Combustion: physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Heidelberg ; New York ; Barcelona ; Hong Kong ; London
Springer
1999
|
Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 273 - 288 |
Beschreibung: | X, 299 S. Ill., graph. Darst. |
ISBN: | 3540652280 |
Internformat
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Datensatz im Suchindex
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adam_text | J. WARNATZ * U. MAAS * R. W. DIBBLE COMBUSTION PHYSICAL AND CHEMICAL
FUNDAMENTALS, MODELING AND SIMULATION, EXPERIMENTS, POLLUTANT FORMATION
SECOND EDITION WITH 185 FIGURES AND 17 TABLES SPRINGER TABLE OF CONTENTS
1 INTRODUCTION, FUNDAMENTAL DEFINITIONS AND PHENOMENA 1 1.1 INTRODUCTION
1 1.2 SOME FUNDAMENTAL DEFINITIONS 1 1.3 BASIC FLAME TYPES 4 1.4
EXERCISES 8 2 EXPERIMENTAL INVESTIGATION OF FLAMES 9 2.1 VELOCITY
MEASUREMENTS 10 2.2 DENSITY MEASUREMENT 11 2.3 CONCENTRATION
MEASUREMENTS 12 2.4 TEMPERATURE MEASUREMENTS : 18 2.5 PRESSURE
MEASUREMENTS 20 2.6 MEASUREMENT OF PARTICLE SIZES 20 2.7 SIMULTANEOUS
DIAGNOSTICS 21 2.8 EXERCISES 22 3 MATHEMATICAL DESCRIPTION OF PREMIXED
LAMINAR FLAT FLAMES 23 3.1 CONSERVATION EQUATIONS FOR LAMINAR FLAT
PREMIXED FLAMES 23 3.2 HEAT AND MASS TRANSPORT 27 3.3 THE DESCRIPTION OF
A LAMINAR PREMIXED FLAT FLAME FRONT 27 3.4 EXERCISES 32 4 THERMODYNAMICS
OF COMBUSTION PROCESSES 33 4.1 THE FIRST LAW OF THERMODYNAMICS 33 4.2
STANDARD ENTHALPIES OF FORMATION 35 4.3 HEAT CAPACITIES 37 4.4 THE
SECOND LAW OF THERMODYNAMICS 38 4.5 THE THIRD LAW OF THERMODYNAMICS 39
4.6 EQUILIBRIUM CRITERIA AND THERMODYNAMIC VARIABLES 40 4.7 EQUILIBRIUM
IN GAS MIXTURES; CHEMICAL POTENTIAL 41 4.8 DETERMINATION OF EQUILIBRIUM
COMPOSITIONS IN GASES 43 4.9 DETERMINATION OF ADIABATIC FLAME
TEMPERATURES 45 4.10 TABULATION OF THERMODYNAMIC DATA 46 4.11 EXERCISES
48 VIII TABLE OF CONTENTS 5 TRANSPORT PHENOMENA 49 5.1 A SIMPLE PHYSICAL
MODEL OF THE TRANSPORT PROCESSES 49 5.2 HEAT CONDUCTION IN GASES 52 5.3
VISCOSITY OF GASES 54 5.4 DIFFUSION IN GASES 56 5.5 THERMAL DIFFUSION,
DUFOUR EFFECT, AND PRESSURE DIFFUSION 58 5.6 COMPARISON WITH EXPERIMENTS
59 5.7 EXERCISES 63 6 CHEMICAL KINETICS 65 6.1 RATE LAWS AND REACTION
ORDERS 65 6.2 RELATION OF FORWARD AND REVERSE REACTIONS 67 6.3
ELEMENTARY REACTIONS, REACTION MOLECULARITY 67 6.4 EXPERIMENTAL
INVESTIGATION OF ELEMENTARY REACTIONS 74 6.5 TEMPERATURE DEPENDENCE OF
RATE COEFFICIENTS 75 6.6 PRESSURE DEPENDENCE OF RATE COEFFICIENTS 76 6.7
SURFACE REACTIONS 80 6.8 EXERCISES 84 7. REACTION MECHANISMS 85 7.1
CHARACTERISTICS OF REACTION MECHANISMS 85 7.1.1 QUASI-STEADY STATES 86
7.1.2 PARTIAL EQUILIBRIUM 88 7.2 ANALYSIS OF REACTION MECHANISMS 91
7.2.1 SENSITIVITY ANALYSIS 91 7.2.2 REACTION FLOW ANALYSIS 95 7.2.3
EIGENVALUE ANALYSES OF CHEMICAL REACTION SYSTEMS 97 7.3 STIFFNESS OF
ORDINARY DIFFERENTIAL EQUATION SYSTEMS 101 7.4 SIMPLIFICATION OF
REACTION MECHANISMS 101 7.5 RADICAL CHAIN REACTIONS 107 7.6 EXERCISES
109 8 LAMINAR PREMIXED FLAMES ILL 8.1 ZELDOVICH S ANALYSIS OF FLAME
PROPAGATION ILL 8.2 NUMERICAL SOLUTION OF THE CONSERVATION EQUATIONS 113
