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Discrete modelling of front propagation in backward piping erosion
Tran, Duc Kien; Prime, Noemie; Froiio, Francesco et al.
2017In EPJ Web of Conferences
 

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Abstract :
[en] A preliminary discrete numerical model of a REV at the front region of an erosion pipe in a cohesive granular soil is briefly presented. The results reported herein refer to a simulation carried out by coupling the Discrete Element Method (DEM) with the Lattice Boltzmann Method (LBM) for the representation of the granular and fluid phases, respectively. The numerical specimen, consisiting of bonded grains, is tested under fully-saturated conditions and increasing pressure difference between the inlet (confined) and the outlet (unconfined) flow regions. The key role of compression arches of force chains that transversely cross the sample and carry most part of the hydrodynamic actions is pointed out. These arches partition the REV into an upstream region that remains almost intact and a downstream region that gradually degrades and is subsequently eroded in the form of a cluster. Eventually, the collapse of the compression arches causes the upstream region to be also eroded, abruptly, as a whole. A complete presentation of the numerical model and of the results of the simulation can be found in [12]
Disciplines :
Civil engineering
Author, co-author :
Tran, Duc Kien ;  Université de Liège - ULiège > Ingénierie des biosystèmes (Biose) > Echanges Eau-Sol-Plantes
Prime, Noemie
Froiio, Francesco
Callari, Carlo
Vincens, Eric
Language :
English
Title :
Discrete modelling of front propagation in backward piping erosion
Publication date :
July 2017
Event name :
Powders & Grains 2017
Event date :
from 03-07-2017 to 07-07-2017
Journal title :
EPJ Web of Conferences
ISSN :
2101-6275
eISSN :
2100-014X
Publisher :
EDP Sciences, Les Ulis, France
Available on ORBi :
since 19 March 2019

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