<?xml version="1.0" encoding="utf-8"?>
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  <doc>
    <id>43676</id>
    <completedYear/>
    <publishedYear>2017</publishedYear>
    <thesisYearAccepted/>
    <language>eng</language>
    <pageFirst>444</pageFirst>
    <pageLast>448</pageLast>
    <pageNumber/>
    <edition/>
    <issue/>
    <volume>7</volume>
    <type>conferenceobject</type>
    <publisherName>Institute for Structural Mechanics, University of Stuttgart</publisherName>
    <publisherPlace>Stuttgart</publisherPlace>
    <creatingCorporation/>
    <contributingCorporation/>
    <belongsToBibliography>0</belongsToBibliography>
    <completedDate>--</completedDate>
    <publishedDate>--</publishedDate>
    <thesisDateAccepted>--</thesisDateAccepted>
    <title language="eng">Domain decomposition methods for fracture mechanics problems and its application to fiber reinforced concrete</title>
    <abstract language="eng">A finite element tearing and interconnecting (FETI) approach for phase-field models and Gradient enhanced damage models is presented. These diffusive crack models can solve fracture mechanics problems by integrating a set of partial differential equations and thus avoid the explicit treatment of discontinuities. However, they require a fine discretization in the vicinity of the crack. FETI methods distribute the computational cost among multiple processors and thus speed up the computation.</abstract>
    <parentTitle language="eng">7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry</parentTitle>
    <identifier type="doi">10.18419/opus-9334</identifier>
    <identifier type="urn">urn:nbn:de:kobv:b43-436764</identifier>
    <enrichment key="eventName">7th GACM Colloquium on Computational Mechanics for Young Scientists from Academia and Industry</enrichment>
    <enrichment key="eventPlace">Stuttgart, Germany</enrichment>
    <enrichment key="eventStart">11.10.2017</enrichment>
    <enrichment key="eventEnd">13.10.2017</enrichment>
    <licence>Allgemeines Deutsches Urheberrecht</licence>
    <author>Philip Huschke</author>
    <author>Jörg F. Unger</author>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>FETI</value>
    </subject>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>Domain decomposition methods</value>
    </subject>
    <subject>
      <language>eng</language>
      <type>uncontrolled</type>
      <value>Fracture mechanics problems</value>
    </subject>
    <collection role="ddc" number="624">Ingenieurbau</collection>
    <collection role="literaturgattung" number="">Verlagsliteratur</collection>
    <collection role="fulltextaccess" number="">Datei für die Öffentlichkeit verfügbar ("Open Access")</collection>
    <collection role="unnumberedseries" number="">Wissenschaftliche Artikel der BAM</collection>
    <thesisPublisher>Bundesanstalt für Materialforschung und -prüfung (BAM)</thesisPublisher>
    <file>https://opus4.kobv.de/opus4-bam/files/43676/2017_Huschke_Beitrag_GACM_Domain decomposition methods....pdf</file>
  </doc>
</export-example>
