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Recently there has been increasing interest in the fluid-structure interaction problem of planing hull bottom structure during slamming events. Significant work has been done in estimating the bottom pressures that occur during a slam and incorporating this into structural models of planing craft. In this article, empirical equations for the pressure distribution on prismatic planing hulls are developed, including both hydrostatic and hydrodynamic effects, deadrise variation, trim, and wetted length. The empirical method is based on relevant experimental measurements of planing hull bottom pressures that have been made over an 80-year period. This analysis may readily be extended to the impact problem by substitution of an equivalentplaningvelocity, whichis discussed in the article. The end result is a closed form solution for bottom pressures on prismatic planing craft that can be rapidly calculated using a simple spreadsheet. The method is applicable for deadrise angles from 0° to 40°, trim angles up to 30°, and wetted lengths up to five beams. This wide range of parameters is significantly larger than most current models. The empirical method is modular, allowing for substitution of more accurate formulae as more data becomes available in the future.
机译:近来,人们对在撞击事件期间滑行船体底部结构的流体-结构相互作用问题越来越感兴趣。在估算猛击过程中发生的底部压力并将其纳入刨船的结构模型中,已经进行了重要的工作。在本文中,开发了棱柱形平面船体上压力分布的经验公式,包括静水力和流体动力效应,静滞变化,修整和湿润长度。经验方法基于在80年的时间内对滑行船底压力进行的相关实验测量。通过替换等效的平面速度,可以很容易地将此​​分析扩展到影响问题,这已在本文中进行了讨论。最终结果是可以用简单的电子表格快速计算出棱形刨光机底部压力的封闭式解决方案。该方法适用于从0°到40°的死角,最大30°的微调角和最多五个光束的湿长度。如此广泛的参数比大多数当前型号都大。经验方法是模块化的,随着将来有更多数据可用,可以替换更精确的公式。

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    《(mt) Marine technology》 |2015年第7期|76-77|共2页
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