Computational fluid dynamics for engineers: from panel to Navier-Stokes methods with computer programs
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Long Beach, Calif.
Horizons Publ.
2005
Berlin Springer |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 396 S. 1 CD-ROM (12 cm) |
ISBN: | 3540244514 0976654504 |
Internformat
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Datensatz im Suchindex
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adam_text | TUNCER CEBECI JIAN P. SHAO
FASSI KAFYEKE ERIC LAURENDEAU
COMPUTATIONAL
FLUID DYNAMICS
FOR ENGINEERS
FROM PANEL TO NAVIER-STOKES METHODS
WITH COMPUTER PROGRAMS
WITH 152 FIGURES, 19 TABLES, 84 PROBLEMS
AND A CD-ROM
HORIZONS
PUBLISHING
4Y SPRINGER
CONTENTS
1. INTRODUCTION 1
1.1 SKIN-FRICTION DRAG REDUCTION 2
1.1.1 LAMINAR FLOW CONTROL 3
1.1.2 CALCULATIONS FOR NLF AND HLFC WINGS 6
1.2 PREDICTION OF THE MAXIMUM LIFT COEFFICIENT
OF MULTIELEMENT WINGS 10
1.3 AIRCRAFT DESIGN AND POWER PLANT INTEGRATION 19
1.4 PREDICTION OF AIRCRAFT PERFORMANCE DEGRADATION DUE TO ICING . . 23
1.4.1 PREDICTION OF ICE SHAPES 26
1.4.2 PREDICTION OF AERODYNAMIC PERFORMANCE
CHARACTERISTICS 28
1.5 AERODYNAMICS OF GROUND-BASED VEHICLES 34
1.5.1 APPLICATIONS OF CFD TO AUTOMOBILES 36
REFERENCES 39
2. CONSERVATION EQUATIONS 41
2.1 INTRODUCTION 41
2.2 NAVIER-STOKES EQUATIONS 42
2.2.1 NAVIER-STOKES EQUATIONS: DIFFERENTIAL FORM 42
2.2.2 NAVIER-STOKES EQUATIONS: INTEGRAL FORM 48
2.2.3 NAVIER-STOKES EQUATIONS: VECTOR-VARIABLE FORM 50
2.2.4 NAVIER STOKES EQUATIONS: TRANSFORMED FORM 51
2.3 REYNOLDS-AVERAGED NAVIER-STOKES EQUATIONS 55
2.4 REDUCED FORMS OF THE NAVIER-STOKES EQUATIONS 57
2.4.1 INVISCID FLOW 60
2.4.2 STOKES FLOW 62
2.4.3 BOUNDARY LAYERS 62
2.5 STABILITY EQUATIONS 64
2.6 CLASSIFICATION OF CONSERVATION EQUATIONS 67
X CONTENTS
2.7 BOUNDARY CONDITIONS 70
REFERENCES 72
PROBLEMS 73
3. TURBULENCE MODELS 81
3.1 INTRODUCTION 81
3.2 ZERO-EQUATION MODELS 83
3.2.1 CEBECI-SMITH MODEL 83
3.2.2 BALDWIN-LOMAX MODEL 85
3.3 ONE-EQUATION MODELS 87
3.4 TWO-EQUATION MODELS 88
3.5 INITIAL CONDITIONS 90
REFERENCES 93
4. NUMERICAL METHODS FOR MODEL PARABOLIC
AND ELLIPTIC EQUATIONS 95
4.1 INTRODUCTION 95
4.2 MODEL EQUATIONS 96
4.3 DISCRETIZATION OF DERIVATIVES WITH FINITE DIFFERENCES 98
4.4 FINITE-DIFFERENCE METHODS FOR PARABOLIC EQUATIONS 100
4.4.1 EXPLICIT METHODS 100
4.4.2 IMPLICIT METHODS: CRANK-NICOLSON 105
4.4.3 AN IMPLICIT METHOD: KELLER S BOX METHOD 109
4.5 FINITE-DIFFERENCE METHODS FOR ELLIPTIC EQUATIONS 113
4.5.1 DIRECT METHODS 115
4.5.2 ITERATIVE METHODS 121
4.5.3 MULTIGRID METHOD 127
REFERENCES 132
PROBLEMS 132
5. NUMERICAL METHODS FOR MODEL HYPERBOLIC EQUATIONS 141
5.1 INTRODUCTION 141
5.2 EXPLICIT METHODS: TWO-STEP LAX-WENDROFF METHOD 146
