Partial Differential Equations and Fluid Mechanics
Title | Partial Differential Equations and Fluid Mechanics PDF eBook |
Author | James C. Robinson |
Publisher | Cambridge University Press |
Pages | 270 |
Release | 2009-07-16 |
Genre | Mathematics |
ISBN | 052112512X |
Reviews and research articles summarizing a wide range of active research topics in fluid mechanics.
Random Perturbation of PDEs and Fluid Dynamic Models
Title | Random Perturbation of PDEs and Fluid Dynamic Models PDF eBook |
Author | Franco Flandoli |
Publisher | Springer Science & Business Media |
Pages | 187 |
Release | 2011-03-11 |
Genre | Mathematics |
ISBN | 3642182305 |
This volume explores the random perturbation of PDEs and fluid dynamic models. The text describes the role of additive and bilinear multiplicative noise, and includes examples of abstract parabolic evolution equations.
Riemann Solvers and Numerical Methods for Fluid Dynamics
Title | Riemann Solvers and Numerical Methods for Fluid Dynamics PDF eBook |
Author | Eleuterio F. Toro |
Publisher | Springer Science & Business Media |
Pages | 635 |
Release | 2013-04-17 |
Genre | Technology & Engineering |
ISBN | 366203915X |
High resolution upwind and centered 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. Applications include: compressible, steady, unsteady, reactive, viscous, non-viscous and free surface flows.
Energy Methods for Free Boundary Problems
Title | Energy Methods for Free Boundary Problems PDF eBook |
Author | S.N. Antontsev |
Publisher | Springer Science & Business Media |
Pages | 338 |
Release | 2012-12-06 |
Genre | Technology & Engineering |
ISBN | 1461200911 |
For the past several decades, the study of free boundary problems has been a very active subject of research occurring in a variety of applied sciences. What these problems have in common is their formulation in terms of suitably posed initial and boundary value problems for nonlinear partial differential equations. Such problems arise, for example, in the mathematical treatment of the processes of heat conduction, filtration through porous media, flows of non-Newtonian fluids, boundary layers, chemical reactions, semiconductors, and so on. The growing interest in these problems is reflected by the series of meetings held under the title "Free Boundary Problems: Theory and Applications" (Ox ford 1974, Pavia 1979, Durham 1978, Montecatini 1981, Maubuisson 1984, Irsee 1987, Montreal 1990, Toledo 1993, Zakopane 1995, Crete 1997, Chiba 1999). From the proceedings of these meetings, we can learn about the different kinds of mathematical areas that fall within the scope of free boundary problems. It is worth mentioning that the European Science Foundation supported a vast research project on free boundary problems from 1993 until 1999. The recent creation of the specialized journal Interfaces and Free Boundaries: Modeling, Analysis and Computation gives us an idea of the vitality of the subject and its present state of development. This book is a result of collaboration among the authors over the last 15 years.
Numerical Methods in Fluid Dynamics
Title | Numerical Methods in Fluid Dynamics PDF eBook |
Author | Gary A. Sod |
Publisher | Cambridge University Press |
Pages | 464 |
Release | 1985-10-31 |
Genre | Mathematics |
ISBN | 9780521259248 |
Here is an introduction to numerical methods for partial differential equations with particular reference to those that are of importance in fluid dynamics. The author gives a thorough and rigorous treatment of the techniques, beginning with the classical methods and leading to a discussion of modern developments. For easier reading and use, many of the purely technical results and theorems are given separately from the main body of the text. The presentation is intended for graduate students in applied mathematics, engineering and physical sciences who have a basic knowledge of partial differential equations.
Singular Limits in Thermodynamics of Viscous Fluids
Title | Singular Limits in Thermodynamics of Viscous Fluids PDF eBook |
Author | Eduard Feireisl |
Publisher | Springer Science & Business Media |
Pages | 411 |
Release | 2009-03-28 |
Genre | Science |
ISBN | 3764388439 |
Many interesting problems in mathematical fluid dynamics involve the behavior of solutions of nonlinear systems of partial differential equations as certain parameters vanish or become infinite. Frequently the limiting solution, provided the limit exists, satisfies a qualitatively different system of differential equations. This book is designed as an introduction to the problems involving singular limits based on the concept of weak or variational solutions. The primitive system consists of a complete system of partial differential equations describing the time evolution of the three basic state variables: the density, the velocity, and the absolute temperature associated to a fluid, which is supposed to be compressible, viscous, and heat conducting. It can be represented by the Navier-Stokes-Fourier-system that combines Newton's rheological law for the viscous stress and Fourier's law of heat conduction for the internal energy flux. As a summary, this book studies singular limits of weak solutions to the system governing the flow of thermally conducting compressible viscous fluids.
Principles of Computational Fluid Dynamics
Title | Principles of Computational Fluid Dynamics PDF eBook |
Author | Pieter Wesseling |
Publisher | Springer Science & Business Media |
Pages | 651 |
Release | 2009-12-21 |
Genre | Mathematics |
ISBN | 3642051456 |
This up-to-date book gives an account of the present state of the art of numerical methods employed in computational fluid dynamics. The underlying numerical principles are treated in some detail, using elementary methods. The author gives many pointers to the current literature, facilitating further study. This book will become the standard reference for CFD for the next 20 years.