Computational models for polydisperse particulate and multiphase systems / / Daniele L. Marchisio, Rodney O. Fox [[electronic resource]]
| Computational models for polydisperse particulate and multiphase systems / / Daniele L. Marchisio, Rodney O. Fox [[electronic resource]] |
| Autore | Marchisio Daniele L. |
| Pubbl/distr/stampa | Cambridge : , : Cambridge University Press, , 2013 |
| Descrizione fisica | 1 online resource (xxxviii, 508 pages) : digital, PDF file(s) |
| Disciplina | 532/.56 |
| Collana | Cambridge series in chemical engineering |
| Soggetto topico |
Multiphase flow - Mathematical models
Chemical reactions - Mathematical models Transport theory Dispersion - Mathematical models |
| ISBN |
1-107-23354-2
1-68015-991-7 1-107-33627-9 1-139-01659-8 1-107-33295-8 1-107-33227-3 1-107-33461-6 1-299-40321-2 1-107-33544-2 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
""Cover""; ""Contents""; ""Preface""; ""Notation""; ""1 Introduction""; ""1.1 Disperse multiphase flows""; ""1.2 Two example systems""; ""1.2.1 The population-balance equation for fine particles""; ""1.2.2 The kinetic equation for gas--particle flow""; ""1.3 The mesoscale modeling approach""; ""1.3.1 Relation to microscale models""; ""1.3.2 Number-density functions""; ""1.3.3 The kinetic equation for the disperse phase""; ""1.3.4 Closure at the mesoscale level""; ""1.3.5 Relation to macroscale models""; ""1.4 Closure methods for moment-transport equations""; ""1.4.1 Hydrodynamic models""
""1.4.2 Moment methods""""1.5 A road map to Chapters 2--8""; ""2 Mesoscale description of polydisperse systems""; ""2.1 Number-density functions (NDF)""; ""2.1.1 Length-based NDF""; ""2.1.2 Volume-based NDF""; ""2.1.3 Mass-based NDF""; ""2.1.4 Velocity-based NDF""; ""2.2 The NDF transport equation""; ""2.2.1 The population-balance equation (PBE)""; ""2.2.2 The generalized population-balance equation (GPBE)""; ""2.2.3 The closure problem""; ""2.3 Moment-transport equations""; ""2.3.1 Moment-transport equations for a PBE""; ""2.3.2 Moment-transport equations for a GPBE"" ""2.4 Flow regimes for the PBE""""2.4.1 Laminar PBE""; ""2.4.2 Turbulent PBE""; ""2.5 The moment-closure problem""; ""3 Quadrature-based moment methods""; ""3.1 Univariate distributions""; ""3.1.1 Gaussian quadrature""; ""3.1.2 The product--difference (PD) algorithm""; ""3.1.3 The Wheeler algorithm""; ""3.1.4 Consistency of a moment set""; ""3.2 Multivariate distributions""; ""3.2.1 Brute-force QMOM""; ""3.2.2 Tensor-product QMOM""; ""3.2.3 Conditional QMOM""; ""3.3 The extended quadrature method of moments (EQMOM)""; ""3.3.1 Relationship to orthogonal polynomials"" ""3.3.2 Univariate EQMOM""""3.3.3 Evaluation of integrals with the EQMOM""; ""3.3.4 Multivariate EQMOM""; ""3.4 The direct quadrature method of moments (DQMOM)""; ""4 The generalized population-balance equation""; ""4.1 Particle-based definition of the NDF""; ""4.1.1 Definition of the NDF for granular systems""; ""4.1.2 NDF estimation methods""; ""4.1.3 Definition of the NDF for fluid--particle systems""; ""4.2 From the multi-particle--fluid joint PDF to the GPBE""; ""4.2.1 The transport equation for the multi-particle joint PDF"" ""4.2.2 The transport equation for the single-particle joint PDF""""4.2.3 The transport equation for the NDF""; ""4.2.4 The closure problem""; ""4.3 Moment-transport equations""; ""4.3.1 A few words about phase-space integration""; ""4.3.2 Disperse-phase number transport""; ""4.3.3 Disperse-phase volume transport""; ""4.3.4 Fluid-phase volume transport""; ""4.3.5 Disperse-phase mass transport""; ""4.3.6 Fluid-phase mass transport""; ""4.3.7 Disperse-phase momentum transport""; ""4.3.8 Fluid-phase momentum transport""; ""4.3.9 Higher-order moment transport"" ""4.4 Moment closures for the GPBE"" |
| Altri titoli varianti | Computational Models for Polydisperse Particulate & Multiphase Systems |
| Record Nr. | UNINA-9910464960403321 |
Marchisio Daniele L.
