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A MESHLESS BOUNDARY ELEMENT METHOD FOR SIMULATING SLAMMING IN CONTEXT OF GENERALIZED WAGNER

机译:一种模拟广义瓦格纳背景下抨击的无网界元素方法

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摘要

A boundary element method designed for solving the symmetric Generalized Wagner formulation is presented. The flow field is parameterized with analytical functions and can describe the kinematics at any free surface or body location using a small set of parameters obtained from a collocation scheme. The method is fast and robust for all deadrise angles, even for flat plate impacts where classical boundary element methods usually fails. The method is easy to implement and is easy to apply. Given a smooth body contour the only additional input is the requested accuracy. There is no mesh involved. When solving the temporal problem we exploit the analytical distribution of free surface velocities and apply an integral equation formalism consistent with the Wagner formulation. The output of the spatial and temporal scheme is a set of functions and parameters suitable for fast computation of the complete kinematics for any impact trajectory given the position of the keel and the body velocity. The method is developed to be combined with seakeeping programs for statistical impact and whipping assessment.
机译:介绍了一种用于求解对称广义瓦格纳制剂的边界元件方法。流场与分析功能一起参数化,并且可以使用从配合方案获得的一小组参数描述任何自由表面或车身位置的运动学。该方法对于所有失踪角度快速且鲁棒,即使对于平板电影影响,古典边界元件方法通常发生故障。该方法易于实现,易于应用。鉴于平滑的身体轮廓,唯一的额外输入是所要求的准确性。没有涉及的网格。当解决时间问题时,我们利用自由表面速度的分析分布,并施加与瓦格纳制剂一致的整体方程式主义。空间和时间方案的输出是一组功能和参数,适合于给定龙骨和体速的位置的任何冲击轨迹的完整运动学的快速计算。该方法是开发的,与海人员组成,统计影响和次次评估。

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