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Element Free Galerkin(EFG)sensitivity study in structural analysis

机译:元素免费Galerkin(EFG)结构分析中的敏感性研究

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The present study shows a parametric analysis of the meshfree method,Element Free Galerkin(EFG),on the elastic analysis of a cantilever beam.This study allows us to determine the best convergence conditions of the solutions varying characteristic.EFG is based on the construction of Moving Least Squares(MLS)approximations using the weighted residual method on the weak formulation,with MLS form functions as the same weighting functions.We consider the parameters of the method such as the order of the basic functions of MLS functions,the size of the support domain of the local MLS functions and the density of Gauss points against errors calculated according to the L2 norm and processing time.It is shown that by increasing the order of basic functions it is possible to obtain more precise results,however,a larger support diameter and Gauss points higher density are required in order to stabilize the solution,considerably increasing processing times.Therefore,it is only advisable to use high-order base functions when the precision in the results is the priority and a high computational resource is available.
机译:本研究表明,关于悬臂梁的弹性分析的网格普通方法,元素免费Galerkin(EFG)的参数分析。本研究允许我们确定不同特性的解决方案的最佳收敛条件.EFG基于该结构移动最小二乘(MLS)近似使用在弱配方上的加权残留方法,用MLS形式函数作为相同的加权函数。我们考虑方法的参数,例如MLS函数的基本功能的顺序,大小本地MLS函数的支持域和根据L2规范和处理时间计算的误差的高斯点密度。如图1所示,通过增加基本功能的顺序,可以获得更精确的结果,但是,更大需要支撑直径和高斯点的密度是较高的密度,以稳定解决方案,显着增加的加工时间。因此,仅建议使用HIG H订单基本功能在结果中的精度是优先级和高计算资源。

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