Anisotropic Finite Elements Local Estimates And Applications


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Anisotropic Finite Elements: Local Estimates and Applications


Anisotropic Finite Elements: Local Estimates and Applications

Author: Thomas Apel

language: en

Publisher:

Release Date: 1999-07


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Advanced Finite Element Methods and Applications


Advanced Finite Element Methods and Applications

Author: Thomas Apel

language: en

Publisher: Springer Science & Business Media

Release Date: 2012-07-16


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This volume on some recent aspects of finite element methods and their applications is dedicated to Ulrich Langer and Arnd Meyer on the occasion of their 60th birthdays in 2012. Their work combines the numerical analysis of finite element algorithms, their efficient implementation on state of the art hardware architectures, and the collaboration with engineers and practitioners. In this spirit, this volume contains contributions of former students and collaborators indicating the broad range of their interests in the theory and application of finite element methods. Topics cover the analysis of domain decomposition and multilevel methods, including hp finite elements, hybrid discontinuous Galerkin methods, and the coupling of finite and boundary element methods; the efficient solution of eigenvalue problems related to partial differential equations with applications in electrical engineering and optics; and the solution of direct and inverse field problems in solid mechanics.

Advanced Finite Element Technologies


Advanced Finite Element Technologies

Author: Jörg Schröder

language: en

Publisher: Springer

Release Date: 2016-05-19


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The book presents an overview of the state of research of advanced finite element technologies. Besides the mathematical analysis, the finite element development and their engineering applications are shown to the reader. The authors give a survey of the methods and technologies concerning efficiency, robustness and performance aspects. The book covers the topics of mathematical foundations for variational approaches and the mathematical understanding of the analytical requirements of modern finite element methods. Special attention is paid to finite deformations, adaptive strategies, incompressible, isotropic or anisotropic material behavior and the mathematical and numerical treatment of the well-known locking phenomenon. Beyond that new results for the introduced approaches are presented especially for challenging nonlinear problems.