Numerical simulation in fluid dynamics: a practical introduction
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Bibliographische Detailangaben
1. Verfasser: Griebel, Michael 1960- (VerfasserIn)
Format: Elektronisch E-Book
Sprache:English
Veröffentlicht: Philadelphia, Pa. Society for Industrial and Applied Mathematics (SIAM, 3600 Market Street, Floor 6, Philadelphia, PA 19104) 1997
Schriftenreihe:SIAM monographs on mathematical modeling and computation 3
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Beschreibung:Mode of access: World Wide Web. - System requirements: Adobe Acrobat Reader
Includes bibliographical references (s. 201-212) and index
Notation -- 1. Numerical simulation, a key technology of the future -- Physical experiments, mathematical modeling, and numerical simulation -- Fluids and flows -- Numerical flow simulation -- 2. The mathematical description of flows -- The mathematical model -- The Navier-Stokes equations -- The derivation of the Navier-Stokes equations -- Dynamic similarity of flows -- 3. The numerical treatment of the Navier-Stokes equations -- The discretization -- The algorithm -- Implementation -- Treatment of general geometries -- 4. Visualization techniques -- Standard techniques -- Flow visualization by particle tracing and streaklines -- Stream function and vorticity -- 5. Example applications -- Lid-driven cavity -- Flow over a backward-facing step -- Flow past an obstacle -- Pipe junction -- Flow through complex geometries -- Fluid-structure interaction -- 6. Free boundary value problems -- Determination of the domain shape -- Conditions along the free boundary -- The extended algorithm -- Implementation -- 7. Example applications for free boundary value problems -- The breaking dam -- The splash of a liquid drop -- Free-surface flow over a step -- Injection molding -- Curtain coating -- 8. Parallelization -- Parallel computers and programming environments -- Domain decomposition as a parallelization strategy -- Parallelization of the flow code -- Implementation on a network of workstations using PVM -- Measuring performance --
9. Energy transport -- Extending the mathematical model by the energy equation -- Derivation of the energy equation -- On the validity of the Boussinesq approximation -- Discretization of the energy equation and extension of the algorithm -- Implementation -- Visualization of heat flow -- Example applications -- Chemical transport -- 10. Turbulence -- Turbulent flows -- Turbulence modeling -- Discretization of the k-* model -- Implementation -- Numerical results -- 11. Extension to three dimensions -- The continuous equations -- Discretization and algorithm -- Extensions and modifications -- Examples of 3D simulations -- 12. Concluding remarks -- Appendix A. Guidelines for parallelization using PVM -- Appendix B. Physical properties of fluids -- Bibliography -- Index
In this translation of the German edition, the authors provide insight into the numerical simulation of fluid flow. Using a simple numerical method as expository example, the individual steps of scientific computing are presented
Beschreibung:1 Online-Ressource (xvi, 217 Seiten)
ISBN:0898713986
9780898713985
DOI:10.1137/1.9780898719703

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