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Numerical and experimental analysis of bow flare slamming on a Ro-Ro vessel in regular oblique waves

机译:滚装船在规则斜向波浪中猛击的数值和实验分析

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摘要

A method for the prediction of slamming loads on ship hulls is presented and validated for a 20-knot, 120-m car carrier. A nonlinear strip theory is used to calculate the relative motions of ship and wave. The relative vertical and roll velocities for a slamming event are given as input to the slamming calculation program, which is based on a generalized two-dimensional Wagner formulation and solved by the boundary element method. The method is fast and robust. Model tests of a car carrier have been carried out in regular head, bow, and bow quartering waves of various heights. Slamming on two panels in the upper part of the bow flare has been studied. It has been found that the water pile-up around the bow due to the forward speed of the vessel significantly increases the slamming pressures. A simplified way of including this effect is presented. When the calculated slamming pressures are corrected for 3D effects, they compare well with the measured data. Since the effect of the wave elevation due to the forward speed and the effect of three-dimensional flow act in opposite directions, excluding both of them produced results that also agreed quite well with the experiments, especially for the most severe slamming events.
机译:提出了一种预测船体撞击载荷的方法,并针对20节,120米的汽车运输船进行了验证。非线性带状理论用于计算船舶和波浪的相对运动。砰击事件的相对垂直速度和横滚速度作为猛击计算程序的输入,该程序基于广义二维Wagner公式并通过边界元方法求解。该方法快速且可靠。已经在各种高度的常规头部,弓形和弓形四分之一波中进行了汽车运载工具的模型测试。已经研究了在弓形火炬上部的两个板上撞击。已经发现由于船的前进速度而在船首周围堆积的水显着增加了砰击压力。提出了一种包括这种效果的简化方法。当针对3D效果校正计算的砰击压力时,它们可以与测量数据很好地进行比较。由于前进速度引起的波高影响和三维流动的影响是相反的,因此将两者排除在外都可以得到与实验相当吻合的结果,特别是对于最严重的猛击事件。

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