5.3 EXPLICIT METHODS: MACCORMACK METHOD 148
5.4 IMPLICIT METHODS 149
5.5 UPWIND METHODS 152
5.6 FINITE-VOLUME METHODS 157
5.7 CONVERGENCE AND STABILITY 165
5.8 NUMERICAL DISSIPATION AND DISPERSION: ARTIFICIAL VISCOSITY 170
REFERENCES 173
PROBLEMS 174
CONTENTS XI
6. INVISCID FLOW EQUATIONS FOR INCOMPRESSIBLE FLOWS 179
6.1 INTRODUCTION 179
6.2 LAPLACE EQUATION AND ITS FUNDAMENTAL SOLUTIONS 179
6.3 FINITE-DIFFERENCE METHOD 182
6.4 HESS- SMITH PANEL METHOD 189
6.5 A PANEL PROGRAM FOR AIRFOILS 194
6.5.1 MAIN PROGRAM 195
6.5.2 SUBROUTINE COEF 196
6.5.3 SUBROUTINE GAUSS 196
6.5.4 SUBROUTINE VPDIS 196
6.5.5 SUBROUTINE CLCM 196
6.6 APPLICATIONS OF THE PANEL METHOD 197
6.6.1 FLOWFIELD AND SECTION CHARACTERISTICS
OF A NACA 0012 AIRFOIL 197
6.6.2 FLOW OVER A CIRCULAR CYLINDER 198
6.6.3 MULTIELEMENT AIRFOILS 201
APPENDIX 6A FINITE DIFFERENCE PROGRAM FOR A CIRCULAR CYLINDER. . . . 202
APPENDIX 6B PANEL PROGRAM FOR AN AIRFOIL 203
6B.1 MAIN PROGRAM 203
6B.2 SUBROUTINE COEF 203
6B.3 SUBROUTINE VPDIS 203
APPENDIX 6C PANEL PROGRAM FOR MULTIELEMENT AIRFOILS 203
6C.1 MAIN PROGRAM 203
6C.2 SUBROUTINE COEF 204
6C.3 SUBROUTINE VPDIS 204
6C.4 SUBROUTINE CLCM 204
REFERENCES 204
PROBLEMS 204
7. BOUNDARY-LAYER EQUATIONS 211
7.1 INTRODUCTION 211
7.2 STANDARD, INVERSE AND INTERACTION PROBLEMS 212
7.3 NUMERICAL METHOD FOR THE STANDARD PROBLEM 216
7.3.1 NUMERICAL FORMULATION 218
7.3.2 NEWTON S METHOD 220
7.4 COMPUTER PROGRAM BLP 222
7.4.1 MAIN 222
7.4.2 SUBROUTINE INPUT 222
7.4.3 SUBROUTINE IVPL 225
7.4.4 SUBROUTINE GROWTH 225
7.4.5 SUBROUTINE COEF3 226
7.4.6 SUBROUTINE SOLV3 226
XII CONTENTS
7.4.7 SUBROUTINE OUTPUT 229
7.4.8 SUBROUTINE EDDY 229
7.5 APPLICATIONS OF BLP 229
7.5.1 SIMILAR LAMINAR FLOWS 230
7.5.2 NONSIMILAR FLOWS 231
REFERENCES 237
PROBLEMS. . 237
8. STABILITY AND TRANSITION 243
8.1 INTRODUCTION 243
8.2 SOLUTION OF THE ORR-SORNMERFELD EQUATION 246
8.2.1 NUMERICAL FORMULATION 247
8.2.2 EIGENVALUE PROCEDURE 249
8.3 E
N
-METHOD 253
8.4 COMPUTER PROGRAM STP 256
8.4.1 MAIN 257
8.4.2 SUBROUTINE VELPRO 257
8.4.3 SUBROUTINE CSAVE 258
8.4.4 SUBROUTINE NEWTON 258
8.4.5 SUBROUTINE NEWTONI 258
8.5 APPLICATIONS OF STP 259
8.5.1 STABILITY DIAGRAMS FOR BLASIUS FLOW 259
8.5.2 TRANSITION PREDICTION FOR FLAT PLATE FLOW 259
8.5.3 TRANSITION PREDICTION FOR AIRFOIL FLOW 261
REFERENCES 261
PROBLEMS 262
9. GRID GENERATION 263
9.1 INTRODUCTION 263
9.2 BASIC CONCEPTS IN GRID GENERATION AND MAPPING 264
9.3 STRETCHED GRIDS 267
9.4 ALGEBRAIC METHODS 268
9.4.1 ALGEBRAIC GRID GENERATION USING TRANSFINITE
INTERPOLATION 271
9.5 DIFFERENTIAL EQUATION METHODS 277
9.6 CONFORMAL MAPPING METHODS 282
9.6.1 PARABOLIC MAPPING FUNCTION 283
9.6.2 WIND TUNNEL MAPPING FUNCTION 285
9.7 UNSTRUCTURED GRIDS 288
9.7.1 DELAUNAY TRIANGULATION 289
9.7.2 ADVANCING FRONT METHOD 292
