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本帖最后由 zhang330124 于 2012-3-17 11:44 编辑
不知道有没有重复的,只知道好用,就传上来了。
《teach yourself the basics of aspen plus》1—14章
10179
CONTENTS
PREFACE xiii
1 INTRODUCTION TO ASPEN PLUS 1
1.1 Starting Aspen Plus / 2
1.2 Graphic Users Interface / 3
1.3 Next Button / 4
1.4 Setup Specifications Display / 5
1.5 Simulation Options / 6
1.6 Units / 6
1.7 Components / 8
1.8 Properties / 10
1.9 Streams / 12
1.10 Blocks / 14
1.11 Viewing Results / 14
1.12 Object Manager / 16
1.13 Plotting Results / 17
References / 19
2 PROPERTIES 21
2.1 Pure Component Data Banks / 21
2.2 Property Analysis / 24
2.3 Property Estimation / 25
2.4 Workshops / 34
References / 35
3 THESIMPLEBLOCKS 37
3.1 Mixer/Splitter Blocks / 37
3.1.1 Mixer Block / 37
3.1.2 Fsplit Block / 38
3.2 Simple Separator Blocks / 39
3.2.1 Sep Block / 40
3.2.2 Sep2 Block / 41
3.3 Some Manipulator Blocks / 42
3.3.1 Dupl Block / 42
3.3.2 Mult Block / 44
3.4 Workshops / 45
4 PROCESSES WITH RECYCLE 49
4.1 Blocks with Recycle / 50
4.2 Heuristics / 53
4.3 Workshops / 54
References / 58
5 FLOWSHEETING AND MODEL ANALYSIS TOOLS 59
5.1 Introduction to Fortran in Aspen Plus / 59
5.2 Basic Interpreted Fortran Capabilities / 60
5.2.1 Primary Fortran Operators / 61
5.2.2 Precedence of Calculations / 61
5.2.3 Statement Format / 62
5.2.4 Program Logic Control / 62
5.3 Sensitivity Function / 63
5.4 Design Specification / 65
5.5 Calculator Function / 67
5.6 Transfer Function / 69
5.7 Workshops / 71
References / 72
6 THE DATA REGRESSION SYSTEM 73
6.1 Parameters of Equations of State / 74
6.2 Parameters of Activity Coefficient Equations / 76
6.3 Basic Ideas of Regression / 77
6.4 Mathematics of Regression / 80
6.4.1 Newton–Raphson Method for Solution of Nonlinear
Equations / 80
6.4.2 Direct Optimization of an Objective Function / 81
6.5 Practical Aspects of Regression of VLE or LLE Data / 82
6.5.1 Regression of VLE Data / 82
6.5.2 Regression of LLE Data / 85
6.6 Workshops / 87
References / 90
7 FLASHES AND DECANTER 93
7.1 Flash2 Block / 93
7.2 Flash3 Block / 96
7.3 Decanter Block / 99
7.4 Workshops / 101
References / 103
8 PRESSURE CHANGERS 105
8.1 Pump Block / 105
8.2 Compr Block / 105
8.3 MCompr Block / 107
8.4 Pipelines and Fittings / 107
8.5 Workshops / 109
Reference / 110
9 HEAT EXCHANGERS 111
9.1 Heater Block / 112
9.2 Heatx Block / 115
9.3 Mheatx Block / 118
9.4 Workshops / 118
References / 121
10 REACTORS 123
10.1 RStoic Block / 123
10.2 RYield Block / 125
10.3 REquil Block / 126
10.4 RGibbs Block / 128
10.5 Reactions for the Rigorous Models / 129
10.5.1 Equilibrium Class / 130
10.5.2 Powerlaw Class / 130
10.5.3 Langmuir–Hinshelwood–Hougen–Watson Class / 133
10.5.4 Generalized–Langmuir–Hinshelwood–Hougen–Watson
Class / 134
10.6 RCSTR Block / 134
10.7 RPlug Block / 135
10.8 RBatch Block / 138
10.9 Workshops / 139
References / 144
11 MULTISTAGE EQUILIBRIUM SEPARATORS 145
11.1 Basic Equations / 145
11.2 The Design Problem / 148
11.3 A Three-Product Distillation Example / 150
11.4 Preliminary Design and Rating Models / 154
11.4.1 DSTWU / 154
11.4.2 Distl / 156
11.5 Rigorous Models / 157
11.5.1 RadFrac / 158
11.5.2 Extract / 164
11.6 BatchSep / 167
11.7 Workshops / 170
References / 173
12 PROCESS FLOWSHEET DEVELOPMENT 175
12.1 Heuristics / 175
12.2 Example: The Production of Styrene / 176
12.3 A Model with Basic Blocks / 177
12.4 Properties / 177
12.5 Rigorous Flash and Decanter / 178
12.6 Analyzing the Rigorous Distillation / 181
12.7 Integrating the Rigorous Distillation Into the Flowsheet / 181
12.7.1 Selection of a Tear Stream / 183
12.7.2 Sequence of Calculations / 183
12.8 Reactor Feed / 183
12.9 Miscellaneous Considerations / 185
12.10 Workshops / 185
Reference / 189
13 OPTIMIZATION 191
13.1 Optimization Example / 192
13.2 Workshops / 195
References / 198
14 COMPLEX EQUILIBRIUM STAGE SEPARATIONS 199
14.1 Energy Integration Applications / 199
14.2 Homogeneous Azeotropic Distillation / 202
14.3 Extractive Distillation / 203
14.4 Heterogeneous Operations / 205
14.5 Workshops / 207
References / 211
INDEX 213
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