Chapter High-Performance Computing: Dos and Don’ts

Computational fluid dynamics (CFD) is the main field of computational mechanics that has historically benefited from advances in high-performance computing. High-performance computing involves several techniques to make a simulation efficient and fast, such as distributed memory parallelism, shared...

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Hoofdauteurs: Henrik Göbbert, Jens, Houzeaux, Guillaume, Borrell, R., Mehta, Vishal, Fournier, Yvan, Hachem, Elie, Vázquez, Mariano, Garcia-Gasulla, Marta, Owen, Herbert
Formaat: Online
Taal:Engels
Gepubliceerd in: InTechOpen 2021
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Online toegang:ONIX_20210602_10.5772/intechopen.72042_377
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author Henrik Göbbert, Jens
Houzeaux, Guillaume
Borrell, R.
Mehta, Vishal
Fournier, Yvan
Hachem, Elie
Vázquez, Mariano
Garcia-Gasulla, Marta
Owen, Herbert
author_browse Borrell, R.
Fournier, Yvan
Garcia-Gasulla, Marta
Hachem, Elie
Henrik Göbbert, Jens
Houzeaux, Guillaume
Mehta, Vishal
Owen, Herbert
Vázquez, Mariano
author_facet Henrik Göbbert, Jens
Houzeaux, Guillaume
Borrell, R.
Mehta, Vishal
Fournier, Yvan
Hachem, Elie
Vázquez, Mariano
Garcia-Gasulla, Marta
Owen, Herbert
author_sort Henrik Göbbert, Jens
collection Directory of Open Access Books
description Computational fluid dynamics (CFD) is the main field of computational mechanics that has historically benefited from advances in high-performance computing. High-performance computing involves several techniques to make a simulation efficient and fast, such as distributed memory parallelism, shared memory parallelism, vectorization, memory access optimizations, etc. As an introduction, we present the anatomy of supercomputers, with special emphasis on HPC aspects relevant to CFD. Then, we develop some of the HPC concepts and numerical techniques applied to the complete CFD simulation framework: from preprocess (meshing) to postprocess (visualization) through the simulation itself (assembly and iterative solvers).
format Online
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institution Directory of Open Access Books
language eng
publishDate 2021
publishDateRange 2021
publishDateSort 2021
publisher InTechOpen
publisherStr InTechOpen
record_format ojs
spelling doab-20.500.12854ir-703512025-08-13T14:11:55Z Chapter High-Performance Computing: Dos and Don’ts Henrik Göbbert, Jens Houzeaux, Guillaume Borrell, R. Mehta, Vishal Fournier, Yvan Hachem, Elie Vázquez, Mariano Garcia-Gasulla, Marta Owen, Herbert parallelization, high-performance computing, assembly, supercomputing, meshing, adaptivity, algebraic solvers, parallel I/O, visualization thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation Computational fluid dynamics (CFD) is the main field of computational mechanics that has historically benefited from advances in high-performance computing. High-performance computing involves several techniques to make a simulation efficient and fast, such as distributed memory parallelism, shared memory parallelism, vectorization, memory access optimizations, etc. As an introduction, we present the anatomy of supercomputers, with special emphasis on HPC aspects relevant to CFD. Then, we develop some of the HPC concepts and numerical techniques applied to the complete CFD simulation framework: from preprocess (meshing) to postprocess (visualization) through the simulation itself (assembly and iterative solvers). 2021-02-10T12:58:18Z 2021-06-02T10:10:51Z 2018 chapter ONIX_20210602_10.5772/intechopen.72042_377 https://library.oapen.org/handle/20.500.12657/49263 https://directory.doabooks.org/handle/20.500.12854/70351 eng open access image/jpeg image/jpeg image/jpeg n/a n/a n/a https://library.oapen.org/bitstream/20.500.12657/49263/1/58618.pdf https://library.oapen.org/bitstream/20.500.12657/49263/1/58618.pdf https://library.oapen.org/bitstream/20.500.12657/49263/1/58618.pdf InTechOpen 10.5772/intechopen.72042 10.5772/intechopen.72042 035ecc65-6737-43cf-a13a-6bdf67ce01f4 open access
spellingShingle parallelization, high-performance computing, assembly, supercomputing, meshing, adaptivity, algebraic solvers, parallel I/O, visualization
thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation
thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation
Henrik Göbbert, Jens
Houzeaux, Guillaume
Borrell, R.
Mehta, Vishal
Fournier, Yvan
Hachem, Elie
Vázquez, Mariano
Garcia-Gasulla, Marta
Owen, Herbert
Chapter High-Performance Computing: Dos and Don’ts
title Chapter High-Performance Computing: Dos and Don’ts
title_full Chapter High-Performance Computing: Dos and Don’ts
title_fullStr Chapter High-Performance Computing: Dos and Don’ts
title_full_unstemmed Chapter High-Performance Computing: Dos and Don’ts
title_short Chapter High-Performance Computing: Dos and Don’ts
title_sort chapter high performance computing dos and don ts
topic parallelization, high-performance computing, assembly, supercomputing, meshing, adaptivity, algebraic solvers, parallel I/O, visualization
thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation
thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation
topic_facet parallelization, high-performance computing, assembly, supercomputing, meshing, adaptivity, algebraic solvers, parallel I/O, visualization
thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation
thema EDItEUR::U Computing and Information Technology::UY Computer science::UYM Computer modelling and simulation
url ONIX_20210602_10.5772/intechopen.72042_377
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