A Coupled PFEM-DEM Model for Fluid-Granular Flows with Free-Surface Dynamics Applied to Landslides

Fuente: arXiv
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Autori principali: Leyssens, Thomas, Henry, Michel, Lambrechts, Jonathan, Legat, Vincent, Remacle, Jean-François
Natura: Preprint
Pubblicazione: 2025
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_version_ 1866913637076041728
author Leyssens, Thomas
Henry, Michel
Lambrechts, Jonathan
Legat, Vincent
Remacle, Jean-François
author_facet Leyssens, Thomas
Henry, Michel
Lambrechts, Jonathan
Legat, Vincent
Remacle, Jean-François
contents Free surface and granular fluid mechanics problems combine the challenges of fluid dynamics with aspects of granular behaviour. This type of problem is particularly relevant in contexts such as the flow of sediments in rivers, the movement of granular soils in reservoirs, or the interactions between a fluid and granular materials in industrial processes such as silos. The numerical simulation of these phenomena is challenging because the solution depends not only on the multiple phases that strongly interact with each other, but also on the need to describe the geometric evolution of the different interfaces. This paper presents an approach to the simulation of fluid-granular phenomena involving strongly deforming free surfaces. The Discrete Element Method (DEM) is combined with the Particle Finite Element Method (PFEM) and the fluid-grain interface is treated by a two-way coupling between the two phases. The fluid-air interface is solved by a free surface model. The geometric and topological variations are therefore naturally provided by the full Lagrangian description of all phases. The approach is validated on benchmark test cases such as two-phase dam failures and then applied to a real landslide problem.
format Preprint
id arxiv_https___arxiv_org_abs_2501_02941
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Coupled PFEM-DEM Model for Fluid-Granular Flows with Free-Surface Dynamics Applied to Landslides
Leyssens, Thomas
Henry, Michel
Lambrechts, Jonathan
Legat, Vincent
Remacle, Jean-François
Computational Engineering, Finance, and Science
Free surface and granular fluid mechanics problems combine the challenges of fluid dynamics with aspects of granular behaviour. This type of problem is particularly relevant in contexts such as the flow of sediments in rivers, the movement of granular soils in reservoirs, or the interactions between a fluid and granular materials in industrial processes such as silos. The numerical simulation of these phenomena is challenging because the solution depends not only on the multiple phases that strongly interact with each other, but also on the need to describe the geometric evolution of the different interfaces. This paper presents an approach to the simulation of fluid-granular phenomena involving strongly deforming free surfaces. The Discrete Element Method (DEM) is combined with the Particle Finite Element Method (PFEM) and the fluid-grain interface is treated by a two-way coupling between the two phases. The fluid-air interface is solved by a free surface model. The geometric and topological variations are therefore naturally provided by the full Lagrangian description of all phases. The approach is validated on benchmark test cases such as two-phase dam failures and then applied to a real landslide problem.
title A Coupled PFEM-DEM Model for Fluid-Granular Flows with Free-Surface Dynamics Applied to Landslides
topic Computational Engineering, Finance, and Science
url https://arxiv.org/abs/2501.02941