首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2010 >CONTROL OF UNSTABLE SHIP MOTIONS USING ANTI ROLLING TANKS: EROSION OF SAFE BASINS
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CONTROL OF UNSTABLE SHIP MOTIONS USING ANTI ROLLING TANKS: EROSION OF SAFE BASINS

机译:使用防滚桶控制不稳定的船舶运动:安全舱的腐蚀

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The objective of the paper is to apply modern numerical techniques of nonlinear dynamics to the problem of control of the roll motion employing U-shaped anti rolling tanks (ART). Parametric rolling in head seas is the focus of the paper. A transom stern small vessel, well known for her tendency to develop strong parametric excitation is investigated. Nonlinear equations are employed to describe the liquid motion inside the tank, the forces and moments generated by the tank on the ship and the coupled ship motions (heave, roll and pitch). These are numerically solved for different initial conditions. An analysis of the dynamical behavior of the vessel with stabilization is presented in the form of numerical limits of stability, safe basins, integrity curves and integrity surfaces. Finally, curves of critical amplitude for different wave tunings are computed. A design procedure for quantitative assessment of the level of parametric rolling mitigation by means of ART's is discussed.
机译:本文的目的是将非线性动力学的现代数值技术应用到采用U型防侧倾箱(ART)的侧倾运动控制问题上。本文的重点是在公海中进行参数化滚动。船尾船尾的小船,以其发展强参数激励的趋势而闻名。非线性方程式用于描述液货舱内的液体运动,液货舱在船上产生的力和力矩以及耦合的船舶运动(升沉,横摇和俯仰)。对于不同的初始条件,通过数值方法解决了这些问题。以稳定性,安全盆,完整性曲线和完整性表面的数值限制的形式,对具有稳定作用的船舶的动力学行为进行了分析。最后,计算了不同波调谐的临界振幅曲线。讨论了通过ART's进行参数化滚动缓解水平定量评估的设计程序。

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