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Effect of hydrostatic pressure on vibrating functionally graded circular plate coupled with bounded fluid

机译:静水压力对振动有限元耦合的功能梯度圆板的影响

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This study investigates free vibration of a thick FG circular plate in contact with an inviscid, and incompressible fluid. Analysis of plate is based on First-order Shear Deformation Reissner-Mindlin Theory (FSDT) with consideration of rotational inertial effects and transverse shear stresses. Potential theory together Bernouli's equation are utilized to obtain the fluid pressure on the free surface of the plate. The governing equation of the oscillatory behavior of the fluid is obtained by solving Laplace equation and satisfying its boundary conditions. The natural frequencies and mode shapes of the plate are determined using Chebyshev polynomials. The effects of the geometrical parameters such as plate thickness to its radius ratio, boundary conditions, fluid density, volume fraction index, and height of the fluid on natural frequencies and mode shapes are investigated. Comparison of analytically outcome of this study is made with similar publications in the literature. (C) 2017 Published by Elsevier Inc.
机译:这项研究调查了厚厚的FG圆形板与无粘性且不可压缩的流体接触时的自由振动。板的分析基于一阶剪切变形Reissner-Mindlin理论(FSDT),其中考虑了旋转惯性效应和横向剪应力。势能理论与伯努利方程一起用于获得板自由表面上的流体压力。通过求解拉普拉斯方程并满足其边界条件,可以得到流体振荡行为的控制方程。使用Chebyshev多项式确定板的固有频率和模态形状。研究了几何参数,例如板厚与其半径之比,边界条件,流体密度,体积分数指数和流体高度对固有频率和振型的影响。本研究的分析结果与文献中的类似出版物进行了比较。 (C)2017由Elsevier Inc.发布

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