An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer

The ability to deal with the complex geometries precisely and accurately has always been the most integral part of any computational fluid dynamics approach. The lattice Boltzmann method has already achieved considerable success in the simulation of unsteady flow with arbitrary boundary shapes. To i...

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Main Authors: Jahanshaloo, Leila, Che Sidik, Nor Azwadi, Fazeli, Alireza, Mahmoud, Pesaran Hajiabbas
Format: Article
Published: PERGAMON-ELSEVIER SCIENCE LTD 2016
Subjects:
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author Jahanshaloo, Leila
Che Sidik, Nor Azwadi
Fazeli, Alireza
Mahmoud, Pesaran Hajiabbas
author_facet Jahanshaloo, Leila
Che Sidik, Nor Azwadi
Fazeli, Alireza
Mahmoud, Pesaran Hajiabbas
author_sort Jahanshaloo, Leila
collection ePrints
description The ability to deal with the complex geometries precisely and accurately has always been the most integral part of any computational fluid dynamics approach. The lattice Boltzmann method has already achieved considerable success in the simulation of unsteady flow with arbitrary boundary shapes. To include boundaries in the lattice Boltzmann simulations, several methods have been presented in the past to satisfy the standard boundary implementation of macroscopic flows. In spite of the considerably vast body of literatures that discuss in this field, the study still is in progress. The current study is an overview of the adopted boundary conditions in lattice Boltzmann method.
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institution Universiti Teknologi Malaysia - ePrints
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spelling utm.eprints-683172017-11-20T08:52:06Z http://eprints.utm.my/68317/ An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer Jahanshaloo, Leila Che Sidik, Nor Azwadi Fazeli, Alireza Mahmoud, Pesaran Hajiabbas TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering T Technology The ability to deal with the complex geometries precisely and accurately has always been the most integral part of any computational fluid dynamics approach. The lattice Boltzmann method has already achieved considerable success in the simulation of unsteady flow with arbitrary boundary shapes. To include boundaries in the lattice Boltzmann simulations, several methods have been presented in the past to satisfy the standard boundary implementation of macroscopic flows. In spite of the considerably vast body of literatures that discuss in this field, the study still is in progress. The current study is an overview of the adopted boundary conditions in lattice Boltzmann method. PERGAMON-ELSEVIER SCIENCE LTD 2016-01-11 Article PeerReviewed Jahanshaloo, Leila and Che Sidik, Nor Azwadi and Fazeli, Alireza and Mahmoud, Pesaran Hajiabbas (2016) An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer. International Communications in Heat and Mass Transfer, 78 . pp. 1-12. ISSN 0735-1933 http://dx.doi.org/10.1016/j.icheatmasstransfer.2016.08.014
spellingShingle TJ Mechanical engineering and machinery
TK Electrical engineering. Electronics Nuclear engineering
T Technology
Jahanshaloo, Leila
Che Sidik, Nor Azwadi
Fazeli, Alireza
Mahmoud, Pesaran Hajiabbas
An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
title An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
title_full An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
title_fullStr An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
title_full_unstemmed An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
title_short An overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
title_sort overview of boundary implementation in lattice boltzmann method for computational heat and mass transfer
topic TJ Mechanical engineering and machinery
TK Electrical engineering. Electronics Nuclear engineering
T Technology
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