Treffer: CPAFT: A consistent parallel advancing front technique for unstructured triangular/tetrahedral mesh generation: CPAFT: a consistent parallel advancing front technique for unstructured triangular/tetrahedral mesh generation

Title:
CPAFT: A consistent parallel advancing front technique for unstructured triangular/tetrahedral mesh generation: CPAFT: a consistent parallel advancing front technique for unstructured triangular/tetrahedral mesh generation
Source:
Computer Physics Communications. 310:109535
Publication Status:
Preprint
Publisher Information:
Elsevier BV, 2025.
Publication Year:
2025
Document Type:
Fachzeitschrift Article
File Description:
application/xml
Language:
English
ISSN:
0010-4655
DOI:
10.1016/j.cpc.2025.109535
DOI:
10.48550/arxiv.2405.20618
Rights:
Elsevier TDM
arXiv Non-Exclusive Distribution
Accession Number:
edsair.doi.dedup.....0f5df9c8b48e3bab2fc2e4892d2bc91e
Database:
OpenAIRE

Weitere Informationen

Compared with the remarkable progress made in parallel numerical solvers of partial differential equations,the development of algorithms for generating unstructured triangular/tetrahedral meshes has been relatively sluggish. In this paper, we propose a novel, consistent parallel advancing front technique (CPAFT) by combining the advancing front technique, the domain decomposition method based on space-filling curves, the distributed forest-of-overlapping-trees approach, and the consistent parallel maximal independent set algorithm. The newly proposed CPAFT algorithm can mathematically ensure that the generated unstructured triangular/tetrahedral meshes are independent of the number of processors and the implementation of domain decomposition. Several numerical tests are conducted to validate the parallel consistency and outstanding parallel efficiency of the proposed algorithm, which scales effectively up to two thousand processors. This is, as far as we know, the first parallel unstructured triangular/tetrahedral mesh generator with scalability to O(1,000) CPU processors.