REFERENCES 293
CONTENTS XIII
10. INVISCID COMPRESSIBLE FLOW 295
10.1 INTRODUCTION 295
10.2 SHOCK JUMP RELATIONS 296
10.3 SHOCK CAPTURING 299
10.4 THE TRANSONIC SMALL DISTURBANCE (TSD) EQUATION 301
10.5 MODEL PROBLEM FOR THE TRANSONIC SMALL DISTURBANCE EQUATION:
FLOW OVER A NON-LIFTING AIRFOIL 302
10.5.1 DISCRETIZED EQUATION 303
10.5.2 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 304
10.6 SOLUTION OF FULL-POTENTIAL EQUATION 308
10.7 BOUNDARY CONDITIONS FOR THE EULER EQUATIONS 309
10.8 STABILITY ANALYSIS OF THE EULER EQUATIONS 311
10.9 MACCORMACK METHOD FOR COMPRESSIBLE EULER EQUATIONS 312
10.10 MODEL PROBLEM FOR THE MACCORMACK METHOD:
UNSTEADY SHOCK TUBE 313
10.10.1 INITIAL CONDITIONS 314
10.10.2 BOUNDARY CONDITIONS 314
10.10.3 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 314
10.11 MODEL PROBLEM FOR THE MACCORMACK METHOD:
QUASI 1-D NOZZLE 315
10.11.1 INITIAL CONDITIONS 316
10.11.2 BOUNDARY CONDITIONS 317
10.11.3 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 318
10.12 BEAM-WARMING METHOD FOR COMPRESSIBLE EULER EQUATIONS .... 320
10.13 MODEL PROBLEM FOR THE IMPLICIT METHOD: UNSTEADY SHOCK TUBE 321
10.13.1 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 321
10.14 MODEL PROBLEM FOR THE IMPLICIT METHOD: QUASI-ID NOZZLE 322
10.14.1 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 325
REFERENCES 326
PROBLEMS 326
11. INCOMPRESSIBLE NAVIER-STOKES EQUATIONS 327
11.1 INTRODUCTION 327
11.2 ANALYSIS OF THE INCOMPRESSIBLE NAVIER-STOKES EQUATIONS 328
11.3 BOUNDARY CONDITIONS 329
11.4 ARTIFICIAL COMPRESSIBILITY METHOD: INS2D 331
11.4.1 DISCRETIZATION OF THE ARTIFICIAL TIME DERIVATIVES 331
11.4.2 DISCRETIZATION OF THE CONVECTIVE FLUXES 332
11.4.3 DISCRETIZATION OF THE VISCOUS FLUXES 334
11.4.4 SYSTEM OF DISCRETIZED EQUATION 335
11.5 MODEL PROBLEM: SUDDEN EXPANSION LAMINAR DUCT FLOW 336
11.5.1 DISCRETIZATION OF THE BOUNDARY CONDITIONS 337
XIV CONTENTS
11.5.2 INITIAL CONDITIONS 338
11.5.3 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 339
11.6 MODEL PROBLEM: LAMINAR AND TURBULENT FLAT PLATE FLOW 342
11.7 APPLICATIONS OF INS2D 344
REFERENCES 350
PROBLEMS 351
12. COMPRESSIBLE NAVIER-STOKES EQUATIONS 353
12.1 INTRODUCTION 353
12.2 COMPRESSIBLE NAVIER-STOKES EQUATIONS 354
12.2.1 PRACTICAL DIFFICULTIES 354
12.2.2 BOUNDARY CONDITIONS 355
12.3 MACCORMACK METHOD 356
12.4 BEAM-WARMING METHOD 357
12.5 FINITE VOLUME METHOD 361
12.6 MODEL PROBLEM: SUDDEN EXPANSION LAMINAR DUCT FLOW 365
12.6.1 INITIAL CONDITIONS 365
12.6.2 BOUNDARY CONDITIONS 365
12.6.3 SOLUTION PROCEDURE AND SAMPLE CALCULATIONS 367
APPENDIX 12A JACOBIAN MATRICES OF CONVECTION
AND DIFFUSION TERMS E, F, E
V
AND F
V
367
APPENDIX 12B TREATMENT OF THE REGION CLOSE TO THE BOUNDARIES
FOR EQ. (12.5.4) 370