|
||
| Cambridge : , : Cambridge University Press, , 2013 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Computational models for polydisperse particulate and multiphase systems / / Daniele L. Marchisio, Rodney O. Fox [[electronic resource]]
| Computational models for polydisperse particulate and multiphase systems / / Daniele L. Marchisio, Rodney O. Fox [[electronic resource]] |
| Autore | Marchisio Daniele L. |
| Pubbl/distr/stampa | Cambridge : , : Cambridge University Press, , 2013 |
| Descrizione fisica | 1 online resource (xxxviii, 508 pages) : digital, PDF file(s) |
| Disciplina | 532/.56 |
| Collana | Cambridge series in chemical engineering |
| Soggetto topico |
Multiphase flow - Mathematical models
Chemical reactions - Mathematical models Transport theory Dispersion - Mathematical models |
| ISBN |
1-107-23354-2
1-68015-991-7 1-107-33627-9 1-139-01659-8 1-107-33295-8 1-107-33227-3 1-107-33461-6 1-299-40321-2 1-107-33544-2 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
""Cover""; ""Contents""; ""Preface""; ""Notation""; ""1 Introduction""; ""1.1 Disperse multiphase flows""; ""1.2 Two example systems""; ""1.2.1 The population-balance equation for fine particles""; ""1.2.2 The kinetic equation for gas--particle flow""; ""1.3 The mesoscale modeling approach""; ""1.3.1 Relation to microscale models""; ""1.3.2 Number-density functions""; ""1.3.3 The kinetic equation for the disperse phase""; ""1.3.4 Closure at the mesoscale level""; ""1.3.5 Relation to macroscale models""; ""1.4 Closure methods for moment-transport equations""; ""1.4.1 Hydrodynamic models""
""1.4.2 Moment methods""""1.5 A road map to Chapters 2--8""; ""2 Mesoscale description of polydisperse systems""; ""2.1 Number-density functions (NDF)""; ""2.1.1 Length-based NDF""; ""2.1.2 Volume-based NDF""; ""2.1.3 Mass-based NDF""; ""2.1.4 Velocity-based NDF""; ""2.2 The NDF transport equation""; ""2.2.1 The population-balance equation (PBE)""; ""2.2.2 The generalized population-balance equation (GPBE)""; ""2.2.3 The closure problem""; ""2.3 Moment-transport equations""; ""2.3.1 Moment-transport equations for a PBE""; ""2.3.2 Moment-transport equations for a GPBE"" ""2.4 Flow regimes for the PBE""""2.4.1 Laminar PBE""; ""2.4.2 Turbulent PBE""; ""2.5 The moment-closure problem""; ""3 Quadrature-based moment methods""; ""3.1 Univariate distributions""; ""3.1.1 Gaussian quadrature""; ""3.1.2 The product--difference (PD) algorithm""; ""3.1.3 The Wheeler algorithm""; ""3.1.4 Consistency of a moment set""; ""3.2 Multivariate distributions""; ""3.2.1 Brute-force QMOM""; ""3.2.2 Tensor-product QMOM""; ""3.2.3 Conditional QMOM""; ""3.3 The extended quadrature method of moments (EQMOM)""; ""3.3.1 Relationship to orthogonal polynomials"" ""3.3.2 Univariate EQMOM""""3.3.3 Evaluation of integrals with the EQMOM""; ""3.3.4 Multivariate EQMOM""; ""3.4 The direct quadrature method of moments (DQMOM)""; ""4 The generalized population-balance equation""; ""4.1 Particle-based definition of the NDF""; ""4.1.1 Definition of the NDF for granular systems""; ""4.1.2 NDF estimation methods""; ""4.1.3 Definition of the NDF for fluid--particle systems""; ""4.2 From the multi-particle--fluid joint PDF to the GPBE""; ""4.2.1 