Applied Shape Optimization for Fluids (Numerical Mathematics and Scientific Computation)
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Product Description
The fields of computational fluid dynamics (CFD) and optimal shape design (OSD) have received considerable attention in the recent past, and are of practical importance for many engineering applications. The present book deals with shape optimization problems for fluids, with the equations needed for their understanding (Euler and Navier Stokes), and with the numerical simulation of these problems. Automatic differentiation, approximate gradients, and automatic mesh refinement as the new tools of optimal shape design are introduced, and their implementation into the industrial environments of aerospace and automobile equipment industry explained and illustrated.
Product Details
- Amazon Sales Rank: #1306032 in Books
- Published on: 2001-03-08
- Original language: English
- Number of items: 1
- Binding: Hardcover
- 272 pages
Editorial Reviews
Review
... covers a wide range of techniques that can be utilized for the optimization of shapes in fluid dynamics. (ZAMM )
... a tour de force containing many interesting ideas from diverse communities and plenty of examples. (ZAMM )
I found it very stimulating and furthermore convincing in its basic tenet that gradient based optimization is workable and highly competetive for shape optimization. (ZAMM )
About the Author
Bijan Mohammadi, Professor of Mathematics, University of Montpellier II, France. Olivier Pironneau, Professor of Mathematics, Laboratoire d'Analyse Numerique, University of Paris VI, France
