Mixture formation in internal combustion engines: with 9 tables
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2006
|
Schriftenreihe: | Heat and mass transfer
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XVII, 294 S. Ill., graph. Darst. |
ISBN: | 9783540308355 3540308350 |
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264 | 1 | |a Berlin [u.a.] |b Springer |c 2006 | |
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650 | 4 | |a Internal combustion engines |x Combustion | |
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Datensatz im Suchindex
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adam_text | CARSTE
N BAUMGARTE
N
MIXTUR
E FORMATION IN
INTERNAL COMBUSTION
ENGINES
WITH 180 FIGURES AN
D 9 TABLES
A
^Y SPRINGER
CONTENTS
PREFACE V
CONTENTS VII
NOMENCLATURE XI
1 INTRODUCTION 1
1.1 MODELING OF SPRAY AND MIXTURE FORMATION PROCESSES 1
1.2 FUTURE DEMANDS 3
2 FUNDAMENTALS OF MIXTURE FORMATION IN ENGINES 5
2.1 BASICS 5
2.1.1 BREAK-UP REGIMES OF LIQUID JETS 5
2.1.2 BREAK-UP REGIMES OF LIQUID DROPS 8
2.1.3 STRUCTURE OF ENGINE SPRAYS 10
2.1.4 SPRAY-WALL INTERACTION 29
2.2 INJECTION SYSTEMS AND NOZZLE TYPES 32
2.2.1 DIRECT INJECTION DIESEL ENGINES 32
2.2.2 GASOLINE ENGINES 38
REFERENCES 43
3 BASIC EQUATIONS 47
3.1 DESCRIPTION OF THE CONTINUOUS PHASE 47
3.1.1 EULERIAN DESCRIPTION AND MATERIAL DERIVATE 47
3.1.2 CONSERVATION EQUATIONS FOR ONE-DIMENSIONAL FLOWS 49
3.1.3 CONSERVATION EQUATIONS FOR MULTI-DIMENSIONAL FLOWS 54
3.1.4 TURBULENT FLOWS 66
3.1.5 APPLICATION TO IN-CYLINDER PROCESSES 79
3.2 DESCRIPTION OF THE DISPERSE PHASE 81
3.2.1 SPRAY EQUATION 81
3.2.2 MONTE-CARLO METHOD 82
3.2.3 STOCHASTIC-PARCEL METHOD 82
3.2.4 EULERIAN-LAGRANGIAN DESCRIPTION 83
REFERENCES 83
4 MODELING SPRAY AND MIXTURE FORMATION 85
4.1 PRIMARY BREAK-UP 85
VIII CONTENTS
4.1.1 BLOB-METHOD 86
4.1.2 DISTRIBUTION FUNCTIONS 90
4.1.3 TURBULENCE-INDUCED BREAK-UP 94
4.1.4 CAVITATION-INDUCED BREAK-UP 98
4.1.5 CAVITATION AND TURBULENCE-INDUCED BREAK-UP 100
4.1.6 SHEET ATOMIZATION MODEL FOR HOLLOW-CONE SPRAYS 109
4.2 SECONDARY BREAK-UP 114
4.2.1 PHENOMENOLOGICAL MODELS 115
4.2.2 TAYLOR, ANALOGY BREAK-UP MODEL 116
4.2.3 DROPLET DEFORMATION AND BREAK-UP MODEL 122
4.2.4 KELVIN-HELMHOLTZ BREAK-UP MODEL 125
4.2.5 RAYLEIGH-TAYLOR BREAK-UP MODEL 128
4.3 COMBINED MODELS 130
4.3.1 BLOB-KH/RT MODEL 130
4.3.2 BLOB-KH/DDB MODEL 131
4.3.3 FURTHER COMBINED MODELS 132
4.3.4 LISA-TAB MODEL 133
4.3.5 LISA-DDB MODEL 135
4.4 DROPLET DRAG MODELING 136
4.4.1 SPHERICAL DROPS 136
4.4.2 DYNAMIC DRAG MODELING 136
4.5 EVAPORATION 139
4.5.1 EVAPORATION OF SINGLE-COMPONENT DROPLETS 140
4.5.2 EVAPORATION OF MULTI-COMPONENT DROPLETS 144
4.5.3 FLASH-BOILING 158
4.5.4 WALL FILM EVAPORATION 162
