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Tuesday, July 14, 2020 | History

1 edition of Non-Equilibrium Phenomena near Vapor-Liquid Interfaces found in the catalog.

Non-Equilibrium Phenomena near Vapor-Liquid Interfaces

by Alexei Kryukov

  • 2 Want to read
  • 20 Currently reading

Published by Springer International Publishing, Imprint: Springer in Heidelberg .
Written in English

    Subjects:
  • Engineering,
  • Hydraulic engineering,
  • Nuclear engineering,
  • Heat and Mass Transfer Engineering Thermodynamics,
  • Engineering Fluid Dynamics

  • About the Edition

    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.

    Edition Notes

    Statementby Alexei Kryukov, Vladimir Levashov, Yulia Puzina
    SeriesSpringerBriefs in Applied Sciences and Technology
    ContributionsLevashov, Vladimir, Puzina, Yulia, SpringerLink (Online service)
    Classifications
    LC ClassificationsTJ265, QC319.8-338.5
    The Physical Object
    Format[electronic resource] /
    PaginationX, 54 p. 24 illus., 9 illus. in color.
    Number of Pages54
    ID Numbers
    Open LibraryOL27077519M
    ISBN 109783319000831

    The Enskog‐Vlasov kinetic equation for a dense fluid of spherical molecules interacting by Sutherland potential has been solved numerically to study the vapor‐liquid equilibrium by a single kinetic equation. The equilibrium structure of the vapor‐liquid interface has been obtained at various temperatures. The linear Enskog‐Vlasov equation has also been used to describe the motion of a Cited by: 5. The equilibrium state corresponds to the saturated vapor pressure curve p = p s (T), which is limited by a triple point (T tr P tr) and a critical point (T c,p c) of the substance.(In the presence of surface tension forces at the phase interface, pressures values p (1) and p (g) in coexisting phases are not equal.) The Clausius-Clapeyron equation follows from Eq.

    W Y L I E and C. E. D R Y D E N, Transport phenomena at liquid metal-vapor interfaces using radioactive tracers, Nuclear Applications 5, 2 6 3 - 8 (). esent the Clausing's factor, cross-sectional area, and average molecular velocity, by: 3. This book is an ensemble of six major chapters, an introduction, and a closure on modeling transport phenomena in porous media with applications. Two of the six chapters explain the underlying theories, whereas the rest focus on new applications. Porous media transport is essentially a multi-scale process.

    In two-phase flow, presenting the Chisholm constant (C) as a function of the Laplace number (La) in order to represent the hydraulic diameter (d h) in a dimensionless form overcame the main disadvantage in some correlations available in the open literature, which is the dimensional specification of d h, as it is easy to miscalculate C if the Cited by: 9. Bulk and interfacial properties of n-alkanes and polymers are modeled in the framework of the interfacial statistical associating fluid theory (iSAFT) density functional theory (DFT). The theory reduces to an equivalent of the SAFT equation of state in the bulk, thus making possible the modeling of both bulk and interfacial properties with a single set of parameters.


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Non-Equilibrium Phenomena near Vapor-Liquid Interfaces by Alexei Kryukov Download PDF EPUB FB2

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. Read "Non-Equilibrium Phenomena near Vapor-Liquid Interfaces" by Puzina Yulia available from Rakuten Kobo. This book presents information on the development of a non-equilibrium approach to the study of heat and mass transfer p Brand: Springer International Publishing.

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. springer, 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.

PDF | On Jan 1,Alexei Kryukov and others published Non-Equilibrium Phenomena near Vapor-Liquid Interfaces | Find, read and cite all the research you need on ResearchGate. Lee "Non-Equilibrium Phenomena near Vapor-Liquid Interfaces" por Puzina Yulia disponible en Rakuten Kobo.

This book presents information on the development of a non-equilibrium approach to the study of heat and mass transfer p Brand: Springer International Publishing. : Non-Equilibrium Phenomena near Vapor-Liquid Interfaces (SpringerBriefs in Applied Sciences and Technology) (): Alexei Kryukov, Non-Equilibrium Phenomena near Vapor-Liquid Interfaces book Levashov, Puzina Yulia: Books.

