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Free Convection Film Flows and Heat Transfer / by De-Yi Shang

データ種別 電子ブック
1st ed. 2006.
出版者 (Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer)
出版年 2006
大きさ XVI, 408 p. 109 illus : online resource
著者標目 *Shang, De-Yi author
SpringerLink (Online service)

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射水-電子 007 EB0003562 Computer Scinece R0 2005-6,2022-3

9783540291282

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一般注記 From the contents Introduction -- Part I: Free Convection -- Basic Conservation Equations for Free Convection -- Brief Review of Previous Analysis Methods for Laminar Free Convection -- Laminar Free Convection of Monatomic and Diatomic Gases, Air and Water Vapor -- Laminar Free Convection of Polyatomic Gas -- Laminar Free Convection of Liquid -- Deviation of Laminar Free Convection Heat Transfer Caused due to Boussinesq Approximation -- Experimental Measurement of Free Convection with Larger Temperature Difference -- Relationship on Free Convection Flow and Heat Transfer between Inclined and Vertical Plates -- Part II: Film Boiling and Condensation -- Saturated Film Boiling -- Subcooled Film Boiling -- Film Condensation Free Convection of Saturated Vapour -- Film Condensation Free Convection of Superheated Vapour -- Laminar Film Condensation of Superheated Steam -- Part III: Falling Film Flow of Non-Newtonian Fluids -- Hydrodynamics of Falling Film Flow of Non-Newtonian Power-law Fluids -- Analyses of pseudo-similarity and boundary layer thickness of the Falling Film Flow -- Heat transfer of the Falling Film Flow
This book presents recent developments in 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). A novel system of analysis models is provided with a developed velocity component method, instead of traditional Falkner-Skan type transformation, and a system of models for treatment of variable thermophysical properties is presented with an innovative temperature parameter method that makes it easier to similarly treat related governing differential equations for consideration of fluid variable thermophysical properties. A pseudo-similarity method is applied for dealing with thermal boundary layer of FFNF, furthermore, with an induced local Prandtl number, which greatly simplifies the heat-transfer analysis and numerical calculation. Based on rigorous theoretical analyses, a system of numerical solutions is formulated by special curve-fitting approaches for simple and reliable predictions of heat and mass transfer and hydrodynamics. In view of a shortage of experimental results for velocity field of free convection boundary layer, recent rigorous experimental measurements are presented covering large temperature differences
HTTP:URL=https://doi.org/10.1007/978-3-540-44809-9
件 名 LCSH:Thermodynamics
LCSH:Engineering
LCSH:Heat engineering
LCSH:Heat transfer
LCSH:Mass transfer
FREE:Thermodynamics
FREE:Technology and Engineering
FREE:Engineering Thermodynamics, Heat and Mass Transfer
分 類 LCC:QC310.15-319
DC23:536.7
書誌ID EB00002950
ISBN 9783540291282

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