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A Novel Four-Node Quadrilateral Smoothing Element for Stress Enhancement and Error Estimation

机译:用于应力增强和误差估计的新型四节点四边形平滑元素

摘要

A four-node, quadrilateral smoothing element is developed based upon a penalized-discrete-least-squares variational formulation. The smoothing methodology recovers C1-continuous stresses, thus enabling effective a posteriori error estimation and automatic adaptive mesh refinement. The element formulation is originated with a five-node macro-element configuration consisting of four triangular anisoparametric smoothing elements in a cross-diagonal pattern. This element pattern enables a convenient closed-form solution for the degrees of freedom of the interior node, resulting from enforcing explicitly a set of natural edge-wise penalty constraints. The degree-of-freedom reduction scheme leads to a very efficient formulation of a four-node quadrilateral smoothing element without any compromise in robustness and accuracy of the smoothing analysis. The application examples include stress recovery and error estimation in adaptive mesh refinement solutions for an elasticity problem and an aerospace structural component.
机译:基于罚分立最小二乘变分公式,开发了四节点四边形平滑元素。平滑方法可恢复C1连续应力,从而实现有效的后验误差估计和自动自适应网格细化。元素配方源自具有五个节点的宏元素配置,该配置包含四个以对角线形式分布的三角形非等距平滑元素。通过显式强制执行一组自然的边沿惩罚约束,此元素模式可为内部节点的自由度提供方便的封闭形式解决方案。自由度降低方案导致了四节点四边形平滑元素的非常有效的公式化,而不会影响平滑分析的鲁棒性和准确性。应用示例包括针对弹性问题和航空航天结构组件的自适应网格细化解决方案中的应力恢复和误差估计。

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