Numerical simulation in fluid dynamics a practical introduction

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Hauptverfasser: Griebel, Michael 1960- (VerfasserIn), Dornseifer, Thomas (VerfasserIn), Neunhoeffer, Tilman (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Philadelphia SIAM 1998
Schriftenreihe:SIAM monographs on mathematical modeling and computation
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Datensatz im Suchindex

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adam_text Contents Preface ix Notation xiii 1 Numerical Simulation—a Key Technology of the Future 1 1.1 Physical Experiments, Mathematical Modeling, and Numerical Simulation 1 1.2 Fluids and Flows 5 1.3 Numerical Flow Simulation 8 2 The Mathematical Description of Flows 11 2.1 The Mathematical Model: The Navier Stokes Equations 11 2.2 The Derivation of the Navier Stokes Equations 14 2.2.1 Conservation of Mass 15 2.2.2 Conservation of Momentum 16 2.3 Dynamic Similarity of Flows 17 3 The Numerical Treatment of the Navier—Stokes Equations 21 3.1 The Discretization 21 3.1.1 Simple Discretization Formulas 21 3.1.2 Discretization of the Navier Stokes Equations 26 3.2 The Algorithm 32 3.2.1 The Time Stepping Loop 32 3.2.2 The Discrete Momentum Equations 34 3.2.3 The Poisson Equation for the Pressure 35 3.2.4 The Stability Condition 39 3.2.5 Summary 39 3.3 Implementation 39 3.3.1 Problem Parameters and Data Structures 40 3.3.2 The Program 42 3.3.3 Guidelines for Modular Programming 43 3.4 Treatment of General Geometries 45 3.4.1 Introduction of Obstacle Domains 45 3.4.2 Implementation 48 4 Visualization Techniques 51 4.1 Standard Techniques 51 v vi Contents 4.1.1 Real Valued Functions 51 4.1.2 Vector Valued Functions 52 4.1.3 Graphics Tools and Standards 53 4.1.4 Implementation 54 4.2 Flow Visualization by Particle Tracing and Streaklines 54 4.2.1 Interpolation of Velocities in a Staggered Grid 55 4.2.2 Implementation 57 4.3 Stream Function and Vorticity 60 4.3.1 Definition and Interpretation 60 4.3.2 Implementation 62 4.3.3 The Stream Function Vorticity Formulation of the Navier Stokes Equations 63 5 Example Applications 67 5.1 Lid Driven Cavity 67 5.2 Flow over a Backward Facing Step 76 5.3 Flow Past an Obstacle 77 5.4 Pipe Junction 81 5.5 Flow through Complex Geometries 82 5.6 Fluid Structure Interaction 84 6 Free Boundary Value Problems 87 6.1 Determination of the Domain Shape 88 6.2 Conditions along the Free Boundary 90 6.3 The Extended Algorithm 97 6.4 Implementation 98 7 Example Applications for Free Boundary Value Problems 101 7.1 The Breaking Dam 101 7.2 The Splash of a Liquid Drop 101 7.3 Free Surface Flow over a Step 103 7.4 Injection Molding 104 7.5 Curtain Coating 105 8 Parallelization 109 8.1 Parallel Computers and Programming Environments 109 8.2 Domain Decomposition as a Parallelization Strategy 112 8.3 Parallelization of the Flow Code 113 8.4 Implementation on a Network of Workstations Using PVM .... 117 8.5 Measuring Performance 120 9 Energy Transport 123 9.1 Extending the Mathematical Model by the Energy Equation .... 123 9.2 Derivation of the Energy Equation 127 9.3 On the Validity of the Boussinesq Approximation 130 Contents vii 9.4 Discretization of the Energy Equation and Extension of the Algo¬ rithm 132 9.5 Implementation 135 9.6 Visualization of Heat Flow 136 9.7 Example Applications 138 9.7.1 Natural Convection with Heated Lateral Walls 138 9.7.2 Buoyancy Flow: Rayleigh Benard Convection 140 9.7.3 Fluid Trap 145 9.8 Chemical Transport 147 9.8.1 Modeling and Discretization 147 9.8.2 Implementation 148 9.8.3 Application Example 148 10 Turbulence 153 10.1 Turbulent Flows 153 10.2 Turbulence Modeling 155 10.2.1 Direct Numerical Simulation and Its Limitations 155 10.2.2 Basics of Turbulence Modeling 157 10.2.3 The k e Turbulence Model 160 10.2.4 Boundary Conditions for the k e Model 161 10.2.5 Overview of Other Turbulence Models 163 10.3 Discretization of the k e Model 164 10.4 Implementation 168 10.5 Numerical Results 169 11 Extension to Three Dimensions 173 11.1 The Continuous Equations 173 11.2 Discretization and Algorithm 174 11.3 Extensions and Modifications 176 11.4 Examples of Three Dimensional Simulations 177 11.4.1 Model Problems 177 11.4.2 Examples from Environmental Sciences, Architecture, and Engineering 179 11.4.3 Examples of Free Boundary Value Problems 185 11.4.4 Examples of Temperature Driven Flows 187 12 Concluding Remarks 193 A Guidelines for Parallelization Using PVM 195 B Physical Properties of Fluids 199 Bibliography 201 Index 213
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author Griebel, Michael 1960-
Dornseifer, Thomas
Neunhoeffer, Tilman
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spellingShingle Griebel, Michael 1960-
Dornseifer, Thomas
Neunhoeffer, Tilman
Numerical simulation in fluid dynamics a practical introduction
Simulation (DE-588)4055072-2 gnd
Strömungsmechanik (DE-588)4077970-1 gnd
Numerisches Verfahren (DE-588)4128130-5 gnd
subject_GND (DE-588)4055072-2
(DE-588)4077970-1
(DE-588)4128130-5
title Numerical simulation in fluid dynamics a practical introduction
title_alt Numerische Simulation in der Strömungsmechanik
title_auth Numerical simulation in fluid dynamics a practical introduction
title_exact_search Numerical simulation in fluid dynamics a practical introduction
title_full Numerical simulation in fluid dynamics a practical introduction Michael Griebel ; Thomas Dornseifer ; Tilman Neunhoeffer
title_fullStr Numerical simulation in fluid dynamics a practical introduction Michael Griebel ; Thomas Dornseifer ; Tilman Neunhoeffer
title_full_unstemmed Numerical simulation in fluid dynamics a practical introduction Michael Griebel ; Thomas Dornseifer ; Tilman Neunhoeffer
title_short Numerical simulation in fluid dynamics
title_sort numerical simulation in fluid dynamics a practical introduction
title_sub a practical introduction
topic Simulation (DE-588)4055072-2 gnd
Strömungsmechanik (DE-588)4077970-1 gnd
Numerisches Verfahren (DE-588)4128130-5 gnd
topic_facet Simulation
Strömungsmechanik
Numerisches Verfahren
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008251827&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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AT dornseiferthomas numericalsimulationinfluiddynamicsapracticalintroduction
AT neunhoeffertilman numericalsimulationinfluiddynamicsapracticalintroduction