4.6 TURBULENT DISPERSION 166
4.7 COLLISION AND COALESCENCE 169
4.7.1 DROPLET COLLISION REGIMES 169
4.7.2 COLLISION MODELING 172
4.7.3 IMPLEMENTATION IN CFD CODES 178
4.8 WALL IMPINGEMENT 180
4.8.1 IMPINGEMENT REGIMES 181
4.8.2 IMPINGEMENT MODELING 183
4.8.3 WALL FILM MODELING 191
4.9 IGNITION 197
4.9.1 AUTO-IGNITION 197
4.9.2 SPARK-IGNITION 200
REFERENCES 203
5 GRID DEPENDENCIES 211
5.1 GENERAL PROBLEM 211
5.2 IMPROVED INTER-PHASE COUPLING 216
5.3 IMPROVED COLLISION MODELING 220
5.4 EULERIAN-EULERIAN APPROACHES 221
REFERENCES 223
CONTENTS IX
6 MODERN CONCEPTS 225
6.1 INTRODUCTION 225
6.2 DI DIESEL ENGINES 226
6.2.1 CONVENTIONAL DIESEL COMBUSTION 226
6.2.2 MULTIPLE INJECTION AND INJECTION RATE SHAPING 230
6.2.3 PIEZO INJECTORS 234
6.2.4 VARIABLE NOZZLE CONCEPT 236
6.2.5 INCREASE OF INJECTION PRESSURE 237
6.2.6 PRESSURE MODULATION 239
6.2.7 FUTURE DEMANDS 241
6.3 DI GASOLINE ENGINES 242
6.3.1 INTRODUCTION 242
6.3.2 OPERATING MODES 244
6.3.3 STRATIFIED-CHARGE COMBUSTION CONCEPTS 246
6.3.4 FUTURE DEMANDS 251
6.4 HOMOGENEOUS CHARGE COMPRESSION IGNITION (HCCI) 253
6.4.1 INTRODUCTION 253
6.4.2 HCCI CHEMISTRY 256
6.4.3 EMISSION BEHAVIOR 261
6.4.4 BASIC CHALLENGES 264
6.4.5 INFLUENCE PARAMETERS AND CONTROL OF HCCI COMBUSTION 270
6.4.6 TRANSIENT BEHAVIOR - CONTROL STRATEGIES 279
6.4.7 FUTURE HCCI ENGINE APPLICATIONS 279
REFERENCES 280
7 CONCLUSIONS 287
INDEX 291
|
adam_txt |
CARSTE
N BAUMGARTE
N
MIXTUR
E FORMATION IN
INTERNAL COMBUSTION
ENGINES
WITH 180 FIGURES AN
D 9 TABLES
A
\
^Y SPRINGER
CONTENTS
PREFACE V
CONTENTS VII
NOMENCLATURE XI
1 INTRODUCTION 1
1.1 MODELING OF SPRAY AND MIXTURE FORMATION PROCESSES 1
1.2 FUTURE DEMANDS 3
2 FUNDAMENTALS OF MIXTURE FORMATION IN ENGINES 5
2.1 BASICS 5
2.1.1 BREAK-UP REGIMES OF LIQUID JETS 5
2.1.2 BREAK-UP REGIMES OF LIQUID DROPS 8
2.1.3 STRUCTURE OF ENGINE SPRAYS 10
2.1.4 SPRAY-WALL INTERACTION 29
2.2 INJECTION SYSTEMS AND NOZZLE TYPES 32
2.2.1 DIRECT INJECTION DIESEL ENGINES 32
2.2.2 GASOLINE ENGINES 38
REFERENCES 43
3 BASIC EQUATIONS 47
3.1 DESCRIPTION OF THE CONTINUOUS PHASE 47
3.1.1 EULERIAN DESCRIPTION AND MATERIAL DERIVATE 47
3.1.2 CONSERVATION EQUATIONS FOR ONE-DIMENSIONAL FLOWS 49
3.1.3 CONSERVATION EQUATIONS FOR MULTI-DIMENSIONAL FLOWS 54
3.1.4 TURBULENT FLOWS 66
3.1.5 APPLICATION TO IN-CYLINDER PROCESSES 79
3.2 DESCRIPTION OF THE DISPERSE PHASE 81
3.2.1 SPRAY EQUATION 81
3.2.2 MONTE-CARLO METHOD 82
3.2.3 STOCHASTIC-PARCEL METHOD 82
3.2.4 EULERIAN-LAGRANGIAN DESCRIPTION 83
REFERENCES 83
4 MODELING SPRAY AND MIXTURE FORMATION 85
4.1 PRIMARY BREAK-UP 85
VIII CONTENTS
4.1.1 BLOB-METHOD 86
4.1.2 DISTRIBUTION FUNCTIONS 90
4.1.3 TURBULENCE-INDUCED BREAK-UP 94
4.1.4 CAVITATION-INDUCED BREAK-UP 98