The transport equation for the multi-particle joint PDF"" ""4.2.2 The transport equation for the single-particle joint PDF""""4.2.3 The transport equation for the NDF""; ""4.2.4 The closure problem""; ""4.3 Moment-transport equations""; ""4.3.1 A few words about phase-space integration""; ""4.3.2 Disperse-phase number transport""; ""4.3.3 Disperse-phase volume transport""; ""4.3.4 Fluid-phase volume transport""; ""4.3.5 Disperse-phase mass transport""; ""4.3.6 Fluid-phase mass transport""; ""4.3.7 Disperse-phase momentum transport""; ""4.3.8 Fluid-phase momentum transport""; ""4.3.9 Higher-order moment transport"" ""4.4 Moment closures for the GPBE"" |
| Altri titoli varianti | Computational Models for Polydisperse Particulate & Multiphase Systems |
| Record Nr. | UNINA-9910789316403321 |
Marchisio Daniele L.
|
||
| Cambridge : , : Cambridge University Press, , 2013 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Computer-aided modeling of reactive systems [[electronic resource] /] / Warren E. Stewart, Michael Caracotsios
| Computer-aided modeling of reactive systems [[electronic resource] /] / Warren E. Stewart, Michael Caracotsios |
| Autore | Stewart Warren E. <1924-> |
| Pubbl/distr/stampa | Hoboken, N.J., : Wiley-Interscience, : AIChE, c2008 |
| Descrizione fisica | 1 online resource (288 p.) |
| Disciplina | 541/.39015118 |
| Altri autori (Persone) | CaracotsiosMichael |
| Soggetto topico |
Chemical reactions - Mathematical models
Chemical reactions - Computer simulation |
| ISBN |
1-281-37401-6
9786611374013 0-470-28203-7 0-470-28202-9 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Computer-Aided Modeling of Reactive Systems; Contents; Chapter 1. Overview; REFERENCES and FURTHER READING; Chapter 2. Chemical Reaction Models; 2.1 STOICHIOMETRY OF REACTION SCHEMES; 2.2 COMPUTABILITY OF REACTION RATES FROM DATA; 2.3 EQUILIBRIA OF CHEMICAL REACTIONS; 2.4 KINETICS OF ELEMENTARY STEPS; 2.5 PROPERTIES OF REACTION NETWORKS; 2.6 EVIDENCE FOR REACTION STEPS; PROBLEMS; REFERENCES and FURTHER READING; Chapter 3. Chemical Reactor Models; 3.1 MACROSCOPIC CONSERVATION EQUATIONS; 3.1.1 Material Balances; 3.1.2 Total Energy Balance; 3.1.3 Momentum Balance; 3.1.4 Mechanical Energy Balance
3.2 HEAT AND MASS TRANSFER IN FIXED BEDS3.3 INTERFACIAL STATES IN FIXED-BED REACTORS; 3.4 MATERIAL TRANSPORT IN POROUS CATALYSTS; 3.4.1 Material Transport in a Cylindrical Pore Segment; 3.4.2 Material Transport in a Pore Network; 3.4.3 Working Models of Flow and Diffusion in Isotropic Media; 3.4.4 Discussion; 3.4.5 Transport and Reaction in Porous Catalysts; 3.5 GAS PROPERTIES AT LOW PRESSURES; 3.6 NOTATION; REFERENCES and FURTHER READING; Chapter 4. Introduction to Probability and Statistics; 4.1 STRATEGY OF DATA-BASED INVESTIGATION; 4.2 BASIC CONCEPTS IN PROBABILITY THEORY 4.3 DISTRIBUTIONS OF SUMS OF RANDOM VARIABLES4.4 MULTIRESPONSE NORMAL ERROR DISTRIBUTIONS; 4.5 STATISTICAL INFERENCE AND CRITICISM; PROBLEMS; REFERENCES and FURTHER READING; Chapter 5. Introduction to Bayesian Estimation; 5.1 THE THEOREM; 5.2 BAYESIAN ESTIMATION WITH INFORMATIVE PRIORS; 5.3 INTRODUCTION TO NONINFORMATIVE PRIORS; 5.4 JEFFREYS PRIOR FOR ONE-PARAMETER MODELS; 5.5 JEFFREYS PRIOR FOR MULTIPARAMETER MODELS; 