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Non-equilibrium Evaporation and Condensation Processes [electronic resource] : Analytical Solutions / by Yuri B. Zudin.

By: Zudin, Yuri B [author.].
Contributor(s): SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Mathematical Engineering: Publisher: Cham : Springer International Publishing : Imprint: Springer, 2021Edition: 3rd ed. 2021.Description: XXIV, 558 p. 153 illus., 1 illus. in color. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9783030675530.Subject(s): Engineering mathematics | Mechanics, Applied | Solids | Engineering Mathematics | Solid MechanicsAdditional physical formats: Printed edition:: No title; Printed edition:: No title; Printed edition:: No titleDDC classification: 620.00151 Online resources: Click here to access online
Contents:
Introduction to the Problem -- Nonequilibrium Effects on the Phase Interface -- Approximate Kinetic Analysis of Strong Evaporation -- Semi-Empirical Model of Strong Evaporation -- Approximate Kinetic Analysis of Strong Condensation -- Linear Kinetic Analysis of Evaporation and Condensation -- Binary Schemes of Vapor Bubble Growth -- Pressure Blocking Effect in a Growing Vapor Bubble -- Evaporating Meniscus on the Interface of Three Phases -- Inetic Molecular Effects with Spheroidal State -- Solution of Special Problems of Film Condensation -- Nucleate Pool Boiling -- Heat Transfer in Superfluid Helium -- Pseudo-Boiling -- Bubble Rising in a Liquid -- Bubbles Dynamics in Liquid -- Heat Transfer to a Disperse Two-Phase Flow -- Thermal-Hydraulic Stability Analysis of Supercritical Fluid -- Heat Transfer in a Pebble Bed.
In: Springer Nature eBookSummary: This present book is concerned with analytical approaches to statement and solution of problems of non-equilibrium evaporation and condensation. From analytical solutions, one is capable to understand and represent in a transparent form the principal laws, especially in the study of a new phenomenon or a process. This is why analytical methods are always employed on the first stage of mathematical modeling. Analytical solutions are also used as test models for validation of results numerical solutions. Non-equilibrium evaporation and condensation processes play an important role in a number of fundamental and applied problems: laser methods for processing of materials, depressurization of the protection cover of nuclear propulsion units, solar radiation on a comet surface, explosive boiling of superheated liquid, thermodynamic principles of superfluid helium. Analytical relations provide an adequate description of the essence of a physical phenomenon. .
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Introduction to the Problem -- Nonequilibrium Effects on the Phase Interface -- Approximate Kinetic Analysis of Strong Evaporation -- Semi-Empirical Model of Strong Evaporation -- Approximate Kinetic Analysis of Strong Condensation -- Linear Kinetic Analysis of Evaporation and Condensation -- Binary Schemes of Vapor Bubble Growth -- Pressure Blocking Effect in a Growing Vapor Bubble -- Evaporating Meniscus on the Interface of Three Phases -- Inetic Molecular Effects with Spheroidal State -- Solution of Special Problems of Film Condensation -- Nucleate Pool Boiling -- Heat Transfer in Superfluid Helium -- Pseudo-Boiling -- Bubble Rising in a Liquid -- Bubbles Dynamics in Liquid -- Heat Transfer to a Disperse Two-Phase Flow -- Thermal-Hydraulic Stability Analysis of Supercritical Fluid -- Heat Transfer in a Pebble Bed.

This present book is concerned with analytical approaches to statement and solution of problems of non-equilibrium evaporation and condensation. From analytical solutions, one is capable to understand and represent in a transparent form the principal laws, especially in the study of a new phenomenon or a process. This is why analytical methods are always employed on the first stage of mathematical modeling. Analytical solutions are also used as test models for validation of results numerical solutions. Non-equilibrium evaporation and condensation processes play an important role in a number of fundamental and applied problems: laser methods for processing of materials, depressurization of the protection cover of nuclear propulsion units, solar radiation on a comet surface, explosive boiling of superheated liquid, thermodynamic principles of superfluid helium. Analytical relations provide an adequate description of the essence of a physical phenomenon. .

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