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Molecular dynamics studies of granular flow through an aperture
D. Hirshfeld
, Y. Radzyner
, D. C. Rapaport
Department of Physics - at Bar-Ilan University
Bar-Ilan University
Research output
:
Contribution to journal
›
Article
›
peer-review
48
Scopus citations
Overview
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Keyphrases
Aperture Size
50%
Circular Particle
50%
Continuous Feed
50%
Damping Force
100%
Depth Dependence
50%
Equilateral Triangle
50%
Frictional Damping
100%
Grain Shape
50%
Granular Flow
100%
Granular Particles
50%
Gravity-driven Granular Flow
50%
Indentation
50%
Local Stress Distribution
50%
Measurement Accuracy
50%
Molecular Dynamics Method
50%
Molecular Dynamics Study
100%
Non-convex Particles
50%
Observed Behavior
50%
Output Flow
50%
Particle Flow Pattern
50%
Repulsive Interaction
50%
Short-range Interaction
50%
Sliding Motion
50%
Steady-state Conditions
50%
Two-dimensional Gravity
50%
Physics
Flow Distribution
100%
Molecular Dynamics
100%
Molecular Dynamics Study
100%
Steady State
100%
Stress Distribution
100%
Two-Dimensional Gravity
100%
Engineering
Aperture Size
50%
Damping Force
100%
Dynamic Method
50%
Experimental Result
50%
Flow Distribution
50%
Local Stress
50%
Repulsive Interaction
50%
Sliding Motion
50%
State Condition
50%
Two Dimensional
50%