5.6 SUMMARY; PROBLEMS; REFERENCES and FURTHER READING; Chapter 6. Process Modeling with Single-Response Data; 6.1 THE OBJECTIVE FUNCTION S(θ) 6.2 WEIGHTING AND OBSERVATION FORMS6.3 PARAMETRIC SENSITIVITIES; NORMAL EQUATIONS; 6.4 CONSTRAINED MINIMIZATION OF S(θ); 6.4.1 The Quadratic Programming Algorithm GRQP; 6.4.2 The Line Search Algorithm GRSl; 6.4.3 Final Expansions Around θ; 6.5 TESTING THE RESIDUALS; 6.6 INFERENCES FROM THE POSTERIOR DENSITY; 6.6.1 Inferences for the Parameters; 6.6.2 Inferences for Predicted Functions; 6.6.3 Discrimination of Rival Models by Posterior Probability; 6.7 SEQUENTIAL PLANNING OF EXPERIMENTS; 6.7.1 Planning for Parameter Estimation; 6.7.2 Planning for Auxiliary Function Estimation 6.7.3 Planning for Model Discrimination6.7.4 Combined Discrimination and Estimation; 6.7.5 Planning for Model Building; 6.8 EXAMPLES; 6.9 SUMMARY; 6.10 NOTATION; PROBLEMS; REFERENCES and FURTHER READING; Chapter 7. Process Modeling with Multiresponse Data; 7.1 PROBLEM TYPES; 7.2 OBJECTIVE FUNCTION; 7.2.1 Selection of Working Responses; 7.2.2 Derivatives of Eqs. (7.2-1) and (7.2-3); 7.2.3 Quadratic Expansions; Normal Equations; 7.3 CONSTRAINED MINIMIZATION OF s(θ); 7.3.1 Final Expansions Around θ; 7.4 TESTING THE RESIDUALS; 7.5 POSTERIOR PROBABILITIES AND REGIONS 7.5.1 Inferences Regarding Parameters |
| Record Nr. | UNINA-9910144139203321 |
Stewart Warren E. <1924->
|
||
| Hoboken, N.J., : Wiley-Interscience, : AIChE, c2008 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Computer-aided modeling of reactive systems / / Warren E. Stewart, Michael Caracotsios
| Computer-aided modeling of reactive systems / / Warren E. Stewart, Michael Caracotsios |
| Autore | Stewart Warren E. <1924-> |
| Edizione | [1st ed.] |
| Pubbl/distr/stampa | Hoboken, N.J., : Wiley-Interscience, : AIChE, c2008 |
| Descrizione fisica | 1 online resource (288 p.) |
| Disciplina | 541/.39015118 |
| Altri autori (Persone) | CaracotsiosMichael |
| Soggetto topico |
Chemical reactions - Mathematical models
Chemical reactions - Computer simulation |
| ISBN |
9786611374013
9781281374011 1281374016 9780470282038 0470282037 9780470282021 0470282029 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Computer-Aided Modeling of Reactive Systems; Contents; Chapter 1. Overview; REFERENCES and FURTHER READING; Chapter 2. Chemical Reaction Models; 2.1 STOICHIOMETRY OF REACTION SCHEMES; 2.2 COMPUTABILITY OF REACTION RATES FROM DATA; 2.3 EQUILIBRIA OF CHEMICAL REACTIONS; 2.4 KINETICS OF ELEMENTARY STEPS; 2.5 PROPERTIES OF REACTION NETWORKS; 2.6 EVIDENCE FOR REACTION STEPS; PROBLEMS; REFERENCES and FURTHER READING; Chapter 3. Chemical Reactor Models; 3.1 MACROSCOPIC CONSERVATION EQUATIONS; 3.1.1 Material Balances; 3.1.2 Total Energy Balance; 3.1.3 Momentum Balance; 3.1.4 Mechanical Energy Balance