4.1.5 CAVITATION AND TURBULENCE-INDUCED BREAK-UP 100
4.1.6 SHEET ATOMIZATION MODEL FOR HOLLOW-CONE SPRAYS 109
4.2 SECONDARY BREAK-UP 114
4.2.1 PHENOMENOLOGICAL MODELS 115
4.2.2 TAYLOR, ANALOGY BREAK-UP MODEL 116
4.2.3 DROPLET DEFORMATION AND BREAK-UP MODEL 122
4.2.4 KELVIN-HELMHOLTZ BREAK-UP MODEL 125
4.2.5 RAYLEIGH-TAYLOR BREAK-UP MODEL 128
4.3 COMBINED MODELS 130
4.3.1 BLOB-KH/RT MODEL 130
4.3.2 BLOB-KH/DDB MODEL 131
4.3.3 FURTHER COMBINED MODELS 132
4.3.4 LISA-TAB MODEL 133
4.3.5 LISA-DDB MODEL 135
4.4 DROPLET DRAG MODELING 136
4.4.1 SPHERICAL DROPS 136
4.4.2 DYNAMIC DRAG MODELING 136
4.5 EVAPORATION 139
4.5.1 EVAPORATION OF SINGLE-COMPONENT DROPLETS 140
4.5.2 EVAPORATION OF MULTI-COMPONENT DROPLETS 144
4.5.3 FLASH-BOILING 158
4.5.4 WALL FILM EVAPORATION 162
4.6 TURBULENT DISPERSION 166
4.7 COLLISION AND COALESCENCE 169
4.7.1 DROPLET COLLISION REGIMES 169
4.7.2 COLLISION MODELING 172
4.7.3 IMPLEMENTATION IN CFD CODES 178
4.8 WALL IMPINGEMENT 180
4.8.1 IMPINGEMENT REGIMES 181
4.8.2 IMPINGEMENT MODELING 183
4.8.3 WALL FILM MODELING 191
4.9 IGNITION 197
4.9.1 AUTO-IGNITION 197
4.9.2 SPARK-IGNITION 200
REFERENCES 203
5 GRID DEPENDENCIES 211
5.1 GENERAL PROBLEM 211
5.2 IMPROVED INTER-PHASE COUPLING 216
5.3 IMPROVED COLLISION MODELING 220
5.4 EULERIAN-EULERIAN APPROACHES 221
REFERENCES 223
CONTENTS IX
6 MODERN CONCEPTS 225
6.1 INTRODUCTION 225
6.2 DI DIESEL ENGINES 226
6.2.1 CONVENTIONAL DIESEL COMBUSTION 226
6.2.2 MULTIPLE INJECTION AND INJECTION RATE SHAPING 230
6.2.3 PIEZO INJECTORS 234
6.2.4 VARIABLE NOZZLE CONCEPT 236
6.2.5 INCREASE OF INJECTION PRESSURE 237
6.2.6 PRESSURE MODULATION 239
6.2.7 FUTURE DEMANDS 241
6.3 DI GASOLINE ENGINES 242
6.3.1 INTRODUCTION 242
6.3.2 OPERATING MODES 244
6.3.3 STRATIFIED-CHARGE COMBUSTION CONCEPTS 246
6.3.4 FUTURE DEMANDS 251
6.4 HOMOGENEOUS CHARGE COMPRESSION IGNITION (HCCI) 253
6.4.1 INTRODUCTION 253
6.4.2 HCCI CHEMISTRY 256
6.4.3 EMISSION BEHAVIOR 261
6.4.4 BASIC CHALLENGES 264
6.4.5 INFLUENCE PARAMETERS AND CONTROL OF HCCI COMBUSTION 270
6.4.6 TRANSIENT BEHAVIOR - CONTROL STRATEGIES 279
6.4.7 FUTURE HCCI ENGINE APPLICATIONS 279
REFERENCES 280
7 CONCLUSIONS 287
INDEX 291 |
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discipline_str_mv | Maschinenbau / Maschinenwesen Verkehr / Transport |
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id | DE-604.BV021568513 |
illustrated | Illustrated |
index_date | 2024-07-02T14:37:28Z |
indexdate | 2024-07-09T20:38:50Z |
institution | BVB |
isbn | 9783540308355 3540308350 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014784362 |
oclc_num | 181498161 |
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owner_facet | DE-703 DE-573 DE-29T DE-898 DE-BY-UBR DE-634 |
