Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code

This paper presents a set of numerical simulations of different 2D boundary-value problems in order to validate a “smoothed-particle hydrodynamics”-“arbitrary Lagrangian-Eulerian” (SPH-ALE) code. This code is intended to be used to study, among other things, the problem of piping erosion in dams and...

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Main Authors: Jessica Sjah, Eric Vincens
Format: Article
Language:English
Published: Universitas Indonesia 2017-12-01
Series:International Journal of Technology
Subjects:
Online Access:http://ijtech.eng.ui.ac.id/article/view/729
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author Jessica Sjah
Eric Vincens
author_facet Jessica Sjah
Eric Vincens
author_sort Jessica Sjah
collection DOAJ
description This paper presents a set of numerical simulations of different 2D boundary-value problems in order to validate a “smoothed-particle hydrodynamics”-“arbitrary Lagrangian-Eulerian” (SPH-ALE) code. This code is intended to be used to study, among other things, the problem of piping erosion in dams and dikes. The case of viscous fluid flows around a fixed cylinder was first examined. Different Reynolds numbers and different shapes for the cylinder were considered. The drag coefficient, lift coefficient, pressure coefficient, and Strouhal number were compared with previous studies from the literature. Next, a validation of the case of a Poiseuille flow between smooth pipe walls with Re = 100 was provided. The friction coefficient was computed and compared to existing analytical solutions.
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spelling doaj.art-329e330c345440c1b3a81d1c1b4394742023-01-02T22:40:00ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002017-12-01861040104910.14716/ijtech.v8i6.729729Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE CodeJessica Sjah0Eric Vincens1- Civil Engineering Department, University of Indonesia, Indonesia<br/>-École Centrale de LyonThis paper presents a set of numerical simulations of different 2D boundary-value problems in order to validate a “smoothed-particle hydrodynamics”-“arbitrary Lagrangian-Eulerian” (SPH-ALE) code. This code is intended to be used to study, among other things, the problem of piping erosion in dams and dikes. The case of viscous fluid flows around a fixed cylinder was first examined. Different Reynolds numbers and different shapes for the cylinder were considered. The drag coefficient, lift coefficient, pressure coefficient, and Strouhal number were compared with previous studies from the literature. Next, a validation of the case of a Poiseuille flow between smooth pipe walls with Re = 100 was provided. The friction coefficient was computed and compared to existing analytical solutions.http://ijtech.eng.ui.ac.id/article/view/729HydrodynamicsInternal erosionPipeViscous fluid flow
spellingShingle Jessica Sjah
Eric Vincens
Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code
International Journal of Technology
Hydrodynamics
Internal erosion
Pipe
Viscous fluid flow
title Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code
title_full Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code
title_fullStr Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code
title_full_unstemmed Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code
title_short Fluid–Solid Interaction in the Case Of Piping Erosion: Validation of a SPH-ALE Code
title_sort fluid solid interaction in the case of piping erosion validation of a sph ale code
topic Hydrodynamics
Internal erosion
Pipe
Viscous fluid flow
url http://ijtech.eng.ui.ac.id/article/view/729
work_keys_str_mv AT jessicasjah fluidsolidinteractioninthecaseofpipingerosionvalidationofasphalecode
AT ericvincens fluidsolidinteractioninthecaseofpipingerosionvalidationofasphalecode