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Titlebook: Microscopic Simulations of Complex Hydrodynamic Phenomena; Michel Mareschal,Brad Lee Holian Book 1992 Springer Science+Business Media New

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Molecular Dynamics Simulations of Shock-Induced Chemistry: Application to Chemically Sustained Shockeactions which sustain them. Because of the short time and length scales involved, molecular dynamics simulations can potentially probe their initiation and subsequent interplay with chemistry at the shock front. Such simulations may also clarify how this discrete shock induced chemistry relates to
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Lattice Boltzmann Simulation of High Reynolds Number Fluid Flow in Two Dimensions lattice gas models, but dispense with the Fermi restriction on particle populations in order to remedy the lattice gas defects arising from the lack of Galilean in variance. Comparisons are made with a finite difference code in the simulation of a doubly periodic two dimensional jet at Reynolds num
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Fluid Dynamical Limits of Discrete Kinetic Theoriesibria, conservation, and dissipation through that of entropy is shown to be critical. This relationship is provided by an abstraction of the classical physical entropy as it is manifest in Boltzmann’s .-theorem. Formal derivations of generalized compressible Euler systems and generalized incompressi
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Simple Models of Complex Fluids-gas model of two immiscible fluids, I show how variations of this basic model can simulate a number of considerably different physical systems. Simulations of phase separation, multiphase flow through porous media, emulsions, fluidized particles, and ferrofluids are described.
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Brownian and Stokesian Dynamicsed from numerical simulations based on the solution of Stokes’ equation in the presence of N particles. Both lubrication forces between the particles and many body hydrodynamic interactions are taken into account. The simulation method is discussed and some applications are presented.
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978-1-4899-2316-5Springer Science+Business Media New York 1992
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Microscopic Simulations of Complex Hydrodynamic Phenomena978-1-4899-2314-1Series ISSN 0258-1221
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