3.2 HEAT AND MASS TRANSFER IN FIXED BEDS3.3 INTERFACIAL STATES IN FIXED-BED REACTORS; 3.4 MATERIAL TRANSPORT IN POROUS CATALYSTS; 3.4.1 Material Transport in a Cylindrical Pore Segment; 3.4.2 Material Transport in a Pore Network; 3.4.3 Working Models of Flow and Diffusion in Isotropic Media; 3.4.4 Discussion; 3.4.5 Transport and Reaction in Porous Catalysts; 3.5 GAS PROPERTIES AT LOW PRESSURES; 3.6 NOTATION; REFERENCES and FURTHER READING; Chapter 4. Introduction to Probability and Statistics; 4.1 STRATEGY OF DATA-BASED INVESTIGATION; 4.2 BASIC CONCEPTS IN PROBABILITY THEORY 4.3 DISTRIBUTIONS OF SUMS OF RANDOM VARIABLES4.4 MULTIRESPONSE NORMAL ERROR DISTRIBUTIONS; 4.5 STATISTICAL INFERENCE AND CRITICISM; PROBLEMS; REFERENCES and FURTHER READING; Chapter 5. Introduction to Bayesian Estimation; 5.1 THE THEOREM; 5.2 BAYESIAN ESTIMATION WITH INFORMATIVE PRIORS; 5.3 INTRODUCTION TO NONINFORMATIVE PRIORS; 5.4 JEFFREYS PRIOR FOR ONE-PARAMETER MODELS; 5.5 JEFFREYS PRIOR FOR MULTIPARAMETER MODELS; 5.6 SUMMARY; PROBLEMS; REFERENCES and FURTHER READING; Chapter 6. Process Modeling with Single-Response Data; 6.1 THE OBJECTIVE FUNCTION S(θ) 6.2 WEIGHTING AND OBSERVATION FORMS6.3 PARAMETRIC SENSITIVITIES; NORMAL EQUATIONS; 6.4 CONSTRAINED MINIMIZATION OF S(θ); 6.4.1 The Quadratic Programming Algorithm GRQP; 6.4.2 The Line Search Algorithm GRSl; 6.4.3 Final Expansions Around θ; 6.5 TESTING THE RESIDUALS; 6.6 INFERENCES FROM THE POSTERIOR DENSITY; 6.6.1 Inferences for the Parameters; 6.6.2 Inferences for Predicted Functions; 6.6.3 Discrimination of Rival Models by Posterior Probability; 6.7 SEQUENTIAL PLANNING OF EXPERIMENTS; 6.7.1 Planning for Parameter Estimation; 6.7.2 Planning for Auxiliary Function Estimation 6.7.3 Planning for Model Discrimination6.7.4 Combined Discrimination and Estimation; 6.7.5 Planning for Model Building; 6.8 EXAMPLES; 6.9 SUMMARY; 6.10 NOTATION; PROBLEMS; REFERENCES and FURTHER READING; Chapter 7. Process Modeling with Multiresponse Data; 7.1 PROBLEM TYPES; 7.2 OBJECTIVE FUNCTION; 7.2.1 Selection of Working Responses; 7.2.2 Derivatives of Eqs. (7.2-1) and (7.2-3); 7.2.3 Quadratic Expansions; Normal Equations; 7.3 CONSTRAINED MINIMIZATION OF s(θ); 7.3.1 Final Expansions Around θ; 7.4 TESTING THE RESIDUALS; 7.5 POSTERIOR PROBABILITIES AND REGIONS 7.5.1 Inferences Regarding Parameters |
| Record Nr. | UNINA-9910828074903321 |
Stewart Warren E. <1924->
|
||
| Hoboken, N.J., : Wiley-Interscience, : AIChE, c2008 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Hierarchische Implementierungsstrategien für reduzierte Reaktionsmechanismen basierend auf Intrinsischen Niedrigdimensionalen Mannigfaltigkeiten / / Karin König
| Hierarchische Implementierungsstrategien für reduzierte Reaktionsmechanismen basierend auf Intrinsischen Niedrigdimensionalen Mannigfaltigkeiten / / Karin König |
| Autore | König Karin |
| Pubbl/distr/stampa | Karlsruhe : , : KIT Scientific Publishing, , 2008 |
| Descrizione fisica | 1 online resource |
| Disciplina | 541.361 |
| Soggetto topico |
Chemical reactions - Mathematical models
Differential equations Combustion - Mathematical models Manifolds (Mathematics) |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | ger |
| Record Nr. | UNINA-9911115455503321 |
König Karin
|
||
| Karlsruhe : , : KIT Scientific Publishing, , 2008 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation / / William B. Krantz
| Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation / / William B. Krantz |
| Autore | Krantz William B. <1939-> |
| Pubbl/distr/stampa | [New York] : , : AIChE |
| Descrizione fisica | 1 online resource (547pages) |
| Disciplina |
