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Parametric study in Element Free Galerkin method for an elastic bar

机译:弹性杆的无元素Galerkin方法的参数研究

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Meshfree Methods (MMs) have become popular as an alternative numerical simulation technique to handle problems of diverse engineering fields where conventional grid based methods are not suitable. Element Free Galerkin (EFG) method is a popular meshfree approach based on global weak form of governing differential equation and employs Moving Least Square (MLS) approximants to construct shape functions. While deriving solution with EFG, following selectable parameters affect solution accuracy and computational efforts: Order of monomial basis function and weight function selection in MLS approximants, size of influence domain, uniform and non-uniform node distribution, number of Gauss points in integration cells and the method of imposing essential boundary conditions. In the present paper, aforesaid significant parameters are studied individually to check its influence on solution accuracy in EFG and suggest near optimal selection. An axially loaded elastic bar problem is taken as case study for unambiguous presentation of results. Finally, when EFG results are compared with standard FEM solution, it is found that EFG displacements are more accurate than FEM and EFG stress results are continuous in the domain in contrast to discontinuous stress values in FEM at element boundaries.
机译:无网格方法(MM)已成为一种流行的替代数值模拟技术,可以解决传统网格方法不适合的各种工程领域的问题。无元素伽勒金(EFG)方法是一种基于控制微分方程的整体弱形式的流行无网格方法,它采用移动最小二乘(MLS)近似值来构造形状函数。在使用EFG求解时,以下可选参数会影响求解精度和计算工作:MLS近似中的单项基函数和权函数选择的顺序,影响域的大小,节点的均匀和非均匀分布,积分单元中高斯点的数量以及施加基本边界条件的方法。本文分别对上述重要参数进行了研究,以检查其对EFG中求解精度的影响,并提出接近最优的选择。以轴向加载的弹性杆问题为例,以明确表示结果。最后,当将EFG结果与标准FEM解决方案进行比较时,发现EFG位移比FEM更精确,并且EFG应力结果在域中是连续的,与FEM在单元边界处的不连续应力值相反。

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