In this translation of the German edition, the authors provide insight into the numerical simulation of fluid flow. Using a simple numerical method as an expository example, the individual steps of scientific computing are presented:
- The derivation of the mathematical model.
- The discretization of the model equations.
- The development of algorithms, - parallelization.
- Visualization of the computed data.
>In addition to the treatment of the basic equations for modeling laminar, transient flow of viscous, incompressible fluids - the Navier–Stokes equations - the authors look at the simulation of free surface flows, energy and chemical transport, and turbulence.
Detailed hints for the implementation of the various algorithms enable readers to write their own flow simulation program from scratch. The variety of applications is shown in several simulation results, including 92 black-and-white and 18 color illustrations. Moreover, after reading this book, readers should be able to understand more enhanced algorithms of computational fluid dynamics and to apply their new knowledge of modeling, discretization, parallelization, and visualization to other scientific fields, where numerical simulation has established itself, in addition to theoretical investigations and practical experiments, as a new path for uncovering the laws of nature. Among these fields are the examination of elastic solids, combustion, melting and coating processes, and crystal growth, as well as weather prediction.
Sprache
Verlagsort
Zielgruppe
Für höhere Schule und Studium
Für Beruf und Forschung
Produkt-Hinweis
Broschur/Paperback
Klebebindung
Illustrationen
Maße
Höhe: 228 mm
Breite: 152 mm
Dicke: 12 mm
Gewicht
ISBN-13
978-0-89871-398-5 (9780898713985)
Schweitzer Klassifikation
Notation; 1. Numerical simulation - a key technology of the future; 2. The mathematical description of flows; 3. The numerical treatment of the Navier-Stokes equations; 4. Visualization techniques; 5. Example applications; 6. Free boundary value problems; 7. Example applications for free boundary value problems; 8. Parallelization; 9. Energy transport; 10. Turbulence; 11. Extension to Three dimensions; 12. Concluding remarks; Appendix A; Appendix B; Bibliography; Index.