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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >A displacement smoothing induced strain gradient stabilization for the meshfree Galerkin nodal integration method
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A displacement smoothing induced strain gradient stabilization for the meshfree Galerkin nodal integration method

机译:无网格Galerkin节点积分法的位移平滑诱发应变梯度稳定

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In this paper, we present a gradient-type stabilization formulation for the meshfree Galerkin nodal integration method in liner elastic analysis. The stabilization is introduced to the standard variational formulation through an enhanced strain induced by a decomposed smoothed displacement field using the first-order meshfree convex approximations. It leads to a penalization formulation containing a symmetric strain gradient stabilization term for the enhancement of coercivity in the direct nodal integration method. As a result, the stabilization parameter comes naturally from the enhanced strain field and provides the simplest means for effecting stabilization. This strain gradient stabilization formulation is also shown to pass the constant stress patch test if the SCNI scheme is applied to the non-stabilized terms. Several numerical benchmarks are examined to demonstrate the effectiveness and accuracy of the proposed stabilization method in linear elastic analysis.
机译:在本文中,我们为衬板弹性分析中的无网格Galerkin节点积分方法提供了一种梯度型稳定公式。通过使用一阶无网格凸逼近法,通过由分解的平滑位移场引起的增强应变,将稳定度引入标准变分公式。这导致了包含对称应变梯度稳定项的惩罚公式,用于在直接节点积分方法中提高矫顽力。结果,稳定参数自然来自增强的应变场,并提供实现稳定的最简单方法。如果将SCNI方案应用于非稳定项,则该应变梯度稳定公式也显示通过了恒定应力补丁测试。检查了几个数值基准,以证明所提出的稳定方法在线性弹性分析中的有效性和准确性。

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