Transport phenomena fundamentals:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton, Fla.
CRC Press
2010
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Ausgabe: | 2. ed. |
Schriftenreihe: | Chemical industries
127 |
Schlagworte: | |
Online-Zugang: | Publisher description Contributor biographical information Inhaltsverzeichnis |
Beschreibung: | XXIII, 833 S. Ill., graph. Darst. |
ISBN: | 9781420062335 |
Internformat
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Datensatz im Suchindex
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adam_text | Titel: Transport phenomena fundamentals
Autor: Plawsky, Joel L.
Jahr: 2010
Contents
Preface, xix
Author, xxiii
Chapter 1 ¦ Introductory Concepts__________________________________1
1.1 INTRODUCTION 1
1.2 SCOPE OF TRANSPORT PHENOMENA 1
1.3 PRELIMINARY ASSUMPTIONS 7
1.4 EQUILIBRIUM FOUNDATIONS 9
1.5 DEFINING EQUILIBRIUM 11
1.6 FLUID STATICS 16
1.6.1 Pressure Variation in a Static Fluid?Manometers 18
1.7 BUOYANCY AND STABILITY 21
1.8 FLUIDS IN RIGID BODY MOTION 24
Chapter 2 ¦ Fluxes, Gradients, and Transport Properties________________31
2.1 INTRODUCTION 31
2.2 MOMENTUM TRANSPORT?NEWTON S LAW OF VISCOSITY 32
2.3 ENERGY TRANSPORT?FOURIER S LAW OF HEAT CONDUCTION 36
2.4 MASS TRANSPORT? FICK S LAW OF DIFFUSION 38
2.5 CHARGE TRANSPORT ?OHM S LAW OF CONDUCTION 39
2.6 DRIVING FORCE?RESISTANCE CONCEPTS 43
2.7 FLUX LAWS IN TWO AND THREE DIMENSIONS 44
2.8 MECHANISTIC DIFFERENCES AMONG
THE TRANSPORT PHENOMENA 50
2.9 PRIMARY AND SECONDARY FLUXES 53
2.9.1 Momentum 54
2.9.2 Energy 55
xii ¦ Contents
2.9.3 Mass 57
2.9.4 Charge 60
2.10 SYSTEMS INVOLVING FLUXES WITH MULTIPLE GRADIENTS 61
2.11 FAILURE OF THE LINEAR FLUX-GRADIENT LAWS 66
2.11.1 Non-Newtonian Fluids 66
2.11.2 Non-Ohmic Electronic Components 68
2.12 SUMMARY 69
Chapter 3 ¦ Transport Properties of Materials_________________________T7_
3.1 INTRODUCTION 17
3.2 VISCOSITY OF GASES 78
3.2.1 Kinetic Theory Development 78
3.2.2 Kinetic Theory and the Viscosity of a Gas 82
3.2.3 Chapman-Enskog Theory and Gas Viscosity 85
3.3 VISCOSITY OF LIQUIDS?FREE VOLUME THEORY 88
3.4 THERMAL CONDUCTIVITY OF GASES 91
3.4.1 Kinetic Theory 91
3.4.2 Chapman-Enskog Theory 93
3.5 THERMAL CONDUCTIVITY OF LIQUIDS 94
3.6 THERMAL CONDUCTIVITY OF SOLIDS 96
3.6.1 Dielectric Materials 96
3.6.2 Metallic Solids 97
3.7 DIFFUSIVITY OF GASES 98
3.7.1 Kinetic Theory Derivation 98
3.7.2 Chapman-Enskog Theory 101
3.8 DIFFUSIVITY OF LIQUIDS 102
3.9 DIFFUSION IN SOLIDS 107
3.10 CONDUCTIVITY, MOBILITY, AND RESISTIVITY 109
3.10.1 Ionic Mobility and the Conductivity of Solutions 109
3.10.2 Charge Mobility, Conductivity, and Resistivity in Solids 115
3.11 SUMMARY 117
Chapter 4 ¦ One-Dimensional, Steady-State Diffusive Transport_________123
4.1 INTRODUCTION 123
4.2 BOUNDARY CONDITIONS 124
4.2.1 Convection Preview 124
Contents ¦ xiii
4.2.2 Equilibrium Relations and Mass Transfer Coefficients 126
4.2.3 Overall Mass Transfer Coefficients 129
4.2.4 Radiation Preview 130
4.3 BOUNDARY CONDITION CATALOGUE 131
4.4 ONE-DIMENSIONAL, STEADY-STATE DIFFUSIVE TRANSPORT 133
4.4.1 Momentum Transport?Fluid Flow 134
4.4.2 Energy Transport?Heat Transfer 136
4.4.3 Mass Transfer 140
4.5 COMPOSITE MEDIA 143