511.4
530.13/8 |
| Soggetto topico |
Transport theory - Mathematics
Chemical reactions - Mathematical models Scaling laws (Statistical physics) Approximation theory Measurement |
| Soggetto genere / forma | Electronic books. |
| ISBN |
1-280-91685-0
9786610916856 0-470-12193-9 0-470-12192-0 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
SCALING ANALYSIS IN MODELING TRANSPORT AND REACTION PROCESSES; CONTENTS; Preface; Acknowledgments; 1 Introduction; 1.1 Motivation for Using Scaling Analysis; 1.2 Organization of the 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 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 Approximation3.6 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; 3.11 Summary; 3.E Example Problems; 3.P Practice Problems; 4 Applications in Heat Transfer; 4.1 Introduction; 4.2 Steady-State Heat Transfer with End Effects; 4.3 Film and Penetration Theory Approximations; 4.4 Small Biot Number Approximation; 4.5 Small Peclet Number Approximation; 4.6 Boundary-Layer or Large Peclet Number Approximation; 4.7 Heat Transfer with Phase Change 4.8 Temperature-Dependent Physical Properties4.9 Thermally Driven Free Convection: Boussinesq Approximation; 4.10 Dimensional Analysis Correlation for Cooking a Turkey; 4.11 Summary; 4.E Example Problems; 4.P Practice Problems; 5 Applications in Mass Transfer; 5.1 Introduction; 5.2 Film Theory Approximation; 5.3 Penetration Theory Approximation; 5.4 Small Peclet Number Approximation; 5.5 Small Damköhler Number Approximation; 5.6 Large Peclet Number Approximation; 5.7 Quasi-Steady-State Approximation; 5.8 Membrane Permeation with Nonconstant Diffusivity 5.9 Solutally Driven Free Convection Due to Evapotranspiration5.10 Dimensional Analysis for a Membrane-Lung Oxygenator; 5.11 Summary; 5.E Example Problems; 5.P Practice Problems; 6 Applications in Mass Transfer with Chemical Reaction; 6.1 Introduction; 6.2 Concept of the Microscale Element; 6.3 Scaling the Microscale Element; 6.4 Slow Reaction Regime; 6.5 Intermediate Reaction Regime; 6.6 Fast Reaction Regime; 6.7 Instantaneous Reaction Regime; 6.8 Scaling the Macroscale Element; 6.9 Kinetic Domain of the Slow Reaction Regime; 6.10 Diffusional Domain of the Slow Reaction Regime 6.11 Implications of Scaling Analysis for Reactor Design6.12 Mass-Transfer Coefficients for Reacting Systems; 6.13 Design of a Continuous Stirred Tank Reactor; 6.14 Design of a Packed Column Absorber; 6.15 Summary; 6.P Practice Problems; 7 Applications in Process Design; 7.1 Introduction; 7.2 Design of a Membrane Lung Oxygenator; 7.3 Pulsed Single-Bed Pressure-Swing Adsorption; 7.4 Thermally Induced Phase-Separation Process; 7.5 Fluid-Wall Aerosol Flow Reactor for Hydrogen Production; 7.6 Summary; 7.P Practice Problems; Appendix A Sign Convention for the Force on a Fluid Particle Appendix B Generalized Form of the Transport Equations |
| Record Nr. | UNINA-9910143413703321 |
Krantz William B. <1939->
|
||
| [New York] : , : AIChE | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation / / William B. Krantz
| Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation / / William B. Krantz |
| Autore | Krantz William B. <1939-> |
| Pubbl/distr/stampa | [New York] : , : AIChE |
