Tetrahedral mesh generator for CFD simulation of complex geometry

Computational Fluid Dynamics (CFD) simulation is becoming an important aspect in the design and analysis of engineering equipment. CFD allows engineers to reduce losses related to fluid flows and hence increase the performance. The first part of CFD simulation is building suitable mesh for the geome...

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Main Authors: Luon N.Y., Yusoff M.Z., Shuaib N.H.
Other Authors: 55812479000
Format: Conference paper
Published: 2023
Subjects:
CFD
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id my.uniten.dspace-30754
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spelling my.uniten.dspace-307542023-12-29T15:52:35Z Tetrahedral mesh generator for CFD simulation of complex geometry Luon N.Y. Yusoff M.Z. Shuaib N.H. 55812479000 7003976733 13907934500 CFD Component Delaunay Mesh, tetrahedral Computer simulation Flow of fluids Geometry Mesh generation Sustainable development Triangulation CFD simulations Complex domains Complex geometries Computational fluid dynamics simulations Convergence rates Delaunay meshes Delaunay triangulation Design and analysis Engineering equipments Fluid flow High quality Mesh quality Overall quality Techniques used Test case Tetrahedral cells Tetrahedral elements Tetrahedral meshes Computational fluid dynamics Computational Fluid Dynamics (CFD) simulation is becoming an important aspect in the design and analysis of engineering equipment. CFD allows engineers to reduce losses related to fluid flows and hence increase the performance. The first part of CFD simulation is building suitable mesh for the geometry to be analyzed. Tetrahedral mesh is widely used in meshing complex domain due to its flexibility. One of the common techniques used to generate tetrahedral mesh is Delaunay triangulation. Although Delaunay triangulation can always generate tetrahedral elements that fill any domain, the quality of the elements is not guaranteed. This is particularly important in CFD simulations whereby the accuracy of results and convergence rate will be highly affected by the mesh quality. This paper describes the development of a tetrahedral mesh generator which is capable of generating sufficiently high quality tetrahedral cells in arbitrary complex geometry. A few test cases are presented which show that slivers are eliminated and the overall quality is good. The combination of the constrained and conforming boundary recovery was also successfully done where all the missing faces are rebuilt. �2009 IEEE. Final 2023-12-29T07:52:34Z 2023-12-29T07:52:34Z 2009 Conference paper 10.1109/ICEENVIRON.2009.5398626 2-s2.0-77949582211 https://www.scopus.com/inward/record.uri?eid=2-s2.0-77949582211&doi=10.1109%2fICEENVIRON.2009.5398626&partnerID=40&md5=a522cc6186f30b5274b8562218eeae4b https://irepository.uniten.edu.my/handle/123456789/30754 5398626 330 336 Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic CFD
Component
Delaunay
Mesh, tetrahedral
Computer simulation
Flow of fluids
Geometry
Mesh generation
Sustainable development
Triangulation
CFD simulations
Complex domains
Complex geometries
Computational fluid dynamics simulations
Convergence rates
Delaunay meshes
Delaunay triangulation
Design and analysis
Engineering equipments
Fluid flow
High quality
Mesh quality
Overall quality
Techniques used
Test case
Tetrahedral cells
Tetrahedral elements
Tetrahedral meshes
Computational fluid dynamics
spellingShingle CFD
Component
Delaunay
Mesh, tetrahedral
Computer simulation
Flow of fluids
Geometry
Mesh generation
Sustainable development
Triangulation
CFD simulations
Complex domains
Complex geometries
Computational fluid dynamics simulations
Convergence rates
Delaunay meshes
Delaunay triangulation
Design and analysis
Engineering equipments
Fluid flow
High quality
Mesh quality
Overall quality
Techniques used
Test case
Tetrahedral cells
Tetrahedral elements
Tetrahedral meshes
Computational fluid dynamics
Luon N.Y.
Yusoff M.Z.
Shuaib N.H.
Tetrahedral mesh generator for CFD simulation of complex geometry
description Computational Fluid Dynamics (CFD) simulation is becoming an important aspect in the design and analysis of engineering equipment. CFD allows engineers to reduce losses related to fluid flows and hence increase the performance. The first part of CFD simulation is building suitable mesh for the geometry to be analyzed. Tetrahedral mesh is widely used in meshing complex domain due to its flexibility. One of the common techniques used to generate tetrahedral mesh is Delaunay triangulation. Although Delaunay triangulation can always generate tetrahedral elements that fill any domain, the quality of the elements is not guaranteed. This is particularly important in CFD simulations whereby the accuracy of results and convergence rate will be highly affected by the mesh quality. This paper describes the development of a tetrahedral mesh generator which is capable of generating sufficiently high quality tetrahedral cells in arbitrary complex geometry. A few test cases are presented which show that slivers are eliminated and the overall quality is good. The combination of the constrained and conforming boundary recovery was also successfully done where all the missing faces are rebuilt. �2009 IEEE.
author2 55812479000
author_facet 55812479000
Luon N.Y.
Yusoff M.Z.
Shuaib N.H.
format Conference paper
author Luon N.Y.
Yusoff M.Z.
Shuaib N.H.
author_sort Luon N.Y.
title Tetrahedral mesh generator for CFD simulation of complex geometry
title_short Tetrahedral mesh generator for CFD simulation of complex geometry
title_full Tetrahedral mesh generator for CFD simulation of complex geometry
title_fullStr Tetrahedral mesh generator for CFD simulation of complex geometry
title_full_unstemmed Tetrahedral mesh generator for CFD simulation of complex geometry
title_sort tetrahedral mesh generator for cfd simulation of complex geometry
publishDate 2023
_version_ 1806426347414749184
score 13.214268