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Numerical and computational methods play a major role in modelling compressible flow and are important tools in solving fluid dynamical problems faced in many areas of science and technology. This book thoroughly surveys and analyzes up-to-date methods, while reviewing the basic theoretical mathematical analysis.
This book provides a comprehensive introduction to the mathematical
theory of compressible flow, describing both inviscid and viscous
compressible flow, which are governed by the Euler and the
Navier-Stokes equations respectively. The method of presentation
allows readers with different backgrounds to focus on various
modules of the material, either in part or more fully. Chapters
include detailed heuristic arguments providing motivation for
technical aspects that are rigorously presented later on in the
text; for instance, the existence theory for steady and unsteady
Navier-Stokes equations of isentropic compressible flow, and
two-by-two systems of Euler equations in one space dimension. These
parts are presented in a textbook style with auxiliary material in
supporting sections and appendices. The book includes a rich index
and extensive bibliography, thus allowing for quick orientation
among the vast collection of literature on the mathematical theory
of compressible flow, as well as in the book itself.
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