8.2.1 SPATIAL DISCRETIZATION 113 8.2.2 INITIAL VALUES, BOUNDARY
CONDITIONS, STATIONARY SOLUTION 115 8.2.3 EXPLICIT SOLUTION METHODS 116
8.2.4 IMPLICIT SOLUTION METHODS 117 8.2.5 SEMI-IMPLICIT SOLUTION OF
PARTIAL DIFFERENTIAL EQUATIONS 118 8.2.6 IMPLICIT SOLUTION OF PARTIAL
DIFFERENTIAL EQUATIONS 118 8.3 FLAME STRUCTURES 119 8.4 FLAME VELOCITIES
, 122 8.5 SENSITIVITY ANALYSIS 124 8.6 EXERCISES 125 TABLE OF CONTENTS
IX 9 LAMINAR NONPREMIXED FLAMES 127 9.1 COUNTERFLOW NONPREMIXED FLAMES
127 9.2 LAMINAR JET NONPREMIXED FLAMES 131 9.3 NONPREMIXED FLAMES WITH
FAST CHEMISTRY 133 9.4 EXERCISES 136 10 IGNITION PROCESSES /. 137 10.1
SEMENOV S ANALYSIS OF THERMAL EXPLOSIONS 138 10.2 FRANK- KAMENETSKII S
ANALYSIS OF THERMAL EXPLOSIONS 139 10.3 AUTOIGNITION: IGNITION LIMITS
141 10.4 AUTOIGNITION: IGNITION-DELAY TIME 144 10.5 INDUCED IGNITION,
MINIMUM IGNITION ENERGIES 145 10.6 SPARK IGNITION 149 10.7 DETONATIONS
150 10.8 EXERCISES 152 11 THE NAVIER-STOKES-EQUATIONS FOR
THREE-DIMENSIONAL REACTING FLOWS 153 11.1 THE CONSERVATION EQUATIONS 153
11.1.1 OVERALL MASS CONSERVATION 154 11.1.2 SPECIES MASS CONSERVATION
155 11.1.3 MOMENTUM CONSERVATION 155 11.1.4 ENERGY CONSERVATION 156 11.2
THE EMPIRICAL LAWS 157 11.2.1 NEWTON S LAW 157 11.2.2 FOURIER S LAW 158
11.2.3 FICK S LAW AND THERMAL DIFFUSION 158 11.2.4 CALCULATION OF THE
TRANSPORT COEFFICIENTS FROM MOLECULAR PARAMETERS ... 159 11.3 APPENDIX:
SOME DEFINITIONS AND LAWS FROM VECTOR- AND TENSOR- ANALYSIS 159 11.4
EXERCISES 161 12 TURBULENT REACTING FLOWS 163 12.1 SOME FUNDAMENTAL
PHENOMENA 163 12.2 DIRECT NUMERICAL SIMULATION 165 12.3 CONCEPTS FOR
TURBULENCE MODELING: PROBABILITY DENSITY FUNCTIONS (PDFS) 167 12.4
CONCEPTS FOR TURBULENCE MODELING: TIME- AND FAVRE-AVERAGING 168 12.5
AVERAGED CONSERVATION EQUATIONS 170 12.6 TURBULENCE MODELS : 172 12.7
MEAN REACTION RATES 176 12.8 EDDY-BREAK-UP-MODELS 182 12.9 LARGE-EDDY
SIMULATION (LES) 182 12.10 TURBULENT SCALES 182 12.11 EXERCISES 184 X
TABLE OF CONTENTS 13 TURBULENT NONPREMIXED FLAMES 187 13.1 NONPREMIXED
FLAMES WITH EQUILIBRIUM CHEMISTRY 188 13.2 FINITE-RATE CHEMISTRY IN
NONPREMIXED FLAMES 191 13.3 FLAME EXTINCTION 195 13.4 PDF-SIMULATIONS OF
TURBULENT NON-PREMIXED FLAMES 198 13.5 EXERCISES 200 14 TURBULENT
PREMIXED FLAMES 201 14.1 CLASSIFICATION OF TURBULENT PREMIXED FLAMES 201
14.2 FLAMELET MODELS 204 14.3 TURBULENT FLAME VELOCITY 206 14.4 FLAME
EXTINCTION 208 14.5 OTHER MODELS OF TURBULENT PREMIXED COMBUSTION 210
14.6 EXERCISES 211 15 COMBUSTION OF LIQUID AND SOLID FUELS 213 15.1
DROPLET AND SPRAY COMBUSTION 213 15.1.1 COMBUSTION OF SINGLE DROPLETS
214 15.1.2 COMBUSTION OF SPRAYS 218 15.2 COAL COMBUSTION 224 16
LOW-TEMPERATURE OXIDATION, ENGINE KNOCK 227 16.1 FUNDAMENTAL PHENOMENA
227 16.2 HIGH-TEMPERATURE OXIDATION 230 16.3 LOW-TEMPERATURE OXIDATION
231 16.4 KNOCK DAMAGES 235 16.5 EXERCISES 236 17 FORMATION OF NITRIC
OXIDES 237 17.1 THERMAL NO (ZELDOVICH-NO) 237 17.2 PROMPT NO
(FENIMORE-NO) 240 17.3 NO GENERATED VIA NITROUS OXIDE : 243 17.4
CONVERSION OF FUEL NITROGEN INTO NO 243 17.5 NO REDUCTION BY COMBUSTION
MODIFICATIONS 249 17.6 CATALYTIC COMBUSTION 251 17.7 NO-REDUCTION BY
