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   <identifier identifierType="DOI">10.5880/GFZ.4.1.2022.001</identifier>
   <creators>
      <creator>
         <creatorName nameType="Personal">Rosenau, Matthias</creatorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </creator>
      <creator>
         <creatorName nameType="Personal">Kemnitz, Helga</creatorName>
         <givenName>Helga</givenName>
         <familyName>Kemnitz</familyName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </creator>
      <creator>
         <creatorName nameType="Personal">Pohlenz, Andre</creatorName>
         <givenName>Andre</givenName>
         <familyName>Pohlenz</familyName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </creator>
      <creator>
         <creatorName nameType="Personal">Warsitzka, Michael</creatorName>
         <givenName>Michael</givenName>
         <familyName>Warsitzka</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1774-5888</nameIdentifier>
         <affiliation>Institute of Geophysics, Czech Academy of Sciences, Prague, Czech Republic</affiliation>
         <affiliation>Bundesgesellschaft für Endlagerung mbH (BGE), Peine, Germany</affiliation>
      </creator>
      <creator>
         <creatorName nameType="Personal">Zavada, Prokop</creatorName>
         <givenName>Prokop</givenName>
         <familyName>Zavada</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1702-3770</nameIdentifier>
         <affiliation>Institute of Geophysics, Czech Academy of Sciences, Prague, Czech Republic</affiliation>
      </creator>
   </creators>
   <titles>
      <title>Ring-shear test data of glass beads 100-200 µm used for analogue experiments in the tectonic modelling labs at GFZ Potsdam and the Institute of Geophysics of the Czech Academy of Sciences, Prague </title>
   </titles>
   <publisher>GFZ Data Services</publisher>
   <publicationYear>2022</publicationYear>
   <subjects>
      <subject>EPOS</subject>
      <subject>TCS MSL</subject>
      <subject>analogue models of geologic processes</subject>
      <subject>multi-scale laboratories</subject>
      <subject>property data of analogue modelling materials</subject>
      <subject>analogue modelling results</subject>
      <subject>software tools</subject>
      <subject subjectScheme="EPOS WP16 Analogue Measured Property">Cohesion</subject>
      <subject subjectScheme="EPOS WP16 Analogue Process/Hazard">deformation &gt; shearing</subject>
      <subject subjectScheme="EPOS WP16 Analogue Geologic Structure">fault</subject>
      <subject subjectScheme="EPOS WP16 Analogue Measured Property">Friction coefficient</subject>
      <subject subjectScheme="EPOS WP16 Analogue Material">Microspheres &gt; Glassy</subject>
      <subject subjectScheme="EPOS WP16 Analogue Apparatus">Ring-shear tester</subject>
   </subjects>
   <contributors>
      <contributor contributorType="ContactPerson">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="DataCollector">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="DataCurator">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="DataManager">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="Editor">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="HostingInstitution">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="ProjectLeader">
         <contributorName nameType="Personal">Rosenau, Matthias</contributorName>
         <givenName>Matthias</givenName>
         <familyName>Rosenau</familyName>
         <nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1134-5381</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="Producer">
         <contributorName nameType="Personal">Kemnitz, Helga</contributorName>
         <givenName>Helga</givenName>
         <familyName>Kemnitz</familyName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="Producer">
         <contributorName nameType="Personal">Pohlenz, Andre</contributorName>
         <givenName>Andre</givenName>
         <familyName>Pohlenz</familyName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="ProjectMember">
         <contributorName nameType="Personal">Pohlenz, Andre</contributorName>
         <givenName>Andre</givenName>
         <familyName>Pohlenz</familyName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="RelatedPerson">
         <contributorName nameType="Personal">Pohlenz, Andre</contributorName>
         <givenName>Andre</givenName>
         <familyName>Pohlenz</familyName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="HostingInstitution">
         <contributorName>HelTec - Helmholtz Laboratory for Tectonic Modelling (GFZ German Research Centre for Geosciences, Germany</contributorName>
         <nameIdentifier nameIdentifierScheme="labid">9ba34c109b827b177aab36e0266b1643</nameIdentifier>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
      <contributor contributorType="ContactPerson">
         <contributorName>Rosenau</contributorName>
         <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany</affiliation>
      </contributor>
   </contributors>
   <resourceType resourceTypeGeneral="Dataset">Dataset</resourceType>
   <relatedIdentifiers>
      <relatedIdentifier relatedIdentifierType="DOI" relationType="Cites">10.1016/j.tecto.2016.01.017</relatedIdentifier>
      <relatedIdentifier relatedIdentifierType="DOI" relationType="Cites">10.1016/S0191-8141(03)00005-1</relatedIdentifier>
      <relatedIdentifier relatedIdentifierType="DOI" relationType="Cites">10.1002/2016JB012915</relatedIdentifier>
      <relatedIdentifier relatedIdentifierType="DOI" relationType="Cites">10.1029/2021GC009825</relatedIdentifier>
      <relatedIdentifier relatedIdentifierType="URL" relationType="Cites">https://gitext.gfz-potsdam.de/analab-code/rst-evaluation/</relatedIdentifier>
      <relatedIdentifier relatedIdentifierType="DOI" relationType="Cites">10.1002/ceat.200303112</relatedIdentifier>
   </relatedIdentifiers>
   <sizes/>
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   <rightsList>
      <rights rightsURI="http://creativecommons.org/licenses/by/4.0/">CC BY 4.0</rights>
   </rightsList>
   <descriptions>
      <description descriptionType="Abstract">This dataset provides friction data from ring-shear tests on glass beads with a diameter of 100-200 µm used in analogue modelling of tectonic processes as a rock analogue for “weak” layers in the earth’s upper crust (e.g. Klinkmüller et al., 2016; Ritter et al., 2016; Lohrmann et al., 2003) or as “seismogenic” crust (Rudolf et al., 2022). The glass beads are characterized by means of internal friction coefficients µ and cohesion C.   <br/>
According to our analysis the materials show a Mohr-Coulomb behaviour characterized by a linear failure envelope. Peak, dynamic and reactivation friction coefficients of the glass beads are µP = 0.50 , µD = 0.39, and µR = 0.46, respectively (Table 5). Cohesion of the material is close to zero Pa. The material shows a minor rate-weakening of ~1% per ten-fold change in shear velocity v and a stick-slip behaviour at low shear velocities and at high loads.   <br/>
      </description>
      <description descriptionType="Methods">The data presented here are derived by ring shear testing using a SCHULZE RST-01.pc (Schulze, 1994, 2003, 2008) at the Helmholtz Laboratory for Tectonic Modelling (HelTec) of the GFZ German Research Centre for Geosciences in Potsdam. The RST is specially designed to measure friction coefficients µ and cohesions C in loose granular material accurately at low confining pressures (&lt;20 kPa) and shear velocities (&lt;1 mm/sec) similar to sandbox experiments. In this tester, a granular bulk material layer is sheared internally at constant normal stress σN and shear velocity v while shear force and lid displacement (corresponding to density and volume change ΔV) are measured continuously. For more details see Klinkmüller et al. (2016) and Ritter et al. (2016).   <br/>
      </description>
   </descriptions>
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