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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Dynamic analysis of baffled fuel-storage tanks using the ALE finite element method
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Dynamic analysis of baffled fuel-storage tanks using the ALE finite element method

机译:折流式储油罐的ALE有限元动态分析

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This paper is concerned with the parametric investigation on the structural dynamic response of moving fuel-storage tanks with baffles. Since the structural dynamic behaviour is strongly coupled with interior liquid motion, the design of a fuel-storage tank securing the structural stability becomes the appropriate suppression of the flow motion, which is in turn related to the baffle design. In order to numerically investigate the parametric dynamic characteristics of moving tanks, we employ the arbitrary Lagrangian-Fulerian (ALE) finite element method that is widely being used to deal with the problems with free surface, moving boundary, large deformation and interface contact. Following the theoretical and numerical formulations of fluid-structure interaction problems, we present parametric numerical results of a cylindrical fuel-storage tank moving with uniform vertical acceleration, with respect to the baffle number and location, and the inner-hole diameter.
机译:本文涉及带有挡板的移动储油罐结构动力响应的参数研究。由于结构动力特性与内部液体运动密切相关,因此确保结构稳定性的燃料存储箱的设计成为对流动运动的适当抑制,而这又与挡板设计有关。为了对运动罐的参数动力学特性进行数值研究,我们采用了任意拉格朗日-富勒曼(ALE)有限元方法,该方法被广泛用于解决自由表面,运动边界,大变形和界面接触的问题。遵循流固耦合问题的理论和数值公式,我们给出了圆柱状燃料存储箱在挡板数量和位置以及内孔直径方面均以垂直加速度均匀运动的参数数值结果。

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