Lectures on Navier-Stokes Equations

Lectures on Navier-Stokes Equations
Title Lectures on Navier-Stokes Equations PDF eBook
Author Tai-Peng Tsai
Publisher American Mathematical Soc.
Total Pages 224
Release 2018-08-09
Genre Fluid dynamics
ISBN 1470430967

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This book is a graduate text on the incompressible Navier-Stokes system, which is of fundamental importance in mathematical fluid mechanics as well as in engineering applications. The goal is to give a rapid exposition on the existence, uniqueness, and regularity of its solutions, with a focus on the regularity problem. To fit into a one-year course for students who have already mastered the basics of PDE theory, many auxiliary results have been described with references but without proofs, and several topics were omitted. Most chapters end with a selection of problems for the reader. After an introduction and a careful study of weak, strong, and mild solutions, the reader is introduced to partial regularity. The coverage of boundary value problems, self-similar solutions, the uniform L3 class including the celebrated Escauriaza-Seregin-Šverák Theorem, and axisymmetric flows in later chapters are unique features of this book that are less explored in other texts. The book can serve as a textbook for a course, as a self-study source for people who already know some PDE theory and wish to learn more about Navier-Stokes equations, or as a reference for some of the important recent developments in the area.

Navier–Stokes Equations

Navier–Stokes Equations
Title Navier–Stokes Equations PDF eBook
Author Grzegorz Łukaszewicz
Publisher Springer
Total Pages 395
Release 2016-04-12
Genre Mathematics
ISBN 331927760X

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This volume is devoted to the study of the Navier–Stokes equations, providing a comprehensive reference for a range of applications: from advanced undergraduate students to engineers and professional mathematicians involved in research on fluid mechanics, dynamical systems, and mathematical modeling. Equipped with only a basic knowledge of calculus, functional analysis, and partial differential equations, the reader is introduced to the concept and applications of the Navier–Stokes equations through a series of fully self-contained chapters. Including lively illustrations that complement and elucidate the text, and a collection of exercises at the end of each chapter, this book is an indispensable, accessible, classroom-tested tool for teaching and understanding the Navier–Stokes equations. Incompressible Navier–Stokes equations describe the dynamic motion (flow) of incompressible fluid, the unknowns being the velocity and pressure as functions of location (space) and time variables. A solution to these equations predicts the behavior of the fluid, assuming knowledge of its initial and boundary states. These equations are one of the most important models of mathematical physics: although they have been a subject of vivid research for more than 150 years, there are still many open problems due to the nature of nonlinearity present in the equations. The nonlinear convective term present in the equations leads to phenomena such as eddy flows and turbulence. In particular, the question of solution regularity for three-dimensional problem was appointed by Clay Institute as one of the Millennium Problems, the key problems in modern mathematics. The problem remains challenging and fascinating for mathematicians, and the applications of the Navier–Stokes equations range from aerodynamics (drag and lift forces), to the design of watercraft and hydroelectric power plants, to medical applications such as modeling the flow of blood in the circulatory system.

The Navier-Stokes Equations

The Navier-Stokes Equations
Title The Navier-Stokes Equations PDF eBook
Author P. G. Drazin
Publisher Cambridge University Press
Total Pages 212
Release 2006-05-25
Genre Mathematics
ISBN 9780521681629

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This 2006 book details exact solutions to the Navier-Stokes equations for senior undergraduates and graduates or research reference.

Navier-Stokes Equations

Navier-Stokes Equations
Title Navier-Stokes Equations PDF eBook
Author Peter Constantin
Publisher University of Chicago Press
Total Pages 200
Release 1988
Genre Mathematics
ISBN 0226115496

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Lecture notes of graduate courses given by the authors at Indiana University (1985-86) and the University of Chicago (1986-87). Paper edition, $14.95. Annotation copyright Book News, Inc. Portland, Or.

Navier-Stokes Equations and Nonlinear Functional Analysis

Navier-Stokes Equations and Nonlinear Functional Analysis
Title Navier-Stokes Equations and Nonlinear Functional Analysis PDF eBook
Author Roger Temam
Publisher SIAM
Total Pages 147
Release 1995-01-01
Genre Technology & Engineering
ISBN 0898713404

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This second edition attempts to arrive as simply as possible at some central problems in the Navier-Stokes equations.

Applied Analysis of the Navier-Stokes Equations

Applied Analysis of the Navier-Stokes Equations
Title Applied Analysis of the Navier-Stokes Equations PDF eBook
Author Charles R. Doering
Publisher Cambridge University Press
Total Pages 236
Release 1995
Genre Mathematics
ISBN 9780521445689

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This introductory physical and mathematical presentation of the Navier-Stokes equations focuses on unresolved questions of the regularity of solutions in three spatial dimensions, and the relation of these issues to the physical phenomenon of turbulent fluid motion.

Mathematical Tools for the Study of the Incompressible Navier-Stokes Equations andRelated Models

Mathematical Tools for the Study of the Incompressible Navier-Stokes Equations andRelated Models
Title Mathematical Tools for the Study of the Incompressible Navier-Stokes Equations andRelated Models PDF eBook
Author Franck Boyer
Publisher Springer Science & Business Media
Total Pages 538
Release 2012-11-06
Genre Mathematics
ISBN 1461459753

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The objective of this self-contained book is two-fold. First, the reader is introduced to the modelling and mathematical analysis used in fluid mechanics, especially concerning the Navier-Stokes equations which is the basic model for the flow of incompressible viscous fluids. Authors introduce mathematical tools so that the reader is able to use them for studying many other kinds of partial differential equations, in particular nonlinear evolution problems. The background needed are basic results in calculus, integration, and functional analysis. Some sections certainly contain more advanced topics than others. Nevertheless, the authors’ aim is that graduate or PhD students, as well as researchers who are not specialized in nonlinear analysis or in mathematical fluid mechanics, can find a detailed introduction to this subject. .