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Free vibration analysis of non-rectangular plates in contact with bounded fluid using element free Galerkin method

机译:非矩形板在有限流体中的自由振动分析

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摘要

Free vibration characteristics of a flexible non-rectangular bottom of a fluid-filled rectangular tank are investigated using a semi-analytical technique. Element free Galerkin method (EFG) based on moving kriging (MK) shape functions is used along with the Mindlin plate theory to model the flexible plate. Two different types of nonrectangular structural domains, viz., skew and trapezoidal configurations are considered in the present study. The fluid is assumed to be incompressible, inviscid and the effect of surface waves is ignored. Potential flow theory is assumed and the velocity potential is used to calculate the kinetic energy of the fluid. The results obtained are first validated with available solutions in the literature for elastic rectangular plates in contact with the fluid. Thereafter, the effects of various structural and fluid domain parameters on natural frequencies of thin isotropic and laminated composite skew/trapezoidal bottom of a rectangular tank filled with fluid are investigated in detail. New results on the vibration of non-rectangular plates in contact with the fluid, hitherto not found in the literature are presented here for the first time.
机译:使用半分析技术研究了充满流体的矩形罐的柔性非矩形底部的自由振动特性。基于移动克里金(MK)形状函数的无元素Galerkin方法(EFG)与Mindlin板理论一起用于建模柔性板。在本研究中考虑了两种不同类型的非矩形结构域,即倾斜和梯形构型。假定流体不可压缩,不粘稠,并且忽略了表面波的影响。假设采用势流理论,并使用速度势来计算流体的动能。首先使用文献中针对与流体接触的弹性矩形板的可用解决方案来验证所获得的结果。此后,详细研究了各种结构和流体域参数对填充流体的矩形罐的各向同性薄层和层状复合斜/梯形底部的固有频率的影响。非矩形板与流体接触的振动的新结果,迄今尚未在文献中首次发现。

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