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Energy based approach for shape parameter selection in radial basis functions collocation method

机译:径向基函数配置方法中基于能量的形状参数选择方法

摘要

The accuracy of the multiquadratic radial basis functions collocation method in performing elasto-static analyses of multilayer composite plates is strongly affected by the shape parameter, a value that dominates the shape of the radial basis functions. The selection of an optimal value of the shape parameter is still an open problem and several approaches have been proposed in the open literature. In this paper, a novel algorithm based on the Principle of Minimum of the Total Potential Energy is presented. The effectiveness of this algorithm is assessed by static analysis of a laminated composite plate simply supported on all edges. Comparison with other algorithms for the selection of the shape parameter is made. The radial basis functions collocation method coupled with the present algorithm results very accurate in predicting maximum deflections and stresses in the range of the span-to-thickness ratio values considered
机译:形状参数是支配径向基函数形状的值,形状参数极大地影响了多二次径向基函数并置方法在多层复合板进行静力分析时的精度。形状参数的最佳值的选择仍然是一个未解决的问题,并且在公开文献中已经提出了几种方法。本文提出了一种基于最小总势能原理的新算法。通过对简单支撑在所有边缘上的层压复合板的静态分析,可以评估该算法的有效性。与其他算法进行比较以选择形状参数。径向基函数搭配方法与本算法相结合,可以非常准确地预测所考虑的跨度与厚度之比值范围内的最大挠度和应力

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