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A three-node triangular element with continuous nodal stress

机译:具有连续节点应力的三节点三角单元

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A three-node triangular element with continuous nodal stress (Trig3-CNS) is presented. The present work is the development of the partition-of-unity based 'FE-Meshless' quadrilateral element with continuous nodal stress (Quad4-CNS). This triangular element, Trig3-CNS, is potential to replace Quad4-CNS when the geometry of computational domain is too complex to generate quadrilateral meshes. The three-node triangular element (Trig3) is widely used, however it is always of low accuracy due to its low order of trial functions. By increasing the order of trial functions, Trig3-CNS obtains better accuracy and higher convergence rate as compared to Trig3. The numerical tests in this paper demonstrate that Trig3-CNS has higher tolerance to mesh distortion as compared to the Trig3 and four-node quadrilateral element (Quad4). Another advantage is that the derivative of Trig3-CNS shape function is continuous at nodes, therefore Trig3-CNS is capable of giving smoother solution and calculating nodal stress without any extra smoothing operation.
机译:提出了具有连续节点应力的三节点三角单元(Trig3-CNS)。当前的工作是开发基于单元划分的具有连续节点应力(Quad4-CNS)的基于“ FE-Meshless”的四边形单元。当计算域的几何形状过于复杂而无法生成四边形网格时,此Trig3-CNS三角形元素可能会替代Quad4-CNS。三节点三角单元(Trig3)广泛使用,但是由于试验功能的阶数较低,因此总是精度较低。通过增加试用功能的顺序,与Trig3相比,Trig3-CNS获得了更好的准确性和更高的收敛速度。本文中的数值测试表明,与Trig3和四节点四边形单元(Quad4)相比,Trig3-CNS具有更高的网格变形容差。另一个优点是Trig3-CNS形状函数的导数在节点处是连续的,因此Trig3-CNS能够提供更平滑的解并计算节点应力,而无需任何额外的平滑操作。

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