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Fundamental Algorithms in Computational Fluid Dynamics

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This book details algorithms for the numerical solution of the Euler and Navier-Stokes equations. It focuses on some classical algorithms as well as the underlying ideas based on the latest methods. Includes programming exercises.

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Titel: Fundamental Algorithms in Computational Fluid Dynamics
Autoren/Herausgeber: Thomas H. Pulliam, David W. Zingg
Aus der Reihe: Scientific Computation
Ausgabe: Softcover reprint of the original 1st ed. 2014

ISBN/EAN: 9783319381565

Seitenzahl: 211
Format: 23,5 x 15,5 cm
Produktform: Taschenbuch/Softcover
Gewicht: 349 g
Sprache: Englisch

Thomas H. Pulliam NASA Ames Research Center Moffett Field, CA 94035 Mountain View, USA David W. Zingg Institute for Aerospace Studies University of Toronto 35 St. George Street Toronto, Ontario, M5S 1A4.

Intended as a textbook for courses in computational fluid dynamics at the senior undergraduate or graduate level, this book is a follow-up to the book Fundamentals of Computational Fluid Dynamics by the same authors, which was published in the series Scientific Computation in 2001. Whereas the earlier book concentrated on the analysis of numerical methods applied to model equations, this new book concentrates on algorithms for the numerical solution of the Euler and Navier-Stokes equations. It focuses on some classical algorithms as well as the underlying ideas based on the latest methods. A key feature of the book is the inclusion of programming exercises at the end of each chapter based on the numerical solution of the quasi-one-dimensional Euler equations and the shock-tube problem. These exercises can be included in the context of a typical course and sample solutions are provided in each chapter, so readers can confirm that they have coded the algorithms correctly.

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