4.5.1 Planar Systems 144
4.5.2 Cylindrical Systems 154
4.5.3 Spherical Systems 157
4.6 VARIABLE TRANSPORT PROPERTIES, COUPLED TRANSPORT,
AND MULTIPLE FLUXES 159
4.6.1 Composition Dependent DifFusivity 160
4.6.2 Forced Ionic Diffusion 162
4.7 SUMMARY 166
Chapter 5 ¦ Generation__________________________________________177
5.1 INTRODUCTION 177
5.1.1 Generation in Transport Processes 177
5.2 GENERATION ON THE BOUNDARY?BOUNDARY
CONDITIONS 179
5.2.1 Momentum Transport 179
5.2.2 Energy Transport 180
5.2.3 Mass Transport 181
5.2.4 Charge Transport 181
5.3 ONE-DIMENSIONAL TRANSPORT WITH GENERATION
AT THE BOUNDARY 182
5.3.1 Diffusion with Heterogeneous Reaction 182
5.3.2 Heat Transfer with Evaporation 184
5.4 CONSTANT GENERATION TERMS 187
5.4.1 Momentum Transport?Flow between Inclined Plates 187
5.4.2 Energy Transport?Joule Heating in an Insulated Wire 192
5.5 VARIABLE GENERATION AND COUPLED TRANSPORT 195
5.5.1 Simultaneous Diffusion and Reaction 195
xiv ¦ Contents
5.5.2 Simultaneous Heat and Momentum Transport?Natural
Convection 203
5.5.3 Diffusion and Recombination in a Semiconductor 208
5.5.4 Diffusion, Drift, and Recombination 211
5.6 SUMMARY 215
Chapter 6 ¦ Accumulation________________________________________227
6.1 INTRODUCTION 227
6.2 LUMPED CAPACITANCE 228
6.2.1 Charge Transport?Charge Decay in a Conductor 228
6.2.2 Energy Transport?Cooling of a Rivet 232
6.2.3 Mass Transport?Adsorption by a Pellet 236
6.3 INTERNAL GRADIENTS AND GENERALIZED SOLUTIONS 241
6.3.1 Exact and Graphical Solutions 241
6.3.2 Analytic Solutions for Transient Problems with No Convection 248
6.3.2.1 Diffusion and Reaction in a Cylinder 248
6.3.2.2 Startup of Natural Convection between Parallel Plates 255
6.3.2.3 Aerocapture 261
6.4 SEMI-INFINITE SYSTEMS 263
6.4.1 Fluid Flow Next to a Plate Suddenly Set into Motion 264
6.4.2 Heat Transfer Analogs 268
6.4.3 Mass Transfer Analogs 271
6.5 MISCELLANEOUS TRANSIENT EXAMPLE PROBLEMS 274
6.5.1 Transient Evaporation through a Stagnant Vapor 275
6.5.2 Transient Absorption with Instantaneous Reaction 279
6.5.3 Melting and Solidification 281
6.5.4 Periodic Flow in a Rotating Cylindrical System 286
6.5.5 Pulsatile Flow 290
6.6 SUMMARY 292
Chapter 7 . Conservative Transport and Waves_______________________305
7.1 INTRODUCTION 305
7.2 MOMENTUM TRANSPORT 306
7.2.1 Water/Tidal Waves 306
7.2.2 Acoustic Waves 316
7.3 SUMMARY 323
Contents ¦ xv
Chapter 8 ¦ Transport Enhancement Using Extended Surfaces__________329
8.1 INTRODUCTION 329
8.2 HEAT TRANSFER?FINNED SURFACES 330
8.2.1 Rectangular Fins?Constant Cross-Sectional Area 330
8.2.2 Cylindrical Fins?Constant Cross-Sectional Area 337
8.3 MASS TRANSFER?GILLS, LUNGS, AND SO ON 340
8.3.1 Transient Response 345
8.4 DIFFUSION AND REACTION IN A CATALYST PELLET 348
8.4.1 External Mass Transfer Resistance 355
8.4.2 Thermal Effects 356
8.5 SUMMARY 362
Chapter 9 ¦ Multidimensional Effects, Potential Functions, and Fields 373
9.1 INTRODUCTION 373
9.2 LAPLACE S EQUATION AND FIELDS 374
9.2.1 Revisiting the Fin Problem 375
9.2.2 Scalar and Vector Fields 380
9.3 SOLUTIONS OF LAPLACE S EQUATION 382
9.3.1 Cylindrical Coordinates?Diffusion in a Villus 382
9.3.2 Spherical Coordinates?Heat Transfer in a Hemisphere 385
