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Riemann Solvers and Numerical Methods for Fluid Dynamics
(Englisch)
A Practical Introduction
Eleuterio F. Toro

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Riemann Solvers and Numerical Methods for Fluid Dynamics

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Produktbeschreibung

Comprehensive treatment of subject, practical approach given in details

Useful in practice

Self-contained presentation of methods


High resolution upwind and centered methods are a mature generation of computational techniques. They are applicable to a wide range of engineering and scientific disciplines, Computational Fluid Dynamics (CFD) being the most prominent up to now. This textbook gives a comprehensive, coherent and practical presentation of this class of techniques. For its third edition the book has been thoroughly revised to contain new material.

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High resolution upwind and centred methods are today a mature generation of computational techniques applicable to a wide range of engineering and scientific disciplines, Computational Fluid Dynamics (CFD) being the most prominent up to now. This textbook gives a comprehensive, coherent and practical presentation of this class of techniques. The book is designed to provide readers with an understanding of the basic concepts, some of the underlying theory, the ability to critically use the current research papers on the subject, and, above all, with the required information for the practical implementation of the methods.  Direct applicability of the methods  include: compressible, steady, unsteady, reactive, viscous, non-viscous and free surface flows. For this third edition the book was thoroughly revised and  contains substantially more, and new material both in its fundamental as well as in its applied parts.


The Equations of Fluid Dynamics.- Notions on Hyperbolic Partial Differential Equations.- Some Properties of the Euler Equations.- The Riemann Problem for the Euler Equations.- Notions on Numerical Methods.- The Method of Godunov for Non#x2014;linear Systems.- Random Choice and Related Methods.- Flux Vector Splitting Methods.- Approximate#x2014;State Riemann Solvers.- The HLL and HLLC Riemann Solvers.- The Riemann Solver of Roe.- The Riemann Solver of Osher.- High#x2013;Order and TVD Methods for Scalar Equations.- High#x2013;Order and TVD Schemes for Non#x2013;Linear Systems.- Splitting Schemes for PDEs with Source Terms.- Methods for Multi#x2013;Dimensional PDEs.- Multidimensional Test Problems.- FORCE Fluxes in Multiple Space Dimensions.- The Generalized Riemann Problem.- The ADER Approach.- Concluding Remarks.


Summary of contents:
Governing Equations
Mathematical Preliminaries
Some Properties of the Euler Equations
The Riemann Problem for the Euler Equations
Notions on Numerical Methods
The Method of Godunov for Non-linear Systems
Random Choice and Related Methods
The Flux Vector Splitting Approach
Approximate-state Riemann Solvers
HLL-Type Riemann Solvers
The Riemann Solver of Roe
The Riemann Solver of Osher
TVD Methods for Scalar Problems
TVD Methods for Non-linear Systems
Schemes for Source Terms
Methods for Multi-dimensional Problems
The Shallow Water Equations
Methods for the Navier-Stokes Equations
The Riemann Problem for General Materials
Selected Topics

Inhaltsverzeichnis



The Equations of Fluid Dynamics.- Notions on Hyperbolic Partial Differential Equations.- Some Properties of the Euler Equations.- The Riemann Problem for the Euler Equations.- Notions on Numerical Methods.- The Method of Godunov for Non#x2014;linear Systems.- Random Choice and Related Methods.- Flux Vector Splitting Methods.- Approximate#x2014;State Riemann Solvers.- The HLL and HLLC Riemann Solvers.- The Riemann Solver of Roe.- The Riemann Solver of Osher.- High#x2013;Order and TVD Methods for Scalar Equations.- High#x2013;Order and TVD Schemes for Non#x2013;Linear Systems.- Splitting Schemes for PDEs with Source Terms.- Methods for Multi#x2013;Dimensional PDEs.- Multidimensional Test Problems.- FORCE Fluxes in Multiple Space Dimensions.- The Generalized Riemann Problem.- The ADER Approach.- Concluding Remarks.


Klappentext



High resolution upwind and centered methods are a mature generation of computational techniques. They are applicable to a wide range of engineering and scientific disciplines, Computational Fluid Dynamics (CFD) being the most prominent up to now. This textbook gives a comprehensive, coherent and practical presentation of this class of techniques. For its third edition the book has been thoroughly revised to contain new material.




Comprehensive treatment of subject, practical approach given in details

Useful in practice

Self-contained presentation of methods

leseprobe



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