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Variational differential quadrature: A technique to simplify numerical analysis of structures

机译:变分求积:一种简化结构数值分析的技术

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A new solution method in the area of computational mechanics is developed in this article, which is called variational differential quadrature (VDQJ. The main idea of this method is based on the accurate and direct discretization of the energy functional in the structural mechanics. In the VDQ method, through developing an efficient matrix formulation and using an accurate integral operator, the discretized governing equations are derived directly from the weak form of the equations with no need for the analytical derivation of the strong form. This technique provides an alternative way to discretize the energy functional, which avoids the local interpolation and the assembly process of the methods of this kind. We first implement the VDQ method for the nonlinear elasticity theory considering the Green-St. Venant strain tensor; then we simplify the formulation further for the first-order shear deformable beam and plate theories. The final formulation of these cases demonstrates the simplicity of the implementation for the VDQ method in the numerical analysis of the structures, which is a major goal for this article. Using these examples, one can easily learn and apply this technique to other structures. To assess the performance of the VDQ method, we compare it with the generalized differential quadrature (GDQ) method and finite element method (FEM) in the case of bending analysis of Mindlin plates. It is indicated that computational cost of VDQ is less than that of GDQ, and the convergence rate of VDQ is faster than that of FEM.
机译:本文开发了一种新的计算力学解决方案方法,称为变分微分正交(VDQJ)。该方法的主要思想是基于结构力学中能量函数的精确直接离散化。 VDQ方法通过开发有效的矩阵公式并使用精确的积分算子,可以直接从方程的弱形式导出离散控制方程,而无需对强形式进行解析推导,该技术提供了一种离散的离散方法。能量函数,从而避免了这种方法的局部插值和组装过程,首先,我们考虑了格林-圣维南应变张量,对非线性弹性理论实施了VDQ方法;然后为第一个方法进一步简化了公式阶剪切变形梁板理论,这些情况的最终表述证明了VDQ方法在结构数值分析中的实现方式的多样性,这是本文的主要目标。使用这些示例,您可以轻松地学习这项技术并将其应用于其他结构。为了评估VDQ方法的性能,在Mindlin板弯曲分析的情况下,我们将其与广义微分正交(GDQ)方法和有限元方法(FEM)进行了比较。结果表明,VDQ的计算成本比GDQ的计算成本低,VDQ的收敛速度比FEM的收敛速度快。

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