首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >A numerical study on coupled sloshing and ship motions of a liquefied natural gas carrier in regular and irregular waves
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A numerical study on coupled sloshing and ship motions of a liquefied natural gas carrier in regular and irregular waves

机译:液化天然气船在规则和不规则波中晃荡和船舶运动耦合的数值研究

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This article presents a numerical study of the coupled ship motions and tank sloshing of a liquefied natural gas carrier. To solve this coupled problem, we have developed a time-domain numerical method. The method combines a ship motion solver based on strip theory and a computational fluid dynamics sloshing solver. The method has been applied to a liquefied natural gas carrier model to investigate the coupling effect in regular waves. Simulations for four different loading conditions were carried out, and the results of ship motion response amplitude operators and free surface movement amplitudes were presented in frequency domain. The coupling effect on ship motions and sloshing has been discussed. Based on the assumption of linearity of ship motions and wave, the authors used the ship motion response amplitude operators (with coupling effect) obtained in regular wave conditions to generate ship motion time histories in irregular waves. Sloshing in tanks was then simulated by using the ship motion time histories in irregular wave conditions. The calculated impact pressure time histories were analyzed by using the exceedance probability function.
机译:本文提出了液化天然气运输船耦合运动和油箱晃荡的数值研究。为了解决这个耦合问题,我们开发了一种时域数值方法。该方法结合了基于条带理论的船舶运动求解器和计算流体动力学晃动求解器。该方法已应用于液化天然气载体模型,以研究规则波中的耦合效应。对四种不同的载荷条件进行了仿真,并在频域中给出了船舶运动响应幅度算子和自由表面运动幅度的结果。已经讨论了对船舶运动和晃荡的耦合作用。基于船舶运动和波浪的线性假设,作者使用在规则波浪条件下获得的船舶运动响应幅度算子(具有耦合效应)来生成不规则波浪中的船舶运动时间历史。然后,通过使用不规则波浪条件下的船舶运动时间历史记录来模拟坦克的晃动。使用超越概率函数对计算出的冲击压力时间历史进行了分析。

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