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Non-Equilibrium Phenomena near Vapor-Liquid Interfaces

This book presents information on the development of a non-equilibrium approach to the study of heat and mass transfer problems using vapor-liquid interfaces, and demonstrates its application to a broad range of problems. In the process, the following peculiarities become apparent: 1. At vapor conde...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Kryukov, Alexei (Autor), Levashov, Vladimir (Autor), Yulia, Puzina (Autor)
Autor Corporativo: SpringerLink (Online service)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cham : Springer International Publishing : Imprint: Springer, 2013.
Edición:1st ed. 2013.
Colección:SpringerBriefs in Applied Sciences and Technology,
Temas:
Acceso en línea:Texto Completo

MARC

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100 1 |a Kryukov, Alexei.  |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
245 1 0 |a Non-Equilibrium Phenomena near Vapor-Liquid Interfaces  |h [electronic resource] /  |c by Alexei Kryukov, Vladimir Levashov, Puzina Yulia. 
250 |a 1st ed. 2013. 
264 1 |a Cham :  |b Springer International Publishing :  |b Imprint: Springer,  |c 2013. 
300 |a X, 54 p. 24 illus., 9 illus. in color.  |b online resource. 
336 |a text  |b txt  |2 rdacontent 
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505 0 |a Introduction -- Background for pure (one component) substance -- Evaporation and condensation of vapor-gas mixtures -- Motion of vapor-liquid interfaces -- Liquid - vapor interface form determination. 
520 |a This book presents information on the development of a non-equilibrium approach to the study of heat and mass transfer problems using vapor-liquid interfaces, and demonstrates its application to a broad range of problems. In the process, the following peculiarities become apparent: 1. At vapor condensation on the interface from gas-vapor mixture, non-condensable components can lock up the interface surface and condensation stops completely. 2. At the evolution of vapor film on the heater in superfluid helium (He-II), the boiling mass flux density from the vapor-liquid interface is effectively zero at the macroscopic scale. 3. In problems concerning the motion of He-II bridges inside capillaries filled by vapor, in the presence of axial heat flux the He-II bridge cannot move from the heater as would a traditional liquid, but in the opposite direction instead. Thus the heater attracts the superfluid helium bridge. 4. The shape of liquid-vapor interface at film boiling on the axis-symmetric heaters immersed in liquid greatly depends on heat flux in the interface. Thus a new type of hydrostatic problems appears when in contrast to traditional statements the shape of the liquid-vapor interface has a complex profile with a point of inflection and a smooth exit on a free liquid surface. 
650 0 |a Thermodynamics. 
650 0 |a Heat engineering. 
650 0 |a Heat transfer. 
650 0 |a Mass transfer. 
650 0 |a Nuclear engineering. 
650 0 |a Fluid mechanics. 
650 1 4 |a Engineering Thermodynamics, Heat and Mass Transfer. 
650 2 4 |a Nuclear Energy. 
650 2 4 |a Engineering Fluid Dynamics. 
700 1 |a Levashov, Vladimir.  |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
700 1 |a Yulia, Puzina.  |e author.  |4 aut  |4 http://id.loc.gov/vocabulary/relators/aut 
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