Non-Equilibrium Phenomena near Vapor-Liquid Interfaces - - Alexei Kryukov,Vladimir Levashov,Puzina Yulia - 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. Get this from a library. Non-equilibrium phenomena near vapor-liquid interfaces. [Alexei Kryukov; Vladimir Levashov; Yulia Puzina] -- 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.

Get this from a library. Non-Equilibrium Phenomena near Vapor-Liquid Interfaces. [Alexei Kryukov; Vladimir Levashov; Yulia Puzina] -- 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.

Non-Equilibrium Phenomena near Vapor-Liquid Interfaces (SpringerBriefs in Applied Sciences and Technology) - Kindle edition by Alexei Kryukov, Vladimir Levashov, Puzina Yulia. Download it once and read it on your Kindle device, PC, phones or tablets.

Use features like bookmarks, note taking and highlighting while reading Non-Equilibrium Phenomena near Vapor-Liquid Interfaces (SpringerBriefs. Buy Non-Equilibrium Phenomena near Vapor-Liquid Interfaces (SpringerBriefs in Applied Sciences and Technology) by Alexei Kryukov, Vladimir Levashov, Puzina Yulia (ISBN: ) from Amazon's Book Store.

Everyday low prices and free delivery on eligible orders. Non-Equilibrium Phenomena near Vapor-Liquid Interfaces. Non-Equilibrium Downloads; Part of the SpringerBriefs in Applied Sciences and Technology book series Kryukov A., Levashov V., Puzina Y.

() Motion of Vapor–Liquid Interfaces. In: Non-Equilibrium Phenomena near Vapor-Liquid Interfaces. SpringerBriefs in Applied Sciences and Author: Alexei Kryukov, Vladimir Levashov, Yulia Puzina. Non-Equilibrium Phenomena near Vapor-Liquid Interfaces Résumé 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.

Non-Equilibrium Phenomena near Vapor-Liquid Interfaces Alexei Kryukov 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. from book Non-Equilibrium Phenomena near Vapor-Liquid Interfaces (pp) Evaporation and Condensation of Vapor–Gas Mixtures Chapter March with Reads.

@article{osti_, title = {Liquid-vapor phase-change phenomena}, author = {Carey, V.P.}, abstractNote = {This book presents non-equilibrium thermodynamics and interfacial phenomena associated with vaporization and condensation processes, in addition to fundamentals of heat transfer and fluid flow mechanisms in heat transfer equipment.

Thermal-Hydraulic Analysis of Nuclear Reactors - Ebook written by Bahman Zohuri, Nima Fathi. Read this book using Google Play Books app on your PC, android, iOS devices. Download for offline reading, highlight, bookmark or take notes while you read Thermal-Hydraulic Analysis of Nuclear Reactors.

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Die maximale Verdampfungsgeschwindigkeit des Quecksilbers. Martin Knudsen. Search for more papers by this author Kinetic simulation of the non-equilibrium effects at the liquid-vapor interface, International Journal of Heat and Mass Transfer Non-Equilibrium Phenomena near Vapor-Liquid Interfaces, /_2, ( Cited by:.

Read Liquid-Vapor Phase-Change Phenomena: An Introduction To The Thermophysics Of vaporization.Introduction to vapor/liquid equilibrium Phase equilibrium, and in particular vapor/liquid-equilibrium (VLE), is important for many process engineering applications.

The thermodynamic basis for phase equilibrium is the same as for chemical equilibrium, namely that the Gibbs energy G is minimized at a given T and p (see page ).File Size: KB.Figure 1 also shows the location of low-pressure and high-pressure gas–liquid interfaces within the regime diagram.

The characteristic length scale L is chosen to be the thickness of the interface. The molecular size d is the species molar fraction averaged diameter of a mixture conditioned on the vapor equilibrium corresponding detailed interfacial density structures are Cited by: