Scalable algorithms for contact problems /

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Bibliographic Details
Imprint:New York, NY : Springer, [2016]
Description:1 online resource
Language:English
Series:Advances in mechanics and mathematics ; volume 36
Advances in mechanics and mathematics ; v. 36.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11271336
Hidden Bibliographic Details
Other authors / contributors:Dostál, Zdeněk, author.
Kozubek, Tomáš, 1975- author.
Sadowská, Marie, author.
Vonk, Vít, author.
ISBN:9781493968343
1493968343
9781493968329
1493968327
Digital file characteristics:text file PDF
Notes:Includes bibliographical references and index.
Online resource; title from PDF title page (SpringerLink, viewed February 6, 2017).
Summary:This book presents a comprehensive and self-contained treatment of the authors? newly developed scalable algorithms for the solutions of multibody contact problems of linear elasticity. The brand new feature of these algorithms is theoretically supported numerical scalability and parallel scalability demonstrated on problems discretized by billions of degrees of freedom. The theory supports solving multibody frictionless contact problems, contact problems with possibly orthotropic Tresca?s friction, and transient contact problems. It covers BEM discretization, jumping coefficients, floating bodies, mortar non-penetration conditions, etc. The exposition is divided into four parts, the first of which reviews appropriate facets of linear algebra, optimization, and analysis. The most important algorithms and optimality results are presented in the third part of the volume. The presentation is complete, including continuous formulation, discretization, decomposition, optimality results, and numerical experiments. The final part includes extensions to contact shape optimization, plasticity, and HPC implementation. Graduate students and researchers in mechanical engineering, computational engineering, and applied mathematics, will find this book of great value and interest.
Other form:Printed edition: 9781493968329
Standard no.:10.1007/978-1-4939-6834-3