The application of mathematical modelling to process development and design:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
London
Applied Science Publ.
1974
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIII, 364 S. Ill., graph. Darst. |
ISBN: | 0853345848 |
Internformat
MARC
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245 | 1 | 0 | |a The application of mathematical modelling to process development and design |c L. M. Rose |
264 | 1 | |a London |b Applied Science Publ. |c 1974 | |
300 | |a XIII, 364 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
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Datensatz im Suchindex
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adam_text |
CONTENTS
Preface vii
Chapter 1
MODELS AND PROCESS DESIGN 1
1.1 Introduction . 1
1.2 The Role of Systems Engineering 2
1.3 The Stages of Process Design 7
1.4 Company Structure 12
1.5 What is Mathematical Modelling? 15
1.6 The Stages of Mathematical Modelling 16
1.7 The Application of Modelling to Process Design . 23
1.8 Application in Related Areas 37
Chapter 2
REACTOR MODELS 42
2.1 The Choice—Empirical or Theoretical Models . 42
2.2 Reactors Worth Modelling 47
2.3 Mathematical Description of a Chemical Reaction . 48
2.4 Mathematical Description of Reactor Hardware . 57
2.5 Programming 69
2.6 Fitting the Model to Experimental Results . 74
2.7 Uses of the Reactor Model 85
2.8 Timing and Manning 90
Chapter 3
UNIT OPERATION MODELS 92
Nomenclature 92
3.1 Equipment Sizing 94
3.2 Equipment Design 116
3.3 Capital Costs 129
Chapter 4
SPECIFIC PROCESS MODELS 137
4.1 Types of Process Model 137
xi
xii Contents
4.2 Flowsheets 138
4.3 Linking Flowsheet to Unit Operation Models . . . . 145
4.4 Addition of Costs 146
4.5 Outputs from the Process Model 149
4.6 Uses of the Process Model . 149
4.7 Reliability of Results 157
4.8 Timing and Justification. . . . . . . . 157
Chapter 5
GENERALISED FLOWSHEET PROGRAMMES . 160
5.1 Why Generalised Flowsheet Programmes ? . . . . 160
5.2 Types of Flowsheet Programme 161
5.3 The Data Library 168
5.4 The Basic Form of Flowsheet Programmes . 170
5.5 Examples of the Use of Flowsheet Programmes . . . 177
5.6 Differences Between Flowsheet Programmes and Specific Process
Models 187
5.7 Particular Problems 188
5.8 Survey of Available Flowsheet Programmes . . . . 192
5.9 Batch Process Flowsheets 193
5.10 Conclusions 194
Chapter 6
THE USE OF MODELLING AT THE PLANNING STAGE . 195
6.1 The Economic Response for Comparison of Alternatives . . 195
6.2 Where to Erect the Plant 202
6.3 When to Erect the Plant 204
6.4 How to Make the Product 212
6.5 Choosing Operating Conditions . . . . . . 218
6.6 Batch Process Planning 223
6.7 Concluding Remarks . 230
Appendix 1
USEFUL NUMERICAL METHODS 231
Al.l The Root of a Non Linear Equation . 232
A1.2 Solution of Simultaneous Equations 236
A1.3 Integration of System of Differential Equations . . . 242
A1.4 Linear Programming . 248
A1.5 Non Linear Optimisation . . . . . . .251
A1.6 Regression Analysis 258
A1.7 Dynamic Programming 264
Contents xiii
Appendix 2
DESIGN OF EXPERIMENTS 269
A2.1 Full Factorial and Partial Factorial Designs . 269
A2.2 The Regression Matrix 272
A2.3 Design for Non Linear Models 275
Appendix 3
SUGGESTED CONTENTS OF A CHEMICAL ENGINEERING
COMPUTER LIBRARY 276
A3.1 Finding the Root of a Non Linear Equation . 277
A3.2 Solving Non Linear Simultaneous Equations . 281
A3.3 Solution of Simultaneous Linear Equations . 283
A3.4 Optimisation of Non Linear Functions 284
A3.5 Regression Analysis 290
A3.6 Integration of a System of Differential Equations . . . 290
A3.7 Linear Programming 297
A3.8 Economic Evaluations 297
PROBLEMS 325
REFERENCES 356
INDEX 361 |
adam_txt |
CONTENTS
Preface vii
Chapter 1
MODELS AND PROCESS DESIGN 1
1.1 Introduction . 1
1.2 The Role of Systems Engineering 2
1.3 The Stages of Process Design 7
1.4 Company Structure 12
1.5 What is Mathematical Modelling? 15
1.6 The Stages of Mathematical Modelling 16
1.7 The Application of Modelling to Process Design . 23
1.8 Application in Related Areas 37
Chapter 2
REACTOR MODELS 42
2.1 The Choice—Empirical or Theoretical Models . 42
2.2 Reactors Worth Modelling 47
2.3 Mathematical Description of a Chemical Reaction . 48
2.4 Mathematical Description of Reactor Hardware . 57
2.5 Programming 69
2.6 Fitting the Model to Experimental Results . 74
2.7 Uses of the Reactor Model 85
2.8 Timing and Manning 90
Chapter 3
UNIT OPERATION MODELS 92
Nomenclature 92
3.1 Equipment Sizing 94
3.2 Equipment Design 116
3.3 Capital Costs 129
