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        <journal_metadata language="en">
          <full_title>Science</full_title>
          <abbrev_title>Science</abbrev_title>
          <issn media_type="print">0036-8075</issn>
          <issn media_type="electronic">1095-9203</issn>
        </journal_metadata>
        <journal_issue>
          <publication_date media_type="print">
            <month>10</month>
            <day>05</day>
            <year>2018</year>
          </publication_date>
          <journal_volume>
            <volume>362</volume>
          </journal_volume>
          <issue>6410</issue>
        </journal_issue>
        <journal_article publication_type="full_text">
          <titles>
            <title>Glacial lake outburst floods as drivers of fluvial erosion in the Himalaya</title>
          </titles>
          <contributors>
            <person_name contributor_role="author" sequence="first">
              <given_name>Kristen L.</given_name>
              <surname>Cook</surname>
              <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany.</affiliation>
              <ORCID authenticated="true">https://orcid.org/0000-0003-2355-4877</ORCID>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Christoff</given_name>
              <surname>Andermann</surname>
              <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany.</affiliation>
              <ORCID authenticated="true">https://orcid.org/0000-0003-0921-8455</ORCID>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Florent</given_name>
              <surname>Gimbert</surname>
              <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany.</affiliation>
              <affiliation>University of Grenoble Alpes, CNRS, IRD, Institut des Géosciences de l’Environnement (IGE), Grenoble, France.</affiliation>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Basanta Raj</given_name>
              <surname>Adhikari</surname>
              <affiliation>Department of Civil Engineering, Pulchowk Campus, Institute of Engineering, Tribhuvan University, Nepal.</affiliation>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Niels</given_name>
              <surname>Hovius</surname>
              <affiliation>GFZ German Research Centre for Geosciences, Potsdam, Germany.</affiliation>
              <affiliation>Institute of Earth and Environmental Science, Potsdam University, Potsdam, Germany.</affiliation>
              <ORCID authenticated="true">https://orcid.org/0000-0002-9158-9871</ORCID>
            </person_name>
          </contributors>
          <abstract abstract-type="editor">
            <title>A sudden outburst of erosion</title>
            <p>
              Glacