论文标题

脆性断裂的相位模型的加速交错方案

An accelerated staggered scheme for phase-field modeling of brittle fracture

论文作者

Storvik, Erlend, Both, Jakub Wiktor, Sargado, Juan Michael, Nordbotten, Jan Martin, Radu, Florin Adrian

论文摘要

目前,人们对开发有效的求解器进行脆性断裂的相位模型的兴趣越来越大。该问题的管理方程源于非凸能功能的约束最小化,最常用的求解器是交错的解决方案方案。与单片牛顿法相比,这是鲁棒的,但是,交错的方案通常需要在裂缝进化时进行许多迭代。我们工作的重点是通过依次应用安德森加速度和过度释放的方案加速求解器,根据残余演变来回切换,从而确保趋势下降。最终的方案利用了安德森加速度和过度删除的互补优势,以解决此问题的强大而加速的方法。新方法被用作后处理技术来求解求解器的增量,因此,可以通过对已经可用的软件进行少量修改来实现。此外,结合两个加速度方案的成本可以忽略不计。该方法的鲁棒性和效率是通过数值示例来证明的。

There is currently an increasing interest in developing efficient solvers for phase-field modeling of brittle fracture. The governing equations for this problem originate from a constrained minimization of a non-convex energy functional, and the most commonly used solver is a staggered solution scheme. This is known to be robust compared to the monolithic Newton method, however, the staggered scheme often requires many iterations to converge when cracks are evolving. The focus of our work is to accelerate the solver through a scheme that sequentially applies Anderson acceleration and over-relaxation, switching back and forth depending on the residual evolution, and thereby ensuring a decreasing tendency. The resulting scheme takes advantage of the complementary strengths of Anderson acceleration and over-relaxation to make a robust and accelerating method for this problem. The new method is applied as a post-processing technique to the increments of the solver, hence, the implementation can be done with minor modifications to already available software. Moreover, the cost of combining the two acceleration schemes is negligible. The robustness and efficiency of the method are demonstrated through numerical examples.

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