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Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation
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Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation

Auteur : William B Krantz
Éditeur : [New York] : AIChE ; Hoboken, N.J. : Wiley-Interscience, ©2007.
Édition/format :   Livre : AnglaisVoir toutes les éditions et les formats
Résumé :

Scaling Analysis in Modeling Transport and Reaction Processes is the first book to provide in-depth information on systematic scaling analysis in diverse disciplines. It is logically divided into  Lire la suite...

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Détails

Type d’ouvrage : Ressource Internet
Format : Livre, Ressource Internet
Tous les auteurs / collaborateurs : William B Krantz
ISBN : 9780471772613 0471772615
Numéro OCLC : 71350573
Description : xvi, 529 p. : ill. ; 25 cm.
Contenu : 1. Introduction. --
1.1 Motivation for Using Scaling Analysis. --
1.2 Organization of this Book. --
2. Systematic Method for Scaling Analysis. --
2.1 Introduction. --
2.2 Mathematical Basis for Scaling Analysis. --
2.3 Order of One Scaling Analysis. --
2.4 The Scaling Alternative for Dimensional Analysis. --
2.5 Summary. --
3. Applications in Fluid Dynamics. --
3.1 Introduction. --
3.2 Fully Developed Laminar Flow. --
3.3 Creeping and Lubrication Flow Approximations. --
3.4 Boundary Layer Flow Approximation. --
3.5 Quasi Steady State Flow Approximation. --
3.6 Flows with End and Sidewall Effects. --
3.7 Free Surface Flow. --
3.8 Porous Media Flow. --
3.9 Compressible Fluid Flow. --
3.10 Dimensional Analysis Correlation for the Terminal Velocity of a Sphere. --
3.11 Summary. --
3.E Example Problems. --
3.E.1 Gravity Driven Laminar Film Flow down a Vertical Wall. --
3.E.2 Flow between Two Approaching Parallel Circular Flat Plates. --
3.E.3 Design of a Hydraulic Ram. --
3.E.4 Rotating Disk Flow. --
3.E.5 Entry Region Flow between Parallel Plates. --
3.E.6 Rotating Flow in an Annulus with End Effects. --
3.E.7 Impulsively Initiated Pressure Driven Laminar Tube Flow. --
3.E.8 Laminar Cylindrical Jet Flow. --
3.E.9 Gravity Driven Film Flow over Saturated Porous Media. --
3.E.10 Flow in a Hollow Fiber Membrane with Permeation. --
3.E.11 Falling Head Method for Determining Soil Permeability. --
3.P Practice Problems. --
3.P.1 Alternate Scales for Laminar Flow between Stationary and Moving Parallel Plates. --
3.P.2 Laminar Flow between Stationary and Moving Parallel Plates. --
3.P.3 Gravity and Pressure Driven Laminar Flow in a Vertical Tube. --
3.P.4 Axial Flow in a Rotating Tube. --
3.P.5 Laminar Flow between Converging Flat Plates. --
3.P.6 Laminar Flow between Diverging Flat Plates. --
3.P.7 Laminar Flow in a Diverging Nozzle. --
3.P.8 Steady State Flow between Parallel Circular Disks. --
3.P.9 Unsteady State Flow between Parallel Circular Disks . --
3.P.10 Steady State Flow between Spinning Parallel Circular Disks. --
3.P.11 Lubrication Flow Approximation for a Hydraulic Ram. --
3.P.12 Flow in a Rotating Disk Viscometer. --
3.P.13 Flow in an Oscillating Disk Viscometer. --
3.P.14 Falling Needle Viscometer. --
3.P.15 Leading Edge Considerations for Laminar Boundary Layer Flow. --
3.P.16 Laminar Boundary Layer Flow with Blowing. --
3.P.17 Laminar Boundary Layer Flow with Suction. --
3.P.18 Entry Region Laminar Flow in a Cylindrical Tube. --
3.P.19 Pressure Driven Flow in an Oscillating Tube. --
3.P.20 Countercurrent Liquid Gas Flow in a Cylindrical Tube. --
3.P.21 Stratified Flow of Two Immiscible Liquid Layers. --
3.P.22 Laminar Cylindrical Jet Flow. --
3.P.23 Free Surface Flow down a Plane with Condensation. --
3.P.24 Free Surface Flow over a Horizontal Filter. --
3.P.25 Curtain Coating Flow. --
3.P.26 Flow in a Semi Infinite Porous Media Bounded by a Flat Plate. --
3.P.27 Porous Media Flow between Parallel Flat Plates. --
3.P.28 Gravity Driven Film.
Responsabilité : William B. Krantz.
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