REFERENCES 374
PROBLEMS 375
APPENDIX A COMPUTER PROGRAMS
ON THE ACCOMPANYING CD-ROM 377
APPENDIX B COMPUTER PROGRAMS
AVAILABLE FROM THE FIRST AUTHOR 381
SUBJECT INDEX 391
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id | DE-604.BV019806135 |
illustrated | Not Illustrated |
indexdate | 2024-07-09T20:06:33Z |
institution | BVB |
isbn | 3540244514 0976654504 |
language | English |
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physical | XIV, 396 S. 1 CD-ROM (12 cm) |
publishDate | 2005 |
publishDateSearch | 2005 |
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publisher | Horizons Publ. Springer |
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spelling | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs Tuncer Cebeci ... Long Beach, Calif. Horizons Publ. 2005 Berlin Springer XIV, 396 S. 1 CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier Dinâmica dos fluídos larpcal Numerieke methoden gtt Reologie gtt Fluid dynamics Navier-Stokes equations Numerische Strömungssimulation (DE-588)4690080-9 gnd rswk-swf Numerische Strömungssimulation (DE-588)4690080-9 s DE-604 Cebeci, Tuncer 1934- Sonstige (DE-588)121620980 oth DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013131632&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs Dinâmica dos fluídos larpcal Numerieke methoden gtt Reologie gtt Fluid dynamics Navier-Stokes equations Numerische Strömungssimulation (DE-588)4690080-9 gnd |
subject_GND | (DE-588)4690080-9 |
title | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs |
title_auth | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs |
title_exact_search | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs |
title_full | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs Tuncer Cebeci ... |
title_fullStr | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs Tuncer Cebeci ... |
title_full_unstemmed | Computational fluid dynamics for engineers from panel to Navier-Stokes methods with computer programs Tuncer Cebeci ... |
title_short | Computational fluid dynamics for engineers |
title_sort | computational fluid dynamics for engineers from panel to navier stokes methods with computer programs |
title_sub | from panel to Navier-Stokes methods with computer programs |
topic | Dinâmica dos fluídos larpcal Numerieke methoden gtt Reologie gtt Fluid dynamics Navier-Stokes equations Numerische Strömungssimulation (DE-588)4690080-9 gnd |
topic_facet | Dinâmica dos fluídos Numerieke methoden Reologie Fluid dynamics Navier-Stokes equations Numerische Strömungssimulation |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013131632&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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