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An Enriched Radial Point Interpolation Method Based on Weak-Form and Strong-Form

机译:一种基于弱形式和强形式的富径向点插值方法

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In this article, an enriched radial point interpolation method (e-RPIM) is developed for computational mechanics. The conventional radial basis function (RBF) interpolation is novelly augmented by the suitable basis functions to reflect the natural properties of deformation. The performance of the enriched meshless RBF shape functions is first investigated using the surface fitting. The surface fitting results have proven that, compared with the conventional RBF, the enriched RBF interpolation has a much better accuracy to fit a complex surface than the conventional RBF interpolation. It has proven that the enriched RBF shape function will not only possess all advantages of the conventional RBF interpolation, but also can accurately reflect the deformation properties of problems. The system of equations for two-dimensional solids is then derived based on the enriched RBF shape function and both of the meshless strong-form and weak-form. A numerical example of a bar is presented to study the effectiveness and efficiency of e-RPIM. As an important application, the newly developed e-RPIM, which is augmented by selected trigonometric basis functions, is applied to crack problems. It has been demonstrated that the present e-RPIM is very accurate and stable for fracture mechanics problems.
机译:在本文中,开发了一种用于计算力学的丰富径向点插值方法(e-RPIM)。常规的径向基函数(RBF)插值通过适当的基函数新颖地得到了增强,以反映变形的自然属性。首先使用表面拟合研究了丰富的无网格RBF形状函数的性能。表面拟合结果证明,与常规RBF插值相比,富集的RBF插值具有更高的精度以拟合复杂的曲面。事实证明,丰富的RBF形状函数不仅具有常规RBF插值的所有优点,而且可以准确反映问题的变形特性。然后,基于丰富的RBF形状函数以及无网格的强形式和弱形式,导出二维固体的方程组。给出了一个数值示例,以研究e-RPIM的有效性和效率。作为一项重要的应用,新开发的e-RPIM(通过选择的三角基函数进行扩展)被应用于裂纹问题。已经证明,本发明的e-RPIM对于断裂力学问题是非常准确和稳定的。

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