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Free Convection Film Flows and Heat Transfer : Models of Laminar Free Convection with Phase Change for Heat and Mass Transfer Analysis. 2nd ed. 2012

種類:
電子ブック
責任表示:
by De-Yi Shang
出版情報:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2012
著者名:
シリーズ名:
Heat and Mass Transfer ;
ISBN:
9783642289835 [3642289835]  CiNii Books  Calil
注記:
Introduction -- Part I – Theoretical Foundation -- Basic Conservation Equations for Laminar Convection -- Review of Falkner-Skan Transformation for Fluid Laminar Free Convection -- A New Similarity Analysis Method for Laminar Free Convection Boundary Layer and Film Flows -- New Method for Treatment of Variable Physical Properties -- Part II – Laminar Free Convection -- Heat Transfer of Laminar Free Convection of Monatomic and Diatomic Gases, Air and Water Vapour with Consideration of Variable Physical Properties -- Heat Transfer of Laminar Free Convection of Polyatomic Gas with Consideration of Variable Physical Properties -- Heat Transfer of Liquid Laminar Free Convection with Consideration of Variable Physical Properties -- Experimental Measurements of Free Convection with Large Temperature Difference -- Heat Transfer of Laminar Free Convection on an Inclined Flat Plate -- Part III – Film Boiling and Condensation -- Complete Mathematical Models of Laminar Free Film Boiling of Liquid with Consideration of Va
This book presents recent developments in our systematic studies of hydrodynamics and heat and mass transfer in laminar free convection, accelerating film boiling and condensation of Newtonian fluids, as well as accelerating film flow of non-Newtonian power-law fluids (FFNF). These new developments provided in this book are (i) novel system of analysis models based on the developed New Similarity Analysis Method; (ii) a system of advanced methods for treatment of gas temperature- dependent physical properties, and liquid temperature- dependent physical properties; (iii) the organically combined models of the governing mathematical models with those on treatment model of variable physical properties; (iv) rigorous approach of overcoming a challenge on accurate solution of three-point boundary value problem related to two-phase film boiling and condensation; and (v) A pseudo-similarity method of dealing with thermal boundary layer of FFNF for greatly simplifies the heat-transfer analysis and numerical calculati
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