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Vapor-Liquid Interfaces, Bubbles and Droplets : Fundamentals and Applications / by Shigeo Fujikawa, Takeru Yano, Masao Watanabe.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Heat and Mass TransferEditor: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2011Descripción: xiv, 230 páginas recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783642180385
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • TA357-359
Recursos en línea:
Contenidos:
Historical Review on Vapor-Liquid Interfaces -- Molecular Dynamics of Vapor-Liquid Interfaces with Evaporation and Condensation -- Boundary Conditions for Fluid-Dynamics-Type Set of Equations Based on Molecular Gas Dynamics -- Measurement of Evaporation and Condensation Coefficients by Shock Wave and Sound Resonance Methods -- Applications to Bubbles and Droplets -- Appendices.
Resumen: Physically correct boundary conditions on vapor-liquid interfaces are essential in order to make an analysis of flows of a liquid including bubbles or of a gas including droplets. Suitable boundary conditions do not exist at the present time. This book is concerned with the kinetic boundary condition for both the plane and curved vapor-liquid interfaces, and the fluid dynamics boundary condition for Navier-Stokes(fluid dynamics) equations. The kinetic boundary condition is formulated on the basis of molecular dynamics simulations and the fluid dynamics boundary condition is derived by a perturbation analysis of Gaussian-BGK Boltzmann equation applicable to polyatomic gases. The fluid dynamics boundary condition is applied to actual flow problems of bubbles in a liquid and droplets in a gas.
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Springer eBooks

Historical Review on Vapor-Liquid Interfaces -- Molecular Dynamics of Vapor-Liquid Interfaces with Evaporation and Condensation -- Boundary Conditions for Fluid-Dynamics-Type Set of Equations Based on Molecular Gas Dynamics -- Measurement of Evaporation and Condensation Coefficients by Shock Wave and Sound Resonance Methods -- Applications to Bubbles and Droplets -- Appendices.

Physically correct boundary conditions on vapor-liquid interfaces are essential in order to make an analysis of flows of a liquid including bubbles or of a gas including droplets. Suitable boundary conditions do not exist at the present time. This book is concerned with the kinetic boundary condition for both the plane and curved vapor-liquid interfaces, and the fluid dynamics boundary condition for Navier-Stokes(fluid dynamics) equations. The kinetic boundary condition is formulated on the basis of molecular dynamics simulations and the fluid dynamics boundary condition is derived by a perturbation analysis of Gaussian-BGK Boltzmann equation applicable to polyatomic gases. The fluid dynamics boundary condition is applied to actual flow problems of bubbles in a liquid and droplets in a gas.

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