physical | XVII, 294 S. Ill., graph. Darst. |
publishDate | 2006 |
publishDateSearch | 2006 |
publishDateSort | 2006 |
publisher | Springer |
record_format | marc |
series2 | Heat and mass transfer |
spelling | Baumgarten, Carsten 1972- Verfasser (DE-588)128626178 aut Mixture formation in internal combustion engines with 9 tables Carsten Baumgarten Berlin [u.a.] Springer 2006 XVII, 294 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Heat and mass transfer Literaturangaben Mathematisches Modell Combustion Mathematical models Internal combustion engines Combustion Thermodynamics Gemischbildung (DE-588)4125879-4 gnd rswk-swf Verbrennungsmotor (DE-588)4062661-1 gnd rswk-swf Verbrennungsmotor (DE-588)4062661-1 s Gemischbildung (DE-588)4125879-4 s DE-604 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=2707318&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014784362&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Baumgarten, Carsten 1972- Mixture formation in internal combustion engines with 9 tables Mathematisches Modell Combustion Mathematical models Internal combustion engines Combustion Thermodynamics Gemischbildung (DE-588)4125879-4 gnd Verbrennungsmotor (DE-588)4062661-1 gnd |
subject_GND | (DE-588)4125879-4 (DE-588)4062661-1 |
title | Mixture formation in internal combustion engines with 9 tables |
title_auth | Mixture formation in internal combustion engines with 9 tables |
title_exact_search | Mixture formation in internal combustion engines with 9 tables |
title_exact_search_txtP | Mixture formation in internal combustion engines with 9 tables |
title_full | Mixture formation in internal combustion engines with 9 tables Carsten Baumgarten |
title_fullStr | Mixture formation in internal combustion engines with 9 tables Carsten Baumgarten |
title_full_unstemmed | Mixture formation in internal combustion engines with 9 tables Carsten Baumgarten |
title_short | Mixture formation in internal combustion engines |
title_sort | mixture formation in internal combustion engines with 9 tables |
title_sub | with 9 tables |
topic | Mathematisches Modell Combustion Mathematical models Internal combustion engines Combustion Thermodynamics Gemischbildung (DE-588)4125879-4 gnd Verbrennungsmotor (DE-588)4062661-1 gnd |
topic_facet | Mathematisches Modell Combustion Mathematical models Internal combustion engines Combustion Thermodynamics Gemischbildung Verbrennungsmotor |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=2707318&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014784362&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT baumgartencarsten mixtureformationininternalcombustionengineswith9tables |