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Parallelization of the Mesh Refinement Algorithm of the FDEM Program Package

机译:FDEM程序包的网格细化算法的并行化

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摘要

The Finite Difference Element Method (FDEM) program package is a robust and efficient black-box solver. It solves by a Finite Difference Method arbitrary non-linear systems of elliptic and parabolic partial differential equations under arbitrary non-linear boundary conditions on arbitrary domains in 2-D and 3-D, given by a FEM mesh. From formulas of different order, we get an easy access to the discretization error. By the knowledge of this error, the mesh may be refined locally to reduce the error to a prescribed relative tolerance. For the refinement of the elements, we first determine the refinement nodes because of either error or data organization reasons. The refinement of an element is based on halving its edges. We explain the difficulties in parallelizing the mesh refinement algorithm on distributed memory parallel computers where the processors have only local data and the refinement must be synchronized by the message passing paradigm.
机译:有限差分元素方法(FDEM)程序包是一个强大而有效的黑盒求解器。它通过有限差分法求解由FEM网格给出的,在任意非线性边界条件下在2-D和3-D任意域上的任意非线性边界条件下的椭圆和抛物型偏微分方程的任意非线性系统。从不同顺序的公式中,我们可以轻松地获得离散化误差。通过了解此错误,可以对网格进行局部优化,以将错误降低到规定的相对公差。对于元素的细化,我们首先根据错误或数据组织原因确定细化节点。元素的精炼基于其边缘减半。我们解释了在分布式内存并行计算机上并行化网格细化算法的困难,在分布式并行计算机上,处理器仅具有本地数据,并且细化必须通过消息传递范例进行同步。

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