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Preventing deadlock during anisotropic 2D mesh adaptation in hp-adaptive FEM

机译:在hp自适应FEM中防止各向异性2D网格自适应期间的死锁

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摘要

The paper presents a grammar for anisotropic two-dimensional mesh adaptation in hp-adaptive Finite Element Method with rectangular elements. Expressing mesh transformations as grammar productions is useful for concurrency analysis thanks to exhibiting the partial causality order (Lamport relationship) between atomic operations. It occurs that a straightforward approach to modeling this process via grammar productions leads to potential deadlock in h-adaptation of the mesh. This fact is shown on a Petri net model of an exemplary adaptation. Therefore auxiliary productions are added to the grammar in order to ensure that any sequence of productions allowed by the grammar does not lead to a deadlock state. The fact that the enhanced grammar is deadlock-free is proven via a corresponding Petri net model. The proof has been performed by means of reachability graph construction and analysis. The paper is concluded with numerical simulations of magnetolluric measurements where the deadlock problem occurred.
机译:本文提出了一种具有矩形元素的hp自适应有限元方法中各向异性二维网格自适应的语法。由于表现出原子操作之间的部分因果关系顺序(Lamport关系),将网格转换表示为语法产生形式对并发分析很有用。发生通过语法产生对该过程进行建模的直接方法会导致网格的h适应潜在的死锁。在示例性改编的Petri网模型上显示了这一事实。因此,将辅助产生式添加到语法中,以确保语法允许的任何产生式序列都不会导致死锁状态。增强的语法无死锁的事实已通过相应的Petri网模型得到证明。证明是通过可达性图的构造和分析来进行的。本文以发生死锁问题的磁流体测量的数值模拟作为结论。

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