首页> 外文期刊>Communications in numerical methods in engineering >Static and dynamic convergence studies of a four-noded m embrane finite element with rotational degrees of freedom based on displacement superposition
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Static and dynamic convergence studies of a four-noded m embrane finite element with rotational degrees of freedom based on displacement superposition

机译:基于位移叠加的旋转自由度四节点m环有限元的静态和动态收敛研究

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Static and dynamic performance tests of a four-noded quadrilateral isoparametric membrane finite element enriched with rotational degrees of freedom (DOF) are presented. The formulation is based on displacement superposition whereby the in-plane displacements are decomposed additively into a regular, low-order contribution (governed by the nodal in-plane displacements) and a higher-order contribution (governed by the nodal in-plane rotations). The sensitivity of the element to element distortion and element aspect ratio is investigated. Comparisons with standard bilinear finite elements are made for static and dynamic loading case. It is demonstrated that the studied element exhibits an accuracy per DOF that is superior to the standard bilinear finite element.
机译:提出了富含旋转自由度(DOF)的四节点四边形等参膜有限元的静态和动态性能测试。该公式基于位移叠加,其中,平面内位移被累加分解为规则的低阶贡献(由节点平面内位移控制)和高阶贡献(由节点平面内旋转方式控制) 。研究了元件对元件变形和元件纵横比的敏感性。与标准双线性有限元进行了静态和动态加载情况的比较。结果表明,所研究的单元每DOF的精度优于标准双线性有限元。

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