Chapter 4
SPECIFIC PROCESS MODELS 137
4.1 Types of Process Model 137
xi
xii Contents
4.2 Flowsheets 138
4.3 Linking Flowsheet to Unit Operation Models . . . . 145
4.4 Addition of Costs 146
4.5 Outputs from the Process Model 149
4.6 Uses of the Process Model . 149
4.7 Reliability of Results 157
4.8 Timing and Justification. . . . . . . . 157
Chapter 5
GENERALISED FLOWSHEET PROGRAMMES . 160
5.1 Why Generalised Flowsheet Programmes ? . . . . 160
5.2 Types of Flowsheet Programme 161
5.3 The Data Library 168
5.4 The Basic Form of Flowsheet Programmes . 170
5.5 Examples of the Use of Flowsheet Programmes . . . 177
5.6 Differences Between Flowsheet Programmes and Specific Process
Models 187
5.7 Particular Problems 188
5.8 Survey of Available Flowsheet Programmes . . . . 192
5.9 Batch Process Flowsheets 193
5.10 Conclusions 194
Chapter 6
THE USE OF MODELLING AT THE PLANNING STAGE . 195
6.1 The Economic Response for Comparison of Alternatives . . 195
6.2 Where to Erect the Plant 202
6.3 When to Erect the Plant 204
6.4 How to Make the Product 212
6.5 Choosing Operating Conditions . . . . . . 218
6.6 Batch Process Planning 223
6.7 Concluding Remarks . 230
Appendix 1
USEFUL NUMERICAL METHODS 231
Al.l The Root of a Non Linear Equation . 232
A1.2 Solution of Simultaneous Equations 236
A1.3 Integration of System of Differential Equations . . . 242
A1.4 Linear Programming . 248
A1.5 Non Linear Optimisation . . . . . . .251
A1.6 Regression Analysis 258
A1.7 Dynamic Programming 264
Contents xiii
Appendix 2
DESIGN OF EXPERIMENTS 269
A2.1 Full Factorial and Partial Factorial Designs . 269
A2.2 The Regression Matrix 272
A2.3 Design for Non Linear Models 275
Appendix 3
SUGGESTED CONTENTS OF A CHEMICAL ENGINEERING
COMPUTER LIBRARY 276
A3.1 Finding the Root of a Non Linear Equation . 277
A3.2 Solving Non Linear Simultaneous Equations . 281
A3.3 Solution of Simultaneous Linear Equations . 283
A3.4 Optimisation of Non Linear Functions 284
A3.5 Regression Analysis 290
A3.6 Integration of a System of Differential Equations . . . 290
A3.7 Linear Programming 297
A3.8 Economic Evaluations 297
PROBLEMS 325
REFERENCES 356
INDEX 361 |
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spelling | Rose, L. M. Verfasser aut The application of mathematical modelling to process development and design L. M. Rose London Applied Science Publ. 1974 XIII, 364 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Génie chimique - Modèles mathématiques ram Réacteurs chimiques ram Mathematisches Modell Chemical processes Mathematical models Verfahrenstechnik (DE-588)4062781-0 gnd rswk-swf Mathematisches Modell (DE-588)4114528-8 gnd rswk-swf Verfahrenstechnik (DE-588)4062781-0 s Mathematisches Modell (DE-588)4114528-8 s DE-604 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014853148&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Rose, L. M. The application of mathematical modelling to process development and design Génie chimique - Modèles mathématiques ram Réacteurs chimiques ram Mathematisches Modell Chemical processes Mathematical models Verfahrenstechnik (DE-588)4062781-0 gnd Mathematisches Modell (DE-588)4114528-8 gnd |
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title | The application of mathematical modelling to process development and design |
title_auth | The application of mathematical modelling to process development and design |
title_exact_search | The application of mathematical modelling to process development and design |
title_exact_search_txtP | The application of mathematical modelling to process development and design |
title_full | The application of mathematical modelling to process development and design L. M. Rose |
title_fullStr | The application of mathematical modelling to process development and design L. M. Rose |
title_full_unstemmed | The application of mathematical modelling to process development and design L. M. Rose |
title_short | The application of mathematical modelling to process development and design |
title_sort | the application of mathematical modelling to process development and design |
topic | Génie chimique - Modèles mathématiques ram Réacteurs chimiques ram Mathematisches Modell Chemical processes Mathematical models Verfahrenstechnik (DE-588)4062781-0 gnd Mathematisches Modell (DE-588)4114528-8 gnd |
topic_facet | Génie chimique - Modèles mathématiques Réacteurs chimiques Mathematisches Modell Chemical processes Mathematical models Verfahrenstechnik |
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