Title of article
Scalable parallel dynamic fracture simulation using an extrinsic cohesive zone model
Author/Authors
Espinha، نويسنده , , Rodrigo and Park، نويسنده , , Kyoungsoo and Paulino، نويسنده , , Glaucio H. and Celes، نويسنده , , Waldemar، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
18
From page
144
To page
161
Abstract
In order to achieve realistic cohesive fracture simulation, a parallel computational framework is developed in conjunction with the parallel topology based data structure (ParTopS). Communications with remote partitions are performed by employing proxy nodes, proxy elements and ghost nodes, while synchronizations are identified on the basis of computational patterns (at-node, at-element, nodes-to-element, and elements-to-node). Several approaches to parallelize a serial code are discussed. An approach combining local computations and replicated computations with stable iterators is proposed, which is shown to be the most efficient one among the approaches discussed in this study. Furthermore, computational experiments demonstrate the scalability of the parallel dynamic fracture simulation framework for both 2D and 3D problems. The total execution time of a test problem remains nearly constant when the number of processors increases at the same rate as the number of elements.
Keywords
Parallel topology based data structure , Parallel computing , Dynamic fracture , Extrinsic cohesive zone model
Journal title
Computer Methods in Applied Mechanics and Engineering
Serial Year
2013
Journal title
Computer Methods in Applied Mechanics and Engineering
Record number
1596154
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