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A BEM formulation based on Reissner’s theory to perform simple bending analysis of plates reinforced by rectangular beams

机译:基于Reissner理论的BEM公式,可以对矩形梁加固的板进行简单的弯曲分析

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摘要

In this work, the plate bending formulation of the boundary element method (BEM), based on the Reissner’s hypothesis, is extended to the analysis of plates reinforced by rectangular beams. This composed structure is modelled by a zoned plate, being the beams represented by narrow sub-regions with larger thickness. The integral equations are derived by applying the weighted residual method to each sub-region, and summing them to get the equation for the whole plate. Equilibrium and compatibility conditions are automatically imposed by the integral equations, which treat this composed structure as a single body. In order to decrease the number of degrees of freedom, some approximations are considered for both displacements and tractions along the beam width. The accuracy of the proposed model is illustrated by simple examples whose exact solution are known as well as by more complex examples whose numerical results are compared with a well-known finite element code.
机译:在这项工作中,基于Reissner假设的边界元法(BEM)的板弯曲公式扩展到了矩形梁加固板的分析。这种组成的结构是用分区板建模的,分区板是由具有较大厚度的狭窄子区域表示的梁。积分方程是通过对每个子区域应用加权残差法,并将它们相加得出整个板的方程而得出的。平衡方程和平衡条件由积分方程自动施加,该方程将该组合结构视为一个整体。为了减少自由度的数量,考虑了沿梁宽度的位移和牵引力的一些近似值。通过简单的例子(其精确解已知)以及更复杂的例子(其数值结果与众所周知的有限元代码进行比较)可以说明所提出模型的准确性。

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