首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment >A simplified modular approach for the prediction of the roll motion due to the combined action of wind and waves
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A simplified modular approach for the prediction of the roll motion due to the combined action of wind and waves

机译:一种简化的模块化方法,用于预测由于风和浪的组合作用而引起的侧倾运动

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In this work a combined analytical-numerical approach is proposed to address the problem of the ship roll motion under the combined action of wind and waves. Roll motion is modelled as a one-degree-of-freedom system non-linear in both damping and restoring. The approach is modular, allowing an easy update of the methodology on the basis of new research outcomes. Realistic environmental conditions regarding the effects of both wind and waves are taken into account and can be easily changed. The spatial correlation of wind gusts is taken into account by means of an 'aerodynamic admittance' function, whereas the moment due to waves is obtained from the sea slope spectrum using the concept of effective wave slope, leading to a 'hydrodynamic admittance' function. Both static and dynamic aspects of the problems are taken into account. The proposed analytical procedure, based on statistical linearization technique, allows approximate statistical averages of the roll motion, assumed to be Gaussian, to be obtained without necessarily resorting to time-consuming Monte Carlo simulations. On the basis of the results obtained, an estimation of the capsize probability can be carried out. It seems that the effect of wind gustiness could be considered very small when compared with the effects of waves and mean wind speed when the metacentric height is sufficiently large. Finally, the presented approach moves towards the concept of 'performance-based analysis', recently introduced at the International Maritime Organization as the basis for future developments of intact stability, in a clear and formal way.
机译:在这项工作中,提出了一种组合的分析-数值方法来解决在风和浪的联合作用下船侧倾运动的问题。横摇运动被建模为一个在阻尼和恢复方面都是非线性的一自由度系统。该方法是模块化的,可以根据新的研究成果轻松地更新方法。考虑了关于风和浪影响的现实环境条件,可以轻松更改。借助“空气导纳”功能考虑了阵风的空间相关性,而使用有效波浪坡度的概念从海坡谱中获得了波浪产生的力矩,从而产生了“流体动力导纳”功能。同时考虑了问题的静态和动态方面。所提出的分析程序基于统计线性化技术,可以在无需求助于费时的蒙特卡洛模拟的情况下获得假定为高斯的侧倾运动的近似统计平均值。基于所获得的结果,可以进行倾覆概率的估计。当偏心高度足够大时,与波浪和平均风速的影响相比,风阵风的影响似乎很小。最后,提出的方法朝着“基于性能的分析”的概念迈进,国际海事组织最近以清晰和正式的方式引入了“基于性能的分析”作为未来发展的基础。

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