| Descrizione fisica | 1 online resource (547pages) |
| Disciplina |
511.4
530.13/8 |
| Soggetto topico |
Transport theory - Mathematics
Chemical reactions - Mathematical models Scaling laws (Statistical physics) Approximation theory Measurement |
| ISBN |
1-280-91685-0
9786610916856 0-470-12193-9 0-470-12192-0 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
SCALING ANALYSIS IN MODELING TRANSPORT AND REACTION PROCESSES; CONTENTS; Preface; Acknowledgments; 1 Introduction; 1.1 Motivation for Using Scaling Analysis; 1.2 Organization of the 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 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 Approximation3.6 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; 3.11 Summary; 3.E Example Problems; 3.P Practice Problems; 4 Applications in Heat Transfer; 4.1 Introduction; 4.2 Steady-State Heat Transfer with End Effects; 4.3 Film and Penetration Theory Approximations; 4.4 Small Biot Number Approximation; 4.5 Small Peclet Number Approximation; 4.6 Boundary-Layer or Large Peclet Number Approximation; 4.7 Heat Transfer with Phase Change 4.8 Temperature-Dependent Physical Properties4.9 Thermally Driven Free Convection: Boussinesq Approximation; 4.10 Dimensional Analysis Correlation for Cooking a Turkey; 4.11 Summary; 4.E Example Problems; 4.P Practice Problems; 5 Applications in Mass Transfer; 5.1 Introduction; 5.2 Film Theory Approximation; 5.3 Penetration Theory Approximation; 5.4 Small Peclet Number Approximation; 5.5 Small Damköhler Number Approximation; 5.6 Large Peclet Number Approximation; 5.7 Quasi-Steady-State Approximation; 5.8 Membrane Permeation with Nonconstant Diffusivity 5.9 Solutally Driven Free Convection Due to Evapotranspiration5.10 Dimensional Analysis for a Membrane-Lung Oxygenator; 5.11 Summary; 5.E Example Problems; 5.P Practice Problems; 6 Applications in Mass Transfer with Chemical Reaction; 6.1 Introduction; 6.2 Concept of the Microscale Element; 6.3 Scaling the Microscale Element; 6.4 Slow Reaction Regime; 6.5 Intermediate Reaction Regime; 6.6 Fast Reaction Regime; 6.7 Instantaneous Reaction Regime; 6.8 Scaling the Macroscale Element; 6.9 Kinetic Domain of the Slow Reaction Regime; 6.10 Diffusional Domain of the Slow Reaction Regime 6.11 Implications of Scaling Analysis for Reactor Design6.12 Mass-Transfer Coefficients for Reacting Systems; 6.13 Design of a Continuous Stirred Tank Reactor; 6.14 Design of a Packed Column Absorber; 6.15 Summary; 6.P Practice Problems; 7 Applications in Process Design; 7.1 Introduction; 7.2 Design of a Membrane Lung Oxygenator; 7.3 Pulsed Single-Bed Pressure-Swing Adsorption; 7.4 Thermally Induced Phase-Separation Process; 7.5 Fluid-Wall Aerosol Flow Reactor for Hydrogen Production; 7.6 Summary; 7.P Practice Problems; Appendix A Sign Convention for the Force on a Fluid Particle Appendix B Generalized Form of the Transport Equations |
| Record Nr. | UNINA-9910830450603321 |
Krantz William B. <1939->
|
||
| [New York] : , : AIChE | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation / / William B. Krantz
| Scaling analysis in modeling transport and reaction processes : a systematic approach to model building and the art of approximation / / William B. Krantz |
