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Adaptive Method of Lines

Adaptive Method of Lines
Author: A, Vande Wouwer
Publisher: CRC Press
Total Pages: 435
Release: 2001-04-18
Genre: Mathematics
ISBN: 1420035614

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The general Method of Lines (MOL) procedure provides a flexible format for the solution of all the major classes of partial differential equations (PDEs) and is particularly well suited to evolutionary, nonlinear wave PDEs. Despite its utility, however, there are relatively few texts that explore it at a more advanced level and reflect the method's


Adaptive Moving Mesh Methods

Adaptive Moving Mesh Methods
Author: Weizhang Huang
Publisher: Springer Science & Business Media
Total Pages: 446
Release: 2010-10-26
Genre: Mathematics
ISBN: 1441979166

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This book is about adaptive mesh generation and moving mesh methods for the numerical solution of time-dependent partial differential equations. It presents a general framework and theory for adaptive mesh generation and gives a comprehensive treatment of moving mesh methods and their basic components, along with their application for a number of nontrivial physical problems. Many explicit examples with computed figures illustrate the various methods and the effects of parameter choices for those methods. Graduate students, researchers and practitioners working in this area will benefit from this book.


MOLAG

MOLAG
Author: Niels K. Madsen
Publisher:
Total Pages: 31
Release: 1983
Genre:
ISBN:

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Adaptive Numerical Solution of PDEs

Adaptive Numerical Solution of PDEs
Author: Peter Deuflhard
Publisher: Walter de Gruyter
Total Pages: 436
Release: 2012-08-31
Genre: Mathematics
ISBN: 3110283115

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This book deals with the general topic “Numerical solution of partial differential equations (PDEs)” with a focus on adaptivity of discretizations in space and time. By and large, introductory textbooks like “Numerical Analysis in Modern Scientific Computing” by Deuflhard and Hohmann should suffice as a prerequisite. The emphasis lies on elliptic and parabolic systems. Hyperbolic conservation laws are treated only on an elementary level excluding turbulence. Numerical Analysis is clearly understood as part of Scientific Computing. The focus is on the efficiency of algorithms, i.e. speed, reliability, and robustness, which directly leads to the concept of adaptivity in algorithms. The theoretical derivation and analysis is kept as elementary as possible. Nevertheless required somewhat more sophisticated mathematical theory is summarized in comprehensive form in an appendix. Complex relations are explained by numerous figures and illustrating examples. Non-trivial problems from regenerative energy, nanotechnology, surgery, and physiology are inserted. The text will appeal to graduate students and researchers on the job in mathematics, science, and technology. Conceptually, it has been written as a textbook including exercises and a software list, but at the same time it should be well-suited for self-study.