High Accuracy Non-centered Compact Difference Schemes for Fluid Dynamics Applications
Title | High Accuracy Non-centered Compact Difference Schemes for Fluid Dynamics Applications PDF eBook |
Author | A. I. Tolstykh |
Publisher | World Scientific |
Pages | 340 |
Release | 1994 |
Genre | Science |
ISBN | 9789810216689 |
This is the first book which describes completely the nontraditional difference schemes which combine the ideas of Pad-type approximation and upwind differencing. These possess some favorable properties and can be used to solve various problems in fluid dynamics and related disciplines. They were proposed by the author in the seventies and are extensively used in Russia. However, they seem to be relatively unknown outside the country. In this book, the author presents the theory of the schemes, to provide some sophisticated algorithms for different computational fluid dynamics problems, to supply readers with useful information which would permit them to construct a rich variety of algorithms of this type and to illustrate the applications of these methods to the numerical simulation of various fluid dynamics phenomena, ranging from supersonic viscous flows to some atmosphere and ocean processes. This book is an essential guide for anyone keenly interested in this field.
High Accuracy Non-centered Compact Difference Schemes For Fluid Dynamics Applications
Title | High Accuracy Non-centered Compact Difference Schemes For Fluid Dynamics Applications PDF eBook |
Author | Andrei I Tolstykh |
Publisher | World Scientific |
Pages | 334 |
Release | 1994-09-09 |
Genre | Mathematics |
ISBN | 9814502359 |
This is the first book which describes completely the nontraditional difference schemes which combine the ideas of Padé-type approximation and upwind differencing. These possess some favorable properties and can be used to solve various problems in fluid dynamics and related disciplines. They were proposed by the author in the seventies and are extensively used in Russia. However, they seem to be relatively unknown outside the country. In this book, the author presents the theory of the schemes, to provide some sophisticated algorithms for different computational fluid dynamics problems, to supply readers with useful information which would permit them to construct a rich variety of algorithms of this type and to illustrate the applications of these methods to the numerical simulation of various fluid dynamics phenomena, ranging from supersonic viscous flows to some atmosphere and ocean processes. This book is an essential guide for anyone keenly interested in this field.
Computational Partial Differential Equations Using MATLAB®
Title | Computational Partial Differential Equations Using MATLAB® PDF eBook |
Author | Jichun Li |
Publisher | CRC Press |
Pages | 440 |
Release | 2019-09-26 |
Genre | Mathematics |
ISBN | 0429561008 |
In this popular text for an Numerical Analysis course, the authors introduce several major methods of solving various partial differential equations (PDEs) including elliptic, parabolic, and hyperbolic equations. It covers traditional techniques including the classic finite difference method, finite element method, and state-of-the-art numercial methods.The text uniquely emphasizes both theoretical numerical analysis and practical implementation of the algorithms in MATLAB. This new edition includes a new chapter, Finite Value Method, the presentation has been tightened, new exercises and applications are included, and the text refers now to the latest release of MATLAB. Key Selling Points: A successful textbook for an undergraduate text on numerical analysis or methods taught in mathematics and computer engineering. This course is taught in every university throughout the world with an engineering department or school. Competitive advantage broader numerical methods (including finite difference, finite element, meshless method, and finite volume method), provides the MATLAB source code for most popular PDEs with detailed explanation about the implementation and theoretical analysis. No other existing textbook in the market offers a good combination of theoretical depth and practical source codes.
Mathematical Problems and Methods of Hydrodynamic Weather Forecasting
Title | Mathematical Problems and Methods of Hydrodynamic Weather Forecasting PDF eBook |
Author | Vladimir Gordin |
Publisher | CRC Press |
Pages | 843 |
Release | 2000-09-20 |
Genre | Mathematics |
ISBN | 1482287412 |
The material provides an historical background to forecasting developments as well as introducing recent advances. The book will be of interest to both mathematicians and physicians, the topics covered include equations of dynamical meteorology, first integrals, non-linear stability, well-posedness of boundary problems, non-smooth solutions, parame
Numerical Methods for Viscosity Solutions and Applications
Title | Numerical Methods for Viscosity Solutions and Applications PDF eBook |
Author | Maurizio Falcone |
Publisher | World Scientific |
Pages | 256 |
Release | 2001 |
Genre | Mathematics |
ISBN | 9789812799807 |
Geometrical optics and viscosity solutions / A.-P. Blanc, G. T. Kossioris and G. N. Makrakis -- Computation of vorticity evolution for a cylindrical Type-II superconductor subject to parallel and transverse applied magnetic fields / A. Briggs ... [et al.] -- A characterization of the value function for a class of degenerate control problems / F. Camilli -- Some microstructures in three dimensions / M. Chipot and V. Lecuyer -- Convergence of numerical schemes for the approximation of level set solutions to mean curvature flow / K. Deckelnick and G. Dziuk -- Optimal discretization steps in semi-lagrangian approximation of first-order PDEs / M. Falcone, R. Ferretti and T. Manfroni -- Convergence past singularities to the forced mean curvature flow for a modified reaction-diffusion approach / F. Fierro -- The viscosity-duality solutions approach to geometric pptics for the Helmholtz equation / L. Gosse and F. James -- Adaptive grid generation for evolutive Hamilton-Jacobi-Bellman equations / L. Grune -- Solution and application of anisotropic curvature driven evolution of curves (and surfaces) / K. Mikula -- An adaptive scheme on unstructured grids for the shape-from-shading problem / M. Sagona and A. Seghini -- On a posteriori error estimation for constant obstacle problems / A. Veeser.
Mathematical Methods In Electromagnetism: Linear Theory And Applications
Title | Mathematical Methods In Electromagnetism: Linear Theory And Applications PDF eBook |
Author | Michel Cessenat |
Publisher | World Scientific |
Pages | 396 |
Release | 1996-07-13 |
Genre | Mathematics |
ISBN | 9814525383 |
This book provides the reader with basic tools to solve problems of electromagnetism in their natural functional frameworks thanks to modern mathematical methods: integral surface methods, and also semigroups, variational methods, etc., well adapted to a numerical approach.As examples of applications of these tools and concepts, we solve several fundamental problems of electromagnetism, stationary or time-dependent: scattering of an incident wave by an obstacle, bounded or not, by gratings; wave propagation in a waveguide, with junctions and cascades. We hope that mathematical notions will allow a better understanding of modelization in electromagnetism and emphasize the essential features related to the geometry and nature of materials.
Matrix, Numerical, and Optimization Methods in Science and Engineering
Title | Matrix, Numerical, and Optimization Methods in Science and Engineering PDF eBook |
Author | Kevin W. Cassel |
Publisher | Cambridge University Press |
Pages | 728 |
Release | 2021-03-04 |
Genre | Technology & Engineering |
ISBN | 1108787622 |
Address vector and matrix methods necessary in numerical methods and optimization of linear systems in engineering with this unified text. Treats the mathematical models that describe and predict the evolution of our processes and systems, and the numerical methods required to obtain approximate solutions. Explores the dynamical systems theory used to describe and characterize system behaviour, alongside the techniques used to optimize their performance. Integrates and unifies matrix and eigenfunction methods with their applications in numerical and optimization methods. Consolidating, generalizing, and unifying these topics into a single coherent subject, this practical resource is suitable for advanced undergraduate students and graduate students in engineering, physical sciences, and applied mathematics.