Numerical-analytical evaluation about the impact in water of an elastic wedge using the SPH method

D. Guagliardo
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Abstract

Abstract. In a preliminary study about the structural behaviour of a body, the material can be supposed infinitely rigid. This choice is useful to simplify the problem and to obtain results that well approximate reality. In this specific case under study, it proves how the effect of the material elasticity has a fundamental role on the pressures developed when a wedge impacts water. The analysis is made using ANSYS LS-DYNA software modelling the wedge through the FEM method, characterized by the material defined by the MAT_001-ELASTIC keyword, and the water defined by the SPH (Smoothed-Particle Hydrodynamics) method. The elastic body behaviour will be evaluated through the presence of a displacement in the middle point, on the face impacting water, and the comparison between the obtained pressure and the one predicted by the analytical theories of von Karman1 and Wagner2, which study the impact of a rigid wedge.
用SPH法对弹性楔块在水中的冲击进行数值分析
摘要在关于物体结构行为的初步研究中,可以假定材料是无限刚性的。这种选择有助于简化问题并得到与实际情况很接近的结果。在这个具体的研究案例中,它证明了材料弹性的影响是如何对楔子撞击水时产生的压力起基本作用的。利用ANSYS LS-DYNA软件对楔体进行有限元建模,以MAT_001-ELASTIC关键字定义的材料和SPH (smooth - particle Hydrodynamics)方法定义的水为特征。弹性体的行为将通过在冲击水面的中间点存在位移来评估,并将得到的压力与von Karman1和Wagner2的分析理论预测的压力进行比较,这些理论研究刚性楔块的冲击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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