Parameters optimization of controlled anti-rolling tank based on multi-objective optimal method

Songtao Zhang, L. Liang, Xiaoliang Sheng, Na Wang
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引用次数: 4

Abstract

Anti-rolling tank is one of the most popular used stabilizing devices, aiming at reducing ship roll motions thanks to a passive resonant oscillator made of liquid in a tank. Controllable passive tanks need to adopt the air valve realize the control of air channel, the control methods are also affecting the structure design. The anti-rolling tanks are specific to each ship and must be designed and optimized for given constraints in terms of space, weight and location of the ship. In the paper, the objective is to optimize roll stabilization capabilities of a U-tube tank within a given limited envelope and index, and the subject of the optimization method could consider various factors included the fluid mechanics, the structure design and control and so on. The multi-objective optimization in this study is expected to be very useful in designing anti-rolling tank.
基于多目标优化方法的可控减摇槽参数优化
减摇舱是目前应用最广泛的稳定装置之一,它利用舱内液体构成的被动谐振振荡器来减小船舶的横摇运动。可控被动式储罐需要采用空气阀来实现对风道的控制,其控制方式也影响着结构设计。每艘船舶的减摇舱都是特定的,必须根据船舶的空间、重量和位置等条件进行设计和优化。本文的目标是在一定的包络线和指标下优化u型管储罐的横摇镇定能力,该优化方法可以考虑流体力学、结构设计和控制等多种因素。本研究的多目标优化方法对减摇槽的设计具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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