Journal of Modern Physics

Journal of Modern Physics

ISSN Print: 2153-1196
ISSN Online: 2153-120X
www.scirp.org/journal/jmp
E-mail: jmp@scirp.org
"A Hyperbolic Eulerian Model for Dilute Two-Phase Suspensions"
written by Sarah Hank, Richard Saurel, Olivier Le Metayer,
published by Journal of Modern Physics, Vol.2 No.9, 2011
has been cited by the following article(s):
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[1] Hybrid Finite-Volume-Particle Method for Dusty Gas Flows. I: One-Dimensional Case
[2] A Semi-Lagrangian Approach for Dilute Non-Collisional Fluid-Particle Flows
[3] Numerical modeling of the artificial destratification of the thermally stratified water column by air diffusers
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[4] Radiation Effects in Brain-Inspired Computing Systems
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[5] A relaxation model for numerical approximations of the multidimensional pressureless gas dynamics system
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[6] A hyperbolic two-fluid model for compressible flows with arbitrary material-density ratios
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[7] A kinetic-based hyperbolic two-fluid model for binary hard-sphere mixtures
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[8] An implementation of the weighted essential non-oscillatory scheme for numerical approximations of the pressureless gas dynamics equations
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[9] Modélisation des tsunamis: propagation et impact
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[10] Aluminum Combustion Can Drive Instabilities in Solid Rocket Motors: T-Burner Study
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[11] Hybrid Finite-Volume-Particle Method for Dusty Gas Flows
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[12] Combining Advanced Turbulent Mixing and Combustion Models with Advanced Multi-Phase CFD Code to Simulate Detonation and Post-Detonation Bio-Agent Mixing …
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[13] Dust Cloud Combustion for Defeat of Airborne Bio-WMD
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[14] Combining Advanced Turbulent Mixing and Combustion Models with Advanced Multi-Phase CFD Code to Simulate Detonation and Post-Detonation Bio …
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[15] Modeling blast waves, gas and particles dispersion in urban and hilly ground areas
Journal of hazardous materials, 2014
[16] Application of MUSTA Scheme for Simulation of Dilute Particle-Gas Two-Phase Flow
2014
[17] On the quest for a hyperbolic effective-field model of disperse flows
2013
[18] Modélisation et simulation de la dispersion de fluide en milieu fortement hétérogène.
2012
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