POST-COMBUSTION PROCESSES 253 18 FORMATION OF HYDROCARBONS AND SOOT 257
18.1 UNBURNT HYDROCARBONS 257 18.1.1 FLAME EXTINCTION DUE TO STRAIN 258
18.1.2 FLAME EXTINCTION AT WALLS AND IN GAPS 258 18.2 FORMATION OF
POLYCYCLIC AROMATIC HYDROCARBONS (PAH) 260 18.3 THE PHENOMENOLOGY OF
SOOT FORMATION 262 18.4 MODELLING AND SIMULATION OF SOOT FORMATION 266
19 REFERENCES 273 20 INDEX :. 289
|
any_adam_object | 1 |
author | Warnatz, Jürgen 1944-2007 Maas, Ulrich Dibble, Robert W. |
author_GND | (DE-588)1049426592 |
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bvnumber | BV012383803 |
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discipline | Chemie / Pharmazie Physik Energietechnik |
edition | 2. ed. |
format | Book |
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indexdate | 2024-07-09T18:26:39Z |
institution | BVB |
isbn | 3540652280 |
language | English |
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spelling | Warnatz, Jürgen 1944-2007 Verfasser (DE-588)1049426592 aut Technische Verbrennung Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables J. Warnatz ; U. Maas ; R. W. Dibble 2. ed. Berlin ; Heidelberg ; New York ; Barcelona ; Hong Kong ; London Springer 1999 X, 299 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Literaturverz. S. 273 - 288 Flamme (DE-588)4154542-4 gnd rswk-swf Verbrennung (DE-588)4062656-8 gnd rswk-swf (DE-588)4123623-3 Lehrbuch gnd-content Flamme (DE-588)4154542-4 s DE-604 Verbrennung (DE-588)4062656-8 s Maas, Ulrich Verfasser aut Dibble, Robert W. Verfasser aut HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008400370&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Warnatz, Jürgen 1944-2007 Maas, Ulrich Dibble, Robert W. Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables Flamme (DE-588)4154542-4 gnd Verbrennung (DE-588)4062656-8 gnd |
subject_GND | (DE-588)4154542-4 (DE-588)4062656-8 (DE-588)4123623-3 |
title | Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables |
title_alt | Technische Verbrennung |
title_auth | Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables |
title_exact_search | Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables |
title_full | Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables J. Warnatz ; U. Maas ; R. W. Dibble |
title_fullStr | Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables J. Warnatz ; U. Maas ; R. W. Dibble |
title_full_unstemmed | Combustion physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables J. Warnatz ; U. Maas ; R. W. Dibble |
title_short | Combustion |
title_sort | combustion physical and chemical fundamentals modelling and simulation experiments pollutant formation with 17 tables |
title_sub | physical and chemical fundamentals, modelling and simulation, experiments, pollutant formation ; with 17 tables |
topic | Flamme (DE-588)4154542-4 gnd Verbrennung (DE-588)4062656-8 gnd |
topic_facet | Flamme Verbrennung Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008400370&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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