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Computational Methods for Astrophysical Fluid Flow: Saas-Fee Advanced Course 27. Lecture Notes 1997 Swiss Society for Astrophysics and Astronomy: Saas-Fee Advanced Course, cartea 27

Autor Randall J. LeVeque Editat de Oskar Steiner Autor Dimitri Mihalas Editat de A. Gautschy Autor E.A. Dorfi, Ewald Müller
en Limba Engleză Hardback – 19 aug 1998
This book leads directly to the most modern numerical techniques for compressible fluid flow, with special consideration given to astrophysical applications. Emphasis is put on high-resolution shock-capturing finite-volume schemes based on Riemann solvers. The applications of such schemes, in particular the PPM method, are given and include large-scale simulations of supernova explosions by core collapse and thermonuclear burning and astrophysical jets. Parts two and three treat radiation hydrodynamics. The power of adaptive (moving) grids is demonstrated with a number of stellar-physical simulations showing very crispy shock-front structures.
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Specificații

ISBN-13: 9783540644484
ISBN-10: 3540644482
Pagini: 524
Ilustrații: XIV, 510 p. 218 illus., 6 illus. in color.
Dimensiuni: 155 x 235 x 37 mm
Greutate: 0.84 kg
Ediția:1998
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Saas-Fee Advanced Course

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Nonlinear Conservation Laws and Finite Volume Methods.- Radiation Hydrodynamics.- Radiation Hydrodynamics: Numerical Aspects and Applications.- Simulation of Astrophysical Fluid Flow.

Recenzii

From the reviews
"Gives detailed web addresses and information where such codes can be downloaded (...). In conclusion, I feel the book gives and excellent account of present-day astrophysical hydrodynamics."
A. Brandenburg, The Observatory, 1999

Textul de pe ultima copertă

Four lectures lead the reader from basic numerical methods for solving hyperbolic partial differential equations to the application of complex simulation codes to selected astrophysical problems. The text highlights the powerful capabilities, the use, and the pitfalls of computational astrophysics. Difficult topics pertaining to astrophysical problem solving, such as gravitation, magnetic fields, reactive flow, and relativity, are addressed. Two lectures are devoted to radiation hydrodynamics. They treat the derivation of the basic equations and numerical methods. This book will be useful to students and researchers in astrophysics and applied mathematics.

Caracteristici

This book can be used also as a textbook for scientific modelling in fluid mechanics and astrophysics