| Autore | Krantz William B. <1939-> |
| Pubbl/distr/stampa | [New York], : AIChE |
| Descrizione fisica | 1 online resource (547pages) |
| Disciplina | 530.13/8 |
| Soggetto topico |
Transport theory - Mathematics
Chemical reactions - Mathematical models Scaling laws (Statistical physics) Approximation theory Measurement |
| ISBN |
9786610916856
9781280916854 1280916850 9780470121931 0470121939 9780470121924 0470121920 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
SCALING ANALYSIS IN MODELING TRANSPORT AND REACTION PROCESSES; CONTENTS; Preface; Acknowledgments; 1 Introduction; 1.1 Motivation for Using Scaling Analysis; 1.2 Organization of the 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 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 Approximation3.6 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; 3.11 Summary; 3.E Example Problems; 3.P Practice Problems; 4 Applications in Heat Transfer; 4.1 Introduction; 4.2 Steady-State Heat Transfer with End Effects; 4.3 Film and Penetration Theory Approximations; 4.4 Small Biot Number Approximation; 4.5 Small Peclet Number Approximation; 4.6 Boundary-Layer or Large Peclet Number Approximation; 4.7 Heat Transfer with Phase Change 4.8 Temperature-Dependent Physical Properties4.9 Thermally Driven Free Convection: Boussinesq Approximation; 4.10 Dimensional Analysis Correlation for Cooking a Turkey; 4.11 Summary; 4.E Example Problems; 4.P Practice Problems; 5 Applications in Mass Transfer; 5.1 Introduction; 5.2 Film Theory Approximation; 5.3 Penetration Theory Approximation; 5.4 Small Peclet Number Approximation; 5.5 Small Damköhler Number Approximation; 5.6 Large Peclet Number Approximation; 5.7 Quasi-Steady-State Approximation; 5.8 Membrane Permeation with Nonconstant Diffusivity 5.9 Solutally Driven Free Convection Due to Evapotranspiration5.10 Dimensional Analysis for a Membrane-Lung Oxygenator; 5.11 Summary; 5.E Example Problems; 5.P Practice Problems; 6 Applications in Mass Transfer with Chemical Reaction; 6.1 Introduction; 6.2 Concept of the Microscale Element; 6.3 Scaling the Microscale Element; 6.4 Slow Reaction Regime; 6.5 Intermediate Reaction Regime; 6.6 Fast Reaction Regime; 6.7 Instantaneous Reaction Regime; 6.8 Scaling the Macroscale Element; 6.9 Kinetic Domain of the Slow Reaction Regime; 6.10 Diffusional Domain of the Slow Reaction Regime 6.11 Implications of Scaling Analysis for Reactor Design6.12 Mass-Transfer Coefficients for Reacting Systems; 6.13 Design of a Continuous Stirred Tank Reactor; 6.14 Design of a Packed Column Absorber; 6.15 Summary; 6.P Practice Problems; 7 Applications in Process Design; 7.1 Introduction; 7.2 Design of a Membrane Lung Oxygenator; 7.3 Pulsed Single-Bed Pressure-Swing Adsorption; 7.4 Thermally Induced Phase-Separation Process; 7.5 Fluid-Wall Aerosol Flow Reactor for Hydrogen Production; 7.6 Summary; 7.P Practice Problems; Appendix A Sign Convention for the Force on a Fluid Particle Appendix B Generalized Form of the Transport Equations |
| Record Nr. | UNINA-9911019534503321 |
Krantz William B. <1939->
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| [New York], : AIChE | ||
| Lo trovi qui: Univ. Federico II | ||
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