Nonlinear Inclusions and Hemivariational Inequalities: Models and Analysis of Contact Problems: Advances in Mechanics and Mathematics, cartea 26
Autor Stanisław Migórski, Anna Ochal, Mircea Sofoneaen Limba Engleză Hardback – 18 sep 2012
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Specificații
ISBN-13: 9781461442318
ISBN-10: 1461442311
Pagini: 304
Ilustrații: XVI, 288 p.
Dimensiuni: 155 x 235 x 22 mm
Greutate: 0.52 kg
Ediția:2013
Editura: Springer
Colecția Springer
Seria Advances in Mechanics and Mathematics
Locul publicării:New York, NY, United States
ISBN-10: 1461442311
Pagini: 304
Ilustrații: XVI, 288 p.
Dimensiuni: 155 x 235 x 22 mm
Greutate: 0.52 kg
Ediția:2013
Editura: Springer
Colecția Springer
Seria Advances in Mechanics and Mathematics
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
Preface.- List of Symbols.- 1. Preliminaries.- 2. Function Spaces.- 3. Elements of Nonlinear Analysis.- 4. Stationary Inclusions and Hemivariational Inequalities.- 5. Evolutionary Inclusions and Hemivarational Inequalities.- 6. Modeling of Contact Problems.- 7. Analysis of Static Contact Problems.- 8. Analysis of Dynamic Contact Problems.- Bibliographic Notes.- References.- Index.
Recenzii
From the reviews:
“The main goal of the present book is to introduce the reader to the theory of variational and differential inclusions with applications essentially drawn from contact mechanics. … The monograph is well written and self-contained. … It mainly addresses applied mathematicians working in the field of variational and differential inclusions with applications in contact mechanics. … Advanced graduate students, particularly Ph.D. students, may benefit from the highly specialized content of this monograph.” (Samir Adly, Mathematical Reviews, March, 2014)
“The main goal of the present book is to introduce the reader to the theory of variational and differential inclusions with applications essentially drawn from contact mechanics. … The monograph is well written and self-contained. … It mainly addresses applied mathematicians working in the field of variational and differential inclusions with applications in contact mechanics. … Advanced graduate students, particularly Ph.D. students, may benefit from the highly specialized content of this monograph.” (Samir Adly, Mathematical Reviews, March, 2014)
Textul de pe ultima copertă
Nonlinear Inclusions and Hemivariational Inequalities presents a broad insight into the theory of inclusions, hemivariational inequalities, and their applications to Contact Mechanics. The content of this volume gathers recent results which are published here for the first time and gives a largely self-contained and rigorous introduction to mathematical analysis of contact problems. The book will be of particular interest to students and young researchers in applied and pure mathematics, civil, aeronautical and mechanical engineering, and may also prove suitable as a supplementary text for an advanced one or two semester specialized course in mathematical modeling.
This book introduces the reader the theory of nonlinear inclusions and hemivariational inequalities with emphasis on the study of Contact Mechanics. It covers both abstract existence and uniqueness results as well as the study of specific contact problems, including their modeling and variational analysis. New mathematical methods are introduced and applied in the study of nonlinear problems, which describe the contact between a deformable body and a foundation.
The text is divided into three parts. Part I, entitled Background of Functional Analysis, gives an overview of nonlinear and functional analysis, function spaces, and calculus of nonsmooth operators. The material presented may be useful to students and researchers from a broad range of mathematics and mathematical disciplines. Part II concerns Nonlinear Inclusions and Hemivariational Inequalities and is the core of the text in terms of theory. Part III, entitled Modeling and Analysis of Contact Problems shows applications of theory in static and dynamic contact problems with deformable bodies, where the material behavior is modeled with both elastic and viscoelasticconstitutive laws. Particular attention is paid to the study of contact problems with piezoelectric materials. Bibliographical notes presented at the end of each part are valuable for further study.
This book introduces the reader the theory of nonlinear inclusions and hemivariational inequalities with emphasis on the study of Contact Mechanics. It covers both abstract existence and uniqueness results as well as the study of specific contact problems, including their modeling and variational analysis. New mathematical methods are introduced and applied in the study of nonlinear problems, which describe the contact between a deformable body and a foundation.
The text is divided into three parts. Part I, entitled Background of Functional Analysis, gives an overview of nonlinear and functional analysis, function spaces, and calculus of nonsmooth operators. The material presented may be useful to students and researchers from a broad range of mathematics and mathematical disciplines. Part II concerns Nonlinear Inclusions and Hemivariational Inequalities and is the core of the text in terms of theory. Part III, entitled Modeling and Analysis of Contact Problems shows applications of theory in static and dynamic contact problems with deformable bodies, where the material behavior is modeled with both elastic and viscoelasticconstitutive laws. Particular attention is paid to the study of contact problems with piezoelectric materials. Bibliographical notes presented at the end of each part are valuable for further study.
Caracteristici
Gathers new results on nonlinear inclusions and hemivariational inequalities and provides a unique overview of this topic Deals with new and nonstandard models of contact involving subdifferential of nonconvex functions, including models for the contact of piezoelectric materials Intends to represent a bridge between the functional analysis and the mechanics of continua Provides the reader an example of cross fertilization between modelling and applications on one hand, and nonsmooth nonlinear analysis on the other