You-He Zhou Zhou Wavelet Numerical Method and Its Applications in Nonlinear Problems

Wavelet Numerical Method and Its Applications in Nonlinear Problems

von You-He Zhou

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Beschreibung

This book summarizes the basic theory of wavelets and some related algorithms in an easy-to-understand language from the perspective of an engineer rather than a mathematician. In this book, the wavelet solution schemes are systematically established and introduced for solving general linear and nonlinear initial boundary value problems in engineering, including the technique of boundary extension in approximating interval-bounded functions, the calculation method for various connection coefficients, the single-point Gaussian integration method in calculating the coefficients of wavelet expansions and unique treatments on nonlinear terms in differential equations. At the same time, this book is supplemented by a large number of numerical examples to specifically explain procedures and characteristics of the method, as well as detailed treatments for specific problems. Different from most of the current monographs focusing on the basic theory of wavelets, it focuses on the use of wavelet-based numerical methods developed by the author over the years. Even for the necessary basic theory of wavelet in engineering applications, this book is based on the author’s own understanding in plain language, instead of a relatively difficult professional mathematical description. This book is very suitable for students, researchers and technical personnel who only want to need the minimal knowledge of wavelet method to solve specific problems in engineering. 


This book summarizes the basic theory of wavelets and some related algorithms in an easy-to-understand language from the perspective of an engineer rather than a mathematician. In this book, the wavelet solution schemes are systematically established and introduced for solving general linear and nonlinear initial boundary value problems in engineering, including the technique of boundary extension in approximating interval-bounded functions, the calculation method for various connection coefficients, the single-point Gaussian integration method in calculating the coefficients of wavelet expansions and unique treatments on nonlinear terms in differential equations. At the same time, this book is supplemented by a large number of numerical examples to specifically explain procedures and characteristics of the method, as well as detailed treatments for specific problems. Different from most of the current monographs focusing on the basic theory of wavelets, it focuses on the use of wavelet-based numerical methods developed by the author over the years. Even for the necessary basic theory of wavelet in engineering applications, this book is based on the author’s own understanding in plain language, instead of a relatively difficult professional mathematical description. This book is very suitable for students, researchers and technical personnel who only want to need the minimal knowledge of wavelet method to solve specific problems in engineering. 



Introduces the wavelet theory and some related algorithms required for numerical solutions in plain language from engineer’s perspective rather than that of mathematician Explains the construction and application processes of the wavelet-based method in a step-by-step manner Provides a large number of numerical examples to illustrate the specific application processes and characteristics of the related methods Presents a unique, robust, and easy-to-operate solution procedure for general nonlinear engineering problems

Autor*in

You-He Zhou

Themen in »Wavelet Numerical Method and Its Applications in Nonlinear Problems«

Wavelet Theory Nonlinear Problem Partial Differential Equations Integral Equations Solution Method Solid Mechanics Fluid Mechanics Coiflets Wavelets Laplace inversion Wavelet Galerkin method Computational accuracy Convergence rate Beams and Plates Large deflection

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Details

ISBN: 9789813366435
Verlag: Springer Singapore
Erscheinung: 09.03.2021

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