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  • © 2018

Domain Decomposition Methods in Science and Engineering XXIV

Conference proceedings info: DD 2017.

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Table of contents (53 papers)

  1. Front Matter

    Pages i-xxii
  2. Plenary Talks (PT)

    1. Front Matter

      Pages 1-1
    2. Robust Block Preconditioners for Biot’s Model

      • James H. Adler, Francisco J. Gaspar, Xiaozhe Hu, Carmen Rodrigo, Ludmil T. Zikatanov
      Pages 3-16
    3. Scalable Cardiac Electro-Mechanical Solvers and Reentry Dynamics

      • P. Colli Franzone, L. F. Pavarino, S. Scacchi, Stefano Zampini
      Pages 31-43
    4. On Overlapping Domain Decomposition Methods for High-Contrast Multiscale Problems

      • Juan Galvis, Eric T. Chung, Yalchin Efendiev, Wing Tat Leung
      Pages 45-57
    5. INTERNODES for Heterogeneous Couplings

      • Paola Gervasio, Alfio Quarteroni
      Pages 59-71
    6. Balancing Domain Decomposition by Constraints Algorithms for Curl-Conforming Spaces of Arbitrary Order

      • Stefano Zampini, Panayot Vassilevski, Veselin Dobrev, Tzanio Kolev
      Pages 103-116
  3. Talks in Minisymposia (MT)

    1. Front Matter

      Pages 117-117
    2. Does SHEM for Additive Schwarz Work Better than Predicted by Its Condition Number Estimate?

      • Petter E. Bjørstad, Martin J. Gander, Atle Loneland, Talal Rahman
      Pages 129-137
    3. Two-Level Preconditioners for the Helmholtz Equation

      • Marcella Bonazzoli, Victorita Dolean, Ivan G. Graham, Euan A. Spence, Pierre-Henri Tournier
      Pages 139-147
    4. A Two-Level Domain-Decomposition Preconditioner for the Time-Harmonic Maxwell’s Equations

      • Marcella Bonazzoli, Victorita Dolean, Ivan G. Graham, Euan A. Spence, Pierre-Henri Tournier
      Pages 149-157
    5. A Coarse Space to Remove the Logarithmic Dependency in Neumann–Neumann Methods

      • Faycal Chaouqui, Martin J. Gander, Kévin Santugini-Repiquet
      Pages 159-167
    6. Partition of Unity Methods for Heterogeneous Domain Decomposition

      • Gabriele Ciaramella, Martin J. Gander
      Pages 177-186
    7. Integral Equation Based Optimized Schwarz Method for Electromagnetics

      • Xavier Claeys, Bertrand Thierry, Francis Collino
      Pages 187-194

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  1. Domain Decomposition Methods in Science and Engineering XXIV

About this book

These are the proceedings of the 24th International Conference on Domain Decomposition Methods in Science and Engineering, which was held in Svalbard, Norway in February 2017. 

Domain decomposition methods are iterative methods for solving the often very large systems of equations that arise when engineering problems are discretized, frequently using finite elements or other modern techniques. These methods are specifically designed to make effective use of massively parallel, high-performance computing systems.

The book presents both theoretical and computational advances in this domain, reflecting the state of art in 2017.



Editors and Affiliations

  • Department of Informatics, University of Bergen, Bergen, Norway

    Petter E. Bjørstad

  • Department of Mathematics, Louisana State University, Baton Rouge, USA

    Susanne C. Brenner

  • Laboratoire Analyse, Géométrie et Applications, Université Paris 13, Villetaneuse, France

    Lawrence Halpern

  • Department of Applied Mathematics, Kyung Hee University, Yongin, Korea (Republic of)

    Hyea Hyun Kim

  • FB Mathematik und Informatik, Freie Universität Berlin, Berlin, Germany

    Ralf Kornhuber

  • Western Norway University of Applied Sciences, Bergen, Norway

    Talal Rahman

  • Courant Institute of Mathematical Sciences, New York University, New York, USA

    Olof B. Widlund

Bibliographic Information

Buy it now

Buying options

eBook USD 129.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Hardcover Book USD 169.99
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