9.3.3 Laplace Equation Solutions Using Complex Variables 389
9.4 GENERATION, SOURCES, SINKS, AND POISSON S
EQUATION 397
9.4.1 Sources, Sinks, and Generation on the Boundary 397
9.4.2 Poisson s Equation and Generation 400
9.4.3 Generation as a Function of the Dependent Variable 406
9.5 TRANSIENT SYSTEMS 410
9.6 SUMMARY 413
Chapter 10 ¦ Convective Transport: Microscopic Balances___________425
10.1 INTRODUCTION 425
10.2 MOMENTUM TRANSPORT 426
10.2.1 Continuity 426
10.2.2 Momentum Balance 429
10.2.3 Mechanical Energy Balance 445
10.2.4 Vorticity Equation 447
xvi ¦ Contents
10.3 ENERGY TRANSPORT 453
10.4 MASS TRANSPORT 463
10.5 CHARGE TRANSPORT 472
10.6 SUMMARY 479
Chapter 11 ¦ Macroscopic or Engineering Balances___________________491
11.1 INTRODUCTION 491
11.2 MACROSCOPIC CONTINUITY EQUATION 492
11.3 MACROSCOPIC MOMENTUM BALANCE 495
11.4 MACROSCOPIC MECHANICAL ENERGY
BALANCE?EXTENDED BERNOULLI S EQUATION 501
11.5 MACROSCOPIC ENERGY BALANCE 511
11.6 MACROSCOPIC SPECIES CONTINUITY EQUATION 525
11.7 MACROSCOPIC CHARGED SPECIES CONTINUITY EQUATION 535
11.8 SUMMARY 538
Chapter 12 ¦ Convective Transport on a Flat Plate (Laminar
___________Boundary Layers)____________________________________547
12.1 INTRODUCTION 547
12.2 CONVECTIVE TRANSPORT COEFFICIENTS, Q, h, kcf and k± 548
12.3 BOUNDARY LAYER DEFINITIONS 550
12.4 DERIVATION OF THE BOUNDARY LAYER EQUATIONS 554
12.5 TRANSPORT ANALOGIES 563
12.5.1 Reynolds Analogy 563
12.5.2 Chilton-Colburn Analogy and Others 564
12.6 HYDRODYNAMIC BOUNDARY LAYERS 566
12.6.1 Forced Convection, Laminar Flow 566
12.6.2 Magnetohydrodynamic Flow 573
12.7 THERMAL BOUNDARY LAYERS 576
12.7.1 Forced Convection, Laminar Flow 577
12.7.2 Free Convection on a Vertical Plate 585
12.7.3 Film Condensation on a Vertical Plate 593
12.8 MASS TRANSFER BOUNDARY LAYERS 598
12.8.1 Effects of Mass Transfer Rate 601
12.8.2 Effect of Chemical Reaction 606
12.9 SIMPLIFIED IONIC BOUNDARY LAYERS 610
12.10 SUMMARY 613
Contents ¦ xvii
Chapter 13 ¦ Convective Transport: Systems with Curvature____________62J[
13.1 INTRODUCTION 621
13.2 FLOW OVER CYLINDERS 621
13.3 FLOW OVER SPHERES 632
13.4 VELOCITY PROFILES IN TUBES 641
13.5 HEAT AND MASS TRANSFER APPLICATIONS 645
13.5.1 Temperature/Concentration Profiles and Heat/Mass
Transfer Coefficients 649
13.5.1.1 Steady State?Constant Surface Heat Flux 649
13.5.1.2 Steady State?Constant Surface Temperature 651
13.5.1.3 Developing Profiles 651
13.6 TAYLOR DISPERSION 660
13.6.1 Effect of Molecular Diffusion on Dispersion 661
13.7 SUMMARY 669
Chapter 14 ¦ Turbulent Boundary Layers____________________________679
14.1 INTRODUCTION 679
14.2 TURBULENT BOUNDARY LAYER STRUCTURE 680
14.3 TRANSPORT EQUATIONS IN TURBULENT FLOW 683
14.3.1 Continuity and Momentum Equations 687
14.3.2 Energy and Species Continuity Equations 688
14.4 REPRESENTING THE REYNOLDS FLUX COMPONENTS 689
14.4.1 Boussinesq Theory 689
14.4.2 Prandtl Mixing Length 692
14.4.3 Von Karman Similarity Assumption 695
14.4.4 Other Mixing Length-Type Descriptions 697
14.4.5 Numerical Simulation 698
14.5 FRICTION FACTORS AND OTHER TRANSPORT COEFFICIENTS 702
14.5.1 Friction Factors 702
14.5.2 Heat Transfer Coefficients 707
14.5.3 Mass Transfer Coefficients 712
14.6 SUMMARY 715
Chapter 15 » Radiative Transport________________ 721
15.1 INTRODUCTION 721
15.2 PRELIMINARY DEFINITIONS 722
xviii ¦ Contents
15.3 MAXWELL S EQUATIONS AND HEAT TRANSFER 723
15.4 ENERGY FLUXES IN RADIATIVE SYSTEMS 728
15.4.1 Incident Radiation?Irradiation 728
15.4.2 Emitted Radiation?-Radiosity 731
15.5 THEBLACKBODY 732
15.5.1 Emissive Power of a Blackbody 733
15.6 THEGRAYBODY 740
15.6.1 KirchhofFs Law 742
15.7 VIEW FACTORS 745
15.7.1 The View Factor Integral 745
15.7.2 Relations between View Factors 747
15.8 RADIATIVE ENERGY EXCHANGE 752
15.8.1 Radiative Heat Transfer between Blackbodies 752
15.8.2 Radiative Heat Transfer between Graybodies 753
15.8.3 Radiation Shields 756
15.8.4 Radiative Heat Transfer in Three Surface Enclosures 760
15.9 SUMMARY 765
Nomenclature, 773
Appendix A: Vector Mathematics, 785
Appendix B: Mathematical Functions and Heisler Charts, 789
Appendix C: Exact Solution to the Boundary Layer Equations, 795
Appendix D: Thermal and Transport Properties of Materials, 799
Index, 815
|
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id | DE-604.BV035969621 |
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isbn | 9781420062335 |
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series2 | Chemical industries |
spelling | Plawsky, Joel L. Verfasser aut Transport phenomena fundamentals Joel Plawsky 2. ed. Boca Raton, Fla. CRC Press 2010 XXIII, 833 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Chemical industries 127 Transport theory Transportprozess (DE-588)4185932-7 gnd rswk-swf Transporttheorie (DE-588)4185936-4 gnd rswk-swf Transporttheorie (DE-588)4185936-4 s DE-604 Transportprozess (DE-588)4185932-7 s 1\p DE-604 Chemical industries 127 (DE-604)BV001901142 127 http://www.loc.gov/catdir/enhancements/fy0905/2008054997-d.html Publisher description http://www.loc.gov/catdir/enhancements/fy0913/2008054997-b.html Contributor biographical information HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018863656&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Plawsky, Joel L. Transport phenomena fundamentals Chemical industries Transport theory Transportprozess (DE-588)4185932-7 gnd Transporttheorie (DE-588)4185936-4 gnd |
subject_GND | (DE-588)4185932-7 (DE-588)4185936-4 |
title | Transport phenomena fundamentals |
title_auth | Transport phenomena fundamentals |
title_exact_search | Transport phenomena fundamentals |
title_full | Transport phenomena fundamentals Joel Plawsky |
title_fullStr | Transport phenomena fundamentals Joel Plawsky |
title_full_unstemmed | Transport phenomena fundamentals Joel Plawsky |
title_short | Transport phenomena fundamentals |
title_sort | transport phenomena fundamentals |
topic | Transport theory Transportprozess (DE-588)4185932-7 gnd Transporttheorie (DE-588)4185936-4 gnd |
topic_facet | Transport theory Transportprozess Transporttheorie |
url | http://www.loc.gov/catdir/enhancements/fy0905/2008054997-d.html http://www.loc.gov/catdir/enhancements/fy0913/2008054997-b.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018863656&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV001901142 |
work_keys_str_mv | AT plawskyjoell transportphenomenafundamentals |