Volume and neighbors algorithm for finding elimination trees for three dimensional h-adaptive grids

This paper presents an algorithm called “volume & neighbors” for finding elimination trees for multifrontal solver algorithm applied to three dimensional h-adaptive finite element method computations. The algorithm is described in a pseudo-code and explained on exemplary h-refined grids. The alg...

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Published inComputers & mathematics with applications (1987) Vol. 68; no. 10; pp. 1467 - 1478
Main Author Paszyńska, Anna
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.11.2014
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ISSN0898-1221
1873-7668
DOI10.1016/j.camwa.2014.09.012

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Abstract This paper presents an algorithm called “volume & neighbors” for finding elimination trees for multifrontal solver algorithm applied to three dimensional h-adaptive finite element method computations. The algorithm is described in a pseudo-code and explained on exemplary h-refined grids. The algorithm is implemented in three dimensional h-adaptive finite element method code and tested on a sequence of representative grids, namely uniform grid, grid with point singularity, grid with edge singularity and grid with face singularity. The number of floating point operations for the multifrontal solver algorithm working with the elimination trees generated by the volume & neighbors algorithm is compared with the number of floating-point operations resulting from execution of the state-of-the-art multifrontal direct solver MUMPS with state-of-the-art algorithms for constructing elimination trees like nested-dissection from METIS library and approximate minimum degree AMD algorithm as well as PORD algorithm. In all the cases the volume & neighbors algorithm outperforms other state-of-the art algorithms. The only exception is the case of the uniform grid, where the algorithm results in a similar number of FLOPs than nested dissection algorithm.
AbstractList This paper presents an algorithm called “volume & neighbors” for finding elimination trees for multifrontal solver algorithm applied to three dimensional h-adaptive finite element method computations. The algorithm is described in a pseudo-code and explained on exemplary h-refined grids. The algorithm is implemented in three dimensional h-adaptive finite element method code and tested on a sequence of representative grids, namely uniform grid, grid with point singularity, grid with edge singularity and grid with face singularity. The number of floating point operations for the multifrontal solver algorithm working with the elimination trees generated by the volume & neighbors algorithm is compared with the number of floating-point operations resulting from execution of the state-of-the-art multifrontal direct solver MUMPS with state-of-the-art algorithms for constructing elimination trees like nested-dissection from METIS library and approximate minimum degree AMD algorithm as well as PORD algorithm. In all the cases the volume & neighbors algorithm outperforms other state-of-the art algorithms. The only exception is the case of the uniform grid, where the algorithm results in a similar number of FLOPs than nested dissection algorithm.
Author Paszyńska, Anna
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  organization: Jagiellonian University, Faculty of Physics, Astronomy and Applied Computer Science, Department of Computer Graphics and Design, Reymonta 4, 30-059, Krakow, Poland
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Keywords Elimination tree
Multifrontal direct solver
Adaptive finite element method
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Snippet This paper presents an algorithm called “volume & neighbors” for finding elimination trees for multifrontal solver algorithm applied to three dimensional...
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StartPage 1467
SubjectTerms Adaptive finite element method
Elimination tree
Multifrontal direct solver
Title Volume and neighbors algorithm for finding elimination trees for three dimensional h-adaptive grids
URI https://dx.doi.org/10.1016/j.camwa.2014.09.012
Volume 68
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