary rotating cylinder; the groove 4 can be set on the surface of the conical rotating column to improve its anti-rolling effect; it ...

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Abstract

The invention discloses a stabilizer suitable for a low-speed ship. The stabilizer comprises two rotating pillars, two rotatable supporting frames, a driving device and a control system, wherein the two rotating pillars are correspondingly and symmetrically mounted on the two sides of the bilge or the bottom of a ship body through the rotatable supporting frames, the rotating pillars are connectedwith a first transmission mechanism through an internally fixed connecting rod, the first transmission mechanism is driven to rotate by a first motor in a cabin, and the rotatable supporting frames are connected with a second motor in the cabin through a second transmission mechanism; and the two motors are fixed to a platform in the cabin and connected with the control system, and the rotating pillars are cones. Compared with an existing fin stabilizer, the stabilizer has the advantages that the structure is simple, installation is convenient, rolling of the ship can be reduced, and thus theship has good seakeeping performance. The stabilizer is suitable for the low-speed ship and marine structures which need to be moored at sea, such as scientific research vessels, fishing vessels andcargo ships.

Description

technical field [0001] The invention relates to an anti-rolling device, in particular to an anti-rolling device suitable for low-speed ships and marine structures requiring mooring operations at sea. Background technique [0002] As early as 1852, German physicist Heinrich Magnus proposed the Magnus effect, that is, when the rotational angular velocity vector of a rotating object does not coincide with the forward velocity vector of the object, it is perpendicular to the plane composed of the rotational angular velocity vector and the translational velocity vector A transverse force will be generated in the direction of . Under the action of this lateral force, the object's forward trajectory is deflected. The Magnus effect can be used to explain the curve ball in table tennis, the banana ball in football and other phenomena. Previous researchers used the Magnus effect to design sailboats with rotating cylinders that get propulsion from airflow around two large rotating cy...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B63B39/06
CPCB63B39/062B63B2039/066
Inventor 林健峰赵大刚郭春雨韩阳张佐天苏玉民钟若凡王于
Owner HARBIN ENG UNIV
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