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APPLICATIONS OF A HYPER-GRAPH GRAMMAR SYSTEM IN ADAPTIVE FINITE-ELEMENT COMPUTATIONS

机译:超图文法系统在自适应有限元计算中的应用

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This paper describes application of a hyper-graph grammar system for modeling a three-dimensional adaptive finite element method. The hyper-graph grammar approach allows obtaining a linear computational cost of adaptive mesh transformations and computations performed over refined meshes. The computations are done by a hyper-graph grammar driven algorithm applicable to three-dimensional problems. For the case of typical refinements performed towards a point or an edge, the algorithm yields linear computational cost with respect to the mesh nodes for its sequential execution and logarithmic cost for its parallel execution. Such hyper-graph grammar productions are the mathematical formalism used to describe the computational algorithm implementing the finite element method. Each production indicates the smallest atomic task that can be executed concurrently. The mesh transformations and computations by using the hyper-graph grammar-based approach have been tested in the GALOIS environment. We conclude the paper with some numerical results performed on a shared-memory Linux cluster node, for the case of three-dimensional computational meshes refined towards a point, an edge and a face.
机译:本文介绍了超图文法系统在建模三维自适应有限元方法中的应用。超图语法方法允许获得自适应网格转换的线性计算成本,以及在精炼网格上执行的计算。通过适用于三维问题的超图语法驱动算法完成计算。对于朝点或边执行的典型细化的情况,该算法针对其顺序执行产生关于网格节点的线性计算成本,而对于其并行执行产生对数成本。这种超图文法产生是用于描述实现有限元方法的计算算法的数学形式主义。每个生产指示可以同时执行的最小原子任务。已经在GALOIS环境中测试了使用基于超图语法的方法进行的网格转换和计算。我们以在共享内存Linux群集节点上执行的一些数值结果作为本文的结尾,对于三维计算网格朝点,边和面进行精化的情况。

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