A saturated discrete particle model and characteristic‐based SPH method in granular materials
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- Type
- article
- Published
- 2007-11-12
- Cited by
- 34
- References
- 35
- OpenAlex
- https://openalex.org/W1975499492
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120333948
Keywords
Discretization, Granular material, Compressibility, Mechanics, Smoothed-particle hydrodynamics
References
- Modeling Sand Production with Darcy-Flow Coupled with Discrete Elements
- A discrete particle model and numerical modeling of the failure modes of granular materials
- Fluid Mechanical Description of Fluidized Beds. Equations of Motion
- INCOMPRESSIBLE SPH METHOD FOR SIMULATING NEWTONIAN AND NON-NEWTONIAN FLOWS WITH A FREE SURFACE
- Numerical study of soil collapse behavior by discrete element modelling
- Experimental micromechanical evaluation of strength of granular materials: Effects of particle rolling
- Rolling friction in the dynamic simulation of sandpile formation
- A pore‐scale numerical model for flow through porous media
- Discrete particle simulation of two-dimensional fluidized bed
- Liquid–solid flows using smoothed particle hydrodynamics and the discrete element method
- Dynamic behaviour of saturated porous media; The generalized Biot formulation and its numerical solution
- A Theoretical Study of the Liquid Bridge Forces between Two Rigid Spherical Bodies
- An elastoplastic contact force–displacement model in the normal direction: displacement–driven version
- Modeling Low Reynolds Number Incompressible Flows Using SPH
- Interparticle sliding in the presence of adhesion
- A continuum‐discrete hydromechanical analysis of granular deposit liquefaction
- An efficient calculation method for particle motion in discrete element simulations
- Comparison of different models for tangential forces using the particle dynamics method
- Normal and tangential force-displacement relations for frictional elasto-plastic contact of spheres
- Smoothed particle hydrodynamics
Cited by
- Numerical simulation of internal fluidisation and cavity evolution due to a leaking pipe using the coupled DEM-LBM technique
- Three-dimensional variable-node elements based upon CS-FEM for elastic-plastic analysis
- Fluid–particle flow simulations using two-way-coupled mesoscale SPH–DEM and validation
- Numerical investigations of the coupled DEM-LBM technique with application to leakage-soil interaction due to a leaking pipe
- An efficient three-dimensional adaptive quasicontinuum method using variable-node elements
- Mixing characteristics of wet granular matter in a bladed mixer
- Lagrangian analysis of multiscale particulate flows with the particle finite element method
- Space decomposition based parallelization solutions for the combined finite–discrete element method in 2D
- Pore pressure evolution in deforming granular material: A general formulation and the infinitely stiff approximation
- Discrete simulation and micromechanical analysis of two-dimensional saturated granular media
- Variable-node finite elements with smoothed integration techniques and their applications for multiscale mechanics problems
- Computational Coupled Method for Multiscale and Phase Analysis.
- Multiscale seamless‐domain method for linear elastic analysis of heterogeneous materials
- Simulation of Fluid Flow through Porous Media Using Smoothed Particle Hydrodynamics Method
- Smoothed particle hydrodynamics method for fluid flows, towards industrial applications: Motivations, current state, and challenges
- Comparative study on mesh-based and mesh-less coupled CFD-DEM methods to model particle-laden flow
- An Eulerian model for the motion of granular material with a large Stokes number in fluid flow
- Mesoscale fluid-particle interaction using two-way coupled SPH and the Discrete Element Method
- Mechanisms of Soil Erosion due to Defective Sewer Pipes
- Transport properties of concrete-like granular materials interacted by their microstructures and particle components
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