Arbitrary Lagrangian-Eulerian Form of Flowfield Dependent Variation (ALE-FDV) Method for 3D Problems
In this study, Flowfield Dependent Variation (FDV) method is coupled with Arbitrary Lagrangian- Eulerian (ALE) method in order to solve threedimensional fluid-structure interaction problems. FDV method is a mixed explicit-implicit numerical scheme where its implicitness is determined by severa...
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iium-361822014-11-04T03:55:59Z http://irep.iium.edu.my/36182/ Arbitrary Lagrangian-Eulerian Form of Flowfield Dependent Variation (ALE-FDV) Method for 3D Problems Zulkifli, Mohammad Omar, Ashraf Ali Asrar, Waqar QA76 Computer software TL500 Aeronautics TL780 Rockets In this study, Flowfield Dependent Variation (FDV) method is coupled with Arbitrary Lagrangian- Eulerian (ALE) method in order to solve threedimensional fluid-structure interaction problems. FDV method is a mixed explicit-implicit numerical scheme where its implicitness is determined by several parameters that are dependent on the physical properties of the local flow. The scheme, which is called as ALE-FDV method, is discretized using finite volume method in order to give flexibility in dealing with complicated geometries. The formulation itself yields a sparse matrix, which can be solved using any iterative algorithm. Several numerical tests have been conducted and the results are in good agreement with exact and available numerical solutions in the literature. 2014 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/36182/1/CanadaCFD2014-full-Omar-final_version.pdf application/pdf en http://irep.iium.edu.my/36182/4/CSME_CFDSC_2014_Program.pdf Zulkifli, Mohammad and Omar, Ashraf Ali and Asrar, Waqar (2014) Arbitrary Lagrangian-Eulerian Form of Flowfield Dependent Variation (ALE-FDV) Method for 3D Problems. In: 22nd Annual Conference of the CFD Society of Canada, 1-4 Jun 2014, Toronto Canada. (In Press) |
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QA76 Computer software TL500 Aeronautics TL780 Rockets Zulkifli, Mohammad Omar, Ashraf Ali Asrar, Waqar Arbitrary Lagrangian-Eulerian Form of Flowfield Dependent Variation (ALE-FDV) Method for 3D Problems |
description |
In this study, Flowfield Dependent Variation (FDV)
method is coupled with Arbitrary Lagrangian-
Eulerian (ALE) method in order to solve threedimensional
fluid-structure interaction problems.
FDV method is a mixed explicit-implicit numerical
scheme where its implicitness is determined by
several parameters that are dependent on the physical
properties of the local flow. The scheme, which is
called as ALE-FDV method, is discretized using
finite volume method in order to give flexibility in
dealing with complicated geometries. The
formulation itself yields a sparse matrix, which can
be solved using any iterative algorithm. Several
numerical tests have been conducted and the results
are in good agreement with exact and available
numerical solutions in the literature. |
format |
Conference or Workshop Item |
author |
Zulkifli, Mohammad Omar, Ashraf Ali Asrar, Waqar |
author_facet |
Zulkifli, Mohammad Omar, Ashraf Ali Asrar, Waqar |
author_sort |
Zulkifli, Mohammad |
title |
Arbitrary Lagrangian-Eulerian Form of Flowfield
Dependent Variation (ALE-FDV) Method for 3D Problems |
title_short |
Arbitrary Lagrangian-Eulerian Form of Flowfield
Dependent Variation (ALE-FDV) Method for 3D Problems |
title_full |
Arbitrary Lagrangian-Eulerian Form of Flowfield
Dependent Variation (ALE-FDV) Method for 3D Problems |
title_fullStr |
Arbitrary Lagrangian-Eulerian Form of Flowfield
Dependent Variation (ALE-FDV) Method for 3D Problems |
title_full_unstemmed |
Arbitrary Lagrangian-Eulerian Form of Flowfield
Dependent Variation (ALE-FDV) Method for 3D Problems |
title_sort |
arbitrary lagrangian-eulerian form of flowfield
dependent variation (ale-fdv) method for 3d problems |
publishDate |
2014 |
url |
http://irep.iium.edu.my/36182/ http://irep.iium.edu.my/36182/1/CanadaCFD2014-full-Omar-final_version.pdf http://irep.iium.edu.my/36182/4/CSME_CFDSC_2014_Program.pdf |
first_indexed |
2023-09-18T20:51:47Z |
last_indexed |
2023-09-18T20:51:47Z |
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1777410043111538688 |