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NASA NTRS · 20090007630

A Framework for Parallel Unstructured Grid Generation for Complex Aerodynamic Simulations

Abstract

A framework for parallel unstructured grid generation targeting both shared memory multi-processors and distributed memory architectures is presented. The two fundamental building-blocks of the framework consist of: (1) the Advancing-Partition (AP) method used for domain decomposition and (2) the Advancing Front (AF) method used for mesh generation. Starting from the surface mesh of the computational domain, the AP method is applied recursively to generate a set of sub-domains. Next, the sub-domains are meshed in parallel using the AF method. The recursive nature of domain decomposition naturally maps to a divide-and-conquer algorithm which exhibits inherent parallelism. For the parallel implementation, the Master/Worker pattern is employed to dynamically balance the varying workloads of each task on the set of available CPUs. Performance results by this approach are presented and discussed in detail as well as future work and improvements.

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BibTeXRIS

Zagaris, George, Pirzadeh, Shahyar Z., Chrisochoides, Nikos. 2009-01-05. A Framework for Parallel Unstructured Grid Generation for Complex Aerodynamic Simulations. https://ntrs.nasa.gov/citations/20090007630

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