Phenomenology and theory of horizontally oscillated granular mixtures

We overview the physics of a granular mixture subject to horizontal oscillations, recently investigated via experiments and molecular dynamics simulations. First we discuss the rich phenomenology exhibited by this system, which encompasses both segregation and dynamical instabilities. Then we show t...

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Published in:The European physical journal. E, Soft matter (Print) Vol. 22; no. 3; pp. 227 - 234
Main Authors: CIAMARRA, M. Pica, CONIGLIO, A, NICODEMI, M
Format: Conference Proceeding Journal Article
Language:English
Published: Heidelberg Springer 01-03-2007
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Abstract We overview the physics of a granular mixture subject to horizontal oscillations, recently investigated via experiments and molecular dynamics simulations. First we discuss the rich phenomenology exhibited by this system, which encompasses both segregation and dynamical instabilities. Then we show that the phenomenology can be explained via an effective interaction approach, by which the driven, non-thermal, granular mixture in mapped into a monodispersed thermal system of particles interacting via an effective potential. After determining the effective interaction we discuss its microscopic origin and investigate how it induces the observed phenomenology. Finally, as much as in thermal fluids, from the effective interaction we derive a Cahn-Hilliard dynamics equation, which appears to capture the essential characteristics of the dynamics of the granular mixture.
AbstractList We overview the physics of a granular mixture subject to horizontal oscillations, recently investigated via experiments and molecular dynamics simulations. First we discuss the rich phenomenology exhibited by this system, which encompasses both segregation and dynamical instabilities. Then we show that the phenomenology can be explained via an effective interaction approach, by which the driven, non-thermal, granular mixture in mapped into a monodispersed thermal system of particles interacting via an effective potential. After determining the effective interaction we discuss its microscopic origin and investigate how it induces the observed phenomenology. Finally, as much as in thermal fluids, from the effective interaction we derive a Cahn-Hilliard dynamics equation, which appears to capture the essential characteristics of the dynamics of the granular mixture.
ArticleNumber 227
Author CONIGLIO, A
CIAMARRA, M. Pica
NICODEMI, M
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  fullname: NICODEMI, M
  organization: Universitá di Napoli Federico II, INFN, Via Cintia, 80129 Napoli, Italy
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Issue 3
Keywords Phenomenological model
Vibration effect
Granular materials
Segregation
Phase separation
Dynamic stability
Granular flow
Theoretical study
Binary mixtures
Horizontal motion
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Snippet We overview the physics of a granular mixture subject to horizontal oscillations, recently investigated via experiments and molecular dynamics simulations....
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SubjectTerms Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Granular solids
Material form
Physics
Rheology
Title Phenomenology and theory of horizontally oscillated granular mixtures
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