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An Integrated Kirchhoff Element by Galerkin Method for Free Vibration Analysis of Plates on Elastic Foundation

机译:Galerkin综合性Kirchhoff元件,用于弹性基础的平板自由振动分析

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Plates resting on elastic foundations have many engineering applications, especially in the area of structural engineering. Conventionally these foundation systems can be analyzed using regular plate bending element and discrete soil springs. The present work aims an element formulation which is suitable for dynamic analysis of such elastic foundation systems without the use of explicit discrete soil springs. The scope of the work includes free vibration analysis of an isotropic rectangular plate on elastic foundation with various boundary conditions for different thickness and varying properties of foundation. In this paper, finite element modelling has been done for a rectangular isotropic plate by using a four nodded Kirchhoff rectangular element having three degrees of freedom per node, combined with Winkler model of elastic foundation. Here the formulation has been carried out by integrating the properties of the rectangular plate with properties of elastic foundation using Galerkin weighted residual approach instead of the common methods in use like potential energy approach. Numerical modelling has been carried out by developing a MATLAB code and the results of free vibration analysis obtained are in good agreement with the results reported in earlier studies.
机译:在弹性基础上休息的板有许多工程应用,特别是在结构工程领域。通常可以使用普通板弯曲元件和离散土壤弹簧分析这些基础系统。本作工作旨在一种元素配方,适用于这种弹性基础系统的动态分析,而无需使用明确的离散土壤弹簧。该工作的范围包括弹性基础上同位素矩形板的自由振动分析,具有不同厚度和基础的不同性质的各种边界条件。在本文中,通过使用每个节点三个自由度的四点自由度的四点点头的kirchhoff矩形元件来完成有限元模型,结合了弹性基础的Winkler模型。这里,通过使用Galerkin加权残余方法将矩形板的性质与弹性基础的性能集成,而是通过使用像电位能量方法的常用方法来进行配方。通过开发MATLAB代码进行了数值建模,并且获得的自由振动分析结果与早期研究报告的结果吻合良好。

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