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首页> 外文期刊>Procedia Computer Science >Petri Nets for Detecting a 3D Deadlock Problem in Hp-adaptive Finite Element Simulations
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Petri Nets for Detecting a 3D Deadlock Problem in Hp-adaptive Finite Element Simulations

机译:Petri网用于检测Hp自适应有限元模拟中的3D死锁问题

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The papers describes a Petri net model for mesh adaptation in 3D self-adaptive hp Finite Element Method ( hp- FEM) simulations. The method is applied to a model 3D problem consisting of the simulation of direct current (DC) measurements in a borehole environment with a deviated steel-cased well This model problem requires a high accuracy numerical solution, that can is delivered by the self-adaptive hp-FEM algorithm. We show that during the execution of the self-adaptive hp- FEM algorithm a deadlock problem occurs, that is, due to incompatibility of refinements, a given mesh cannot be further refined. We employ the Petri net model to identify the reason of the deadlock and introduce additional mesh transformations to overcome the problem and continue the simulations without occurrence of the deadlock.
机译:论文描述了在3D自适应hp有限元方法(hp-FEM)仿真中用于网格自适应的Petri网模型。该方法适用于3D模型问题,该问题由带有偏斜钢套井的井眼环境中的直流(DC)测量的模拟组成。该模型问题需要高精度的数值解决方案,该解决方案可以通过自适应来实现hp-FEM算法。我们表明,在执行自适应hp-FEM算法过程中会出现死锁问题,即由于细化的不兼容,给定的网格无法进一步细化。我们使用Petri网模型来确定死锁的原因,并引入其他网格转换以克服该问题,并继续进行仿真而不会出现死锁。

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