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首页> 外文期刊>Journal of ship production and design >Comparison between the Dynamic Behavior of the Non-stepped and Double-stepped Planing Hulls in Rough Water: A Numerical Study
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Comparison between the Dynamic Behavior of the Non-stepped and Double-stepped Planing Hulls in Rough Water: A Numerical Study

机译:粗水中非阶梯式和双层阶梯式船体动态行为的比较:数值研究

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摘要

Reducing vertical motions of high-speed planing hulls in rough water is one of the most important factors that help a boat to become more operable, and will benefit the structure of the boat and the crew on board. In the recent decade, stepped planing hulls have been investigated with emphasis on their better performance in calm water than that of non-stepped planing hulls. However, there are still doubts about their performance in rough water. In this study, we investigate this problem by providing numerical simulations for motions of a double-stepped and a non-stepped planing hull in a vertical plane when they encounter head waves. The problem will be solved using the finite volume method and volume of fluid method. To this end, a numerical computational fluid dynamics code (STAR-CCM+) has been used. Accuracy of the numerical simulations is evaluated by comparing their outcome with available experimental data. The dynamic response of the investigated hulls has been numerically modeled for two different wave lengths, one of which is smaller than the boat length and the other which is larger than the boat length. Using the numerical simulations, heave and pitch motions as well as vertical acceleration are found. It has been found that at wave lengths larger than the boat length, heave amplitude decreases by 10-40% when two steps are added to the bottom of a vessel. It has also been observed that pitch of a planing hull is reduced by 18-32% in the presence of the two steps on its bottom. Finally, it has been observed that for wave lengths larger than the boat length, the maximum vertical acceleration decreases by a gravitational acceleration of about .2-.7.
机译:减少粗糙水中的高速刨壳的垂直运动是最重要的因素之一,帮助船更具可操作,并将使船和船员的结构受益。最近十年来,已经调查了阶梯式船体,重点是在平静的水中的更好的性能而不是非阶梯式船体。然而,粗糙水中的性能仍然存在疑问。在这项研究中,我们通过在遇到头部波的垂直平面中提供了双阶下的动作和在垂直平面中的非阶梯式平面船体的运动来调查该问题。使用有限体积法和流体方法的体积来解决问题。为此,已经使用了数值计算流体动力学代码(Star-CCM +)。通过将其结果与可用的实验数据进行比较来评估数值模拟的准确性。研究的船体的动态响应已经为两个不同的波长进行了数值模拟,其中一个小于船长,另一个大于船长。使用数值模拟,升降和俯仰运动以及垂直加速度。已经发现,当在容器的底部加入两个步骤时,在大于船长的波长,升振幅度减小10-40%。还观察到,在其底部的两个步骤存在下,平面壳的间距减少了18-32%。最后,已经观察到,对于大于船长的波长,最大垂直加速度通过约为0.2-.7的引力加速而降低。

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