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A fast collocation method for a static bond-based linear peridynamic model

机译:基于静态键的线性绕动力学模型的快速配置方法

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We develop a fast collocation method for a steady-state bond-based linear peridynamic model in two space dimensions. The method reduces the computational work from O(N-2) per Krylov subspace iteration in a traditional collocation method to O(N log N) and the memory requirement from O(N-2) in a collocation method to O(N), where N is the number of unknowns in the discrete system. Furthermore, the method reduces the computational work of evaluating and assembling the stiffness matrix, which often constitutes a major portion of the overall computational work, from O(N-2) in a collocation method to O(N). The significant reduction of the CPU times and storage in the fast collocation method is achieved by carefully exploring the structure of the stiffness matrix of the collocation method without any lossy compression involved. In other words, the fast method is evaluated in an equivalent but more efficient manner. Therefore, the fast method generates identical numerical solutions as the traditional collocation method does and naturally inherits the stability and convergence properties that were already proved for a traditional collocation method. Numerical results are presented to show the utility of the fast method. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们为二维空间中的基于稳态键的线性绕动力学模型开发了一种快速配置方法。该方法将传统配置方法中每次Krylov子空间迭代的运算量从O(N-2)减少到O(N log N),将内存需求从O(N-2)减少到O(N),其中N是离散系统中未知数的数量。此外,该方法从配置方法中的O(N-2)到O(N),减少了评估和组装通常构成整体计算工作主要部分的刚度矩阵的计算工作。通过仔细研究搭配方法的刚度矩阵的结构,而无需进行任何有损压缩,可以大大减少快速搭配方法中的CPU时间和存储量。换句话说,以等效但更有效的方式评估快速方法。因此,快速方法生成的数值解与传统并置方法相同,并且自然继承了传统并置方法已经证明的稳定性和收敛性。数值结果表明了该方法的实用性。 (C)2016 Elsevier B.V.保留所有权利。

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