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Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation
We study the evolution of a two component fluid consisting of ``blue'' and ``red'' particles which interact via strong short range (hard core) and weak long range pair potentials. At low temperatures the equilibrium state of the system is one in which there are two coexisting pha...
Autores principales: | , , , |
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Lenguaje: | eng |
Publicado: |
2000
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/454181 |
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author | Bastea, S Esposito, R Lebowitz, J L Marra, R |
author_facet | Bastea, S Esposito, R Lebowitz, J L Marra, R |
author_sort | Bastea, S |
collection | CERN |
description | We study the evolution of a two component fluid consisting of ``blue'' and ``red'' particles which interact via strong short range (hard core) and weak long range pair potentials. At low temperatures the equilibrium state of the system is one in which there are two coexisting phases. Under suitable choices of space-time scalings and system parameters we first obtain (formally) a mesoscopic kinetic Vlasov-Botzmann equation for the one particle position and velocity distribution functions, appropriate for a description of the phase segregation kinetics in this system. Further scalings then yield Vlasov-Euler and incompressible Vlasov-Navier-Stokes equations. We also obtain, via the usual truncation of the Chapman-Enskog expansion, compressible Vlasov-Navier-Stokes equations. |
id | cern-454181 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2000 |
record_format | invenio |
spelling | cern-4541812019-09-30T06:29:59Zhttp://cds.cern.ch/record/454181engBastea, SEsposito, RLebowitz, J LMarra, RBinary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic EquationGeneral Theoretical PhysicsWe study the evolution of a two component fluid consisting of ``blue'' and ``red'' particles which interact via strong short range (hard core) and weak long range pair potentials. At low temperatures the equilibrium state of the system is one in which there are two coexisting phases. Under suitable choices of space-time scalings and system parameters we first obtain (formally) a mesoscopic kinetic Vlasov-Botzmann equation for the one particle position and velocity distribution functions, appropriate for a description of the phase segregation kinetics in this system. Further scalings then yield Vlasov-Euler and incompressible Vlasov-Navier-Stokes equations. We also obtain, via the usual truncation of the Chapman-Enskog expansion, compressible Vlasov-Navier-Stokes equations.EXT-2000-189IHES-P-2000-35oai:cds.cern.ch:4541812000-04-01 |
spellingShingle | General Theoretical Physics Bastea, S Esposito, R Lebowitz, J L Marra, R Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation |
title | Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation |
title_full | Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation |
title_fullStr | Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation |
title_full_unstemmed | Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation |
title_short | Binary Fluids with Long Range Segregating Interaction I: Derivation of Kinetic and Hydrodynamic Equation |
title_sort | binary fluids with long range segregating interaction i: derivation of kinetic and hydrodynamic equation |
topic | General Theoretical Physics |
url | http://cds.cern.ch/record/454181 |
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