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Granular Gas Dynamics [electronic resource] / edited by Thorsten Pöschel, Nikolai V. Brilliantov.

Lecture Notes in Physics 1969-2012 Archive Available online

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Format:
Book
Contributor:
Pöschel, Thorsten., Editor.
Brilliantov, Nikolai V., Editor.
Series:
Lecture Notes in Physics, 0075-8450 ; 624
Language:
English
Subjects (All):
Statistical physics.
Dynamics.
Field theory (Physics).
Amorphous substances.
Complex fluids.
Phase transformations (Statistical physics).
Mechanics.
Mechanics, Applied.
Complex Systems.
Classical and Continuum Physics.
Soft and Granular Matter, Complex Fluids and Microfluidics.
Phase Transitions and Multiphase Systems.
Theoretical and Applied Mechanics.
Statistical Physics and Dynamical Systems.
Local Subjects:
Complex Systems.
Classical and Continuum Physics.
Soft and Granular Matter, Complex Fluids and Microfluidics.
Phase Transitions and Multiphase Systems.
Theoretical and Applied Mechanics.
Statistical Physics and Dynamical Systems.
Physical Description:
1 online resource (XIV, 369 p.)
Edition:
1st ed. 2003.
Place of Publication:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2003.
Language Note:
English
Summary:
While there is not yet any general theory for granular materials, significant progress has been achieved for dilute systems, also called granular gases. The contributions in this book address both the kinetic approach one using the Boltzmann equation for dissipative gases as well as the less established hydrodynamic description. The last part of the book is devoted to driven granular gases and their analogy with molecular fluids. Care has been taken so as to present the material in a pedagogical and self-contained way and this volume will thus be particularly useful to nonspecialists and newcomers to the field.
Contents:
Part I: Kinetic Theory
Asymptotic Solutions of the Nonlinear Boltzmann Equation for Dissipative Systems
The Homogeneous Cooling State Revisited
The Inelastic Maxwell Model
Cooling Granular Gases: The Role of Correlations in the Velocity Field
Self-Similar Asymptotics for the Boltzmann Equation With Inelastic Interactions
Kinetic Integrals in the Kinetic Theory of Dissipative Gases
Kinetics of Fragmenting Freely Evolving Granular Gases
Part II: Granular Hydrodynamics
Shock Waves in Granular Gases
Linearized Boltzmann Equation and Hydrodynamics for Granular Gases
Development of a Density Invesion in Driven Granular Gases
Kinetic Theory for Inertia Flows of Dilute Turbulent Gas-Solids Two-Phase Mixtures
Part III: Driven Gases and Structure Formation
Driven Granular Gases
Van der Waals-Like Transition in Fluidized Granular Matter
Birth and Sudden Death of Granular Cluster
Vibrated Granular Media as Experimentally Realized Granular Gases.
Notes:
Bibliographic Level Mode of Issuance: Monograph
ISBN:
3-540-39843-0

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