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An efficient assessment of vulnerability of a ship to parametric roll in irregular seas using first passage statistics

机译:使用首次通过统计有效评估船舶在不规则海域中易受参数横摇的脆弱性

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Unlike the traditional displacement vessels, the modem roll-on roll-off (Ro-Ro), container and cruise vessels designed over the past two decades are seen to be prone to dynamic instabilities, which in some cases may lead to capsizing. Although the vulnerability of a design to dynamic instabilities can be assessed through simulations, this approach is time consuming and unsuitable for analyzing several interim designs during the design spiral iterations. Recent global efforts by the International Maritime Organization (IMO) towards a second generation level 2 criterion attempt to adopt a first principles approach without resorting to time consuming numerical simulations or expensive physical model tests. This work provides such a tool for one of the identified capsizing mechanisms known as parametric rolling in a realistic random seaway. The technique of stochastic averaging is applied to a previously developed realistic model for parametric excitation in random waves. A semi-analytic design criterion for the comparative assessment of different hull forms to parametric roll in random seas is formulated in terms first passage statistics of the system. A sensitivity analysis is performed on the C11 container ship hull form to quantify and gain a deeper understanding of the relative importance of both physical parameters (restoring arm and damping) and environmental parameters (wave spectra intensity and characteristic frequency) on the instability.
机译:与传统的驱逐舰不同,在过去的二十年中设计的现代滚装滚装(Ro-Ro),集装箱和游轮被认为容易发生动态不稳定,在某些情况下可能导致倾覆。尽管可以通过仿真来评估设计对动态不稳定性的脆弱性,但是这种方法耗时且不适合在设计螺旋迭代期间分析多个临时设计。国际海事组织(IMO)最近针对第二代2级标准所做的全球性努力试图采用第一性原理方法,而不求助于费时的数值模拟或昂贵的物理模型测试。这项工作为确定的倾覆机制之一提供了这样的工具,该倾覆机制被称为现实随机航道中的参数滚动。随机平均技术被应用于先前开发的用于随机波中参数激励的现实模型。根据系统的初次通过统计量,制定了一种半分析设计标准,用于比较随机船体中不同船体形式对参数横摇的评估。对C11集装箱船的船体形式进行了敏感性分析,以量化并获得对不稳定性的物理参数(恢复臂和阻尼)和环境参数(频谱强度和特征频率)的相对重要性的更深入了解。

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