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This monograph presents a comprehensive treatment of analytical solutions to problems in the area of non-equilibrium evaporation and condensation processes. The book covers, among others, topics such as systems of conversation equations for molecular fluxes of mass, momentum and energy within the Knudsen layer, spherical growth of vapor bubbles in volumes of highly superheated liquid. The target audience primarily comprises research experts in the field of thermodynamics and fluid dynamics, but the book may also be beneficial for graduate students alike.
This monograph presents a comprehensive treatment of analytical solutions to problems in the area of non-equilibrium evaporation and condensation processes. The book covers, among others, topics such as systems of conversation equations for molecular fluxes of mass, momentum and energy within the Knudsen layer, spherical growth of vapor bubbles in volumes of highly superheated liquid. The target audience primarily comprises research experts in the field of thermodynamics and fluid dynamics, but the book may also be beneficial for graduate students alike.
1 Introduction to the Problem.- 2 Nonequilibrium Effects on the Phase Interface.- 3 Approximate Kinetic Analysis of Strong Evaporation.- 4 Semi-Empirical Model of Strong Evaporation.- 5 Approximate Kinetic Analysis of Strong Condensation.- 6 Linear Kinetic Analysis of Evaporation and Condensation.- 7 Binary Schemes of V apor Bubble Growth.- 8 Pressure Blocking Effect in a Growing Vapor Bubble.- 9 Evaporating Meniscus on the Interface of Three Phases.- 10 Kinetic Molecular Effects with Spheroidal State.- 11 Flow Around a Cylinder (Vapor Condensation).- Appendix A: Heat Transfer During Film Boiling.- Appendix B: Heat Transfer in a Pebble Bed.- Index. mes New Roman","serif"; mso-bidi-font-family:SMinionPlus;mso-ansi-language:EN-US">
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.
1 Introduction to the Problem.- 2 Nonequilibrium Effects on the Phase Interface.- 3 Approximate Kinetic Analysis of Strong Evaporation.- 4 Semi-Empirical Model of Strong Evaporation.- 5 Approximate Kinetic Analysis of Strong Condensation.- 6 Linear Kinetic Analysis of Evaporation and Condensation.- 7 Binary Schemes of V apor Bubble Growth.- 8 Pressure Blocking Effect in a Growing Vapor Bubble.- 9 Evaporating Meniscus on the Interface of Three Phases.- 10 Kinetic Molecular Effects with Spheroidal State.- 11 Flow Around a Cylinder (Vapor Condensation).- Appendix A: Heat Transfer During Film Boiling.- Appendix B: Heat Transfer in a Pebble Bed.- Index. mes New Roman","serif"; mso-bidi-font-family:SMinionPlus;mso-ansi-language:EN-US">
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.
Rezensionen
"It presents useful information to a wide range of scientists and engineers working in space and energy industries as well as graduate students of physics, mechanical and chemical engineering. The book is recommended for the libraries of the university and research laboratories." (K. N. Shukla, zbMATH 1468.80001, 2021)
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