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Advanced Finite Element Methods with Applications

Selected Papers from the 30th Chemnitz Finite Element Symposium 2017

  • Features overview papers and original research articles from participants of the 30th Chemnitz Finite Element Symposium
  • The Symposium itself already has a 40-year tradition
  • Offers readers insights into the latest results

Part of the book series: Lecture Notes in Computational Science and Engineering (LNCSE, volume 128)

Conference series link(s): FEM: Chemnitz Fine Element Symposium

Conference proceedings info: FEM 2017.

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Table of contents (19 chapters)

  1. Front Matter

    Pages i-xxii
  2. Superconvergent Graded Meshes for an Elliptic Dirichlet Control Problem

    • Thomas Apel, Mariano Mateos, Johannes Pfefferer, Arnd Rösch
    Pages 1-16
  3. Two Stabilized Three-Field Formulations for the Biharmonic Problem

    • Lothar Banz, Jan Petsche, Andreas Schröder
    Pages 41-55
  4. Numerical Study of Goal-Oriented Error Control for Stabilized Finite Element Methods

    • Marius Paul Bruchhäuser, Kristina Schwegler, Markus Bause
    Pages 85-106
  5. Comparison Analysis of Two Numerical Methods for Fractional Diffusion Problems Based on the Best Rational Approximations of t γ on [0, 1]

    • Stanislav Harizanov, Raytcho Lazarov, Svetozar Margenov, Pencho Marinov, Joseph Pasciak
    Pages 165-185
  6. A Three-Level Extension of the GDSW Overlapping Schwarz Preconditioner in Two Dimensions

    • Alexander Heinlein, Axel Klawonn, Oliver Rheinbach, Friederike Röver
    Pages 187-204
  7. A Parallel Multigrid Solver for Multi-Patch Isogeometric Analysis

    • Christoph Hofer, Stefan Takacs
    Pages 205-219
  8. Space-Time Finite Element Methods for Parabolic Evolution Problems with Variable Coefficients

    • Ulrich Langer, Martin Neumüller, Andreas Schafelner
    Pages 247-275
  9. ACA Improvement by Surface Segmentation

    • Sergej Rjasanow, Steffen Weißer
    Pages 277-295
  10. First Order Error Correction for Trimmed Quadrature in Isogeometric Analysis

    • Felix Scholz, Angelos Mantzaflaris, Bert Jüttler
    Pages 297-321

About this book

Finite element methods are the most popular methods for solving partial differential equations numerically, and despite having a history of more than 50 years, there is still active research on their analysis, application and extension. This book features overview papers and original research articles from participants of the 30th Chemnitz Finite Element Symposium, which itself has a 40-year history. Covering topics including numerical methods for equations with fractional partial derivatives; isogeometric analysis and other novel discretization methods, like space-time finite elements and boundary elements; analysis of a posteriori error estimates and adaptive methods; enhancement of efficient solvers of the resulting systems of equations, discretization methods for partial differential equations on surfaces; and methods adapted to applications in solid and fluid mechanics, it offers readers insights into the latest results.



Editors and Affiliations

  • Institut für Mathematik & Computergestützte Simulation, Universität der Bundeswehr München, Neubiberg, Germany

    Thomas Apel

  • Institute for Computational Mathematics, Johannes Kepler University Linz, Linz, Austria

    Ulrich Langer

  • Fakultät für Mathematik, TU Chemnitz, Chemnitz, Germany

    Arnd Meyer

  • Institut für Angewandte Mathematik, Technische Universität Graz, Graz, Austria

    Olaf Steinbach

Bibliographic Information

Buy it now

Buying options

eBook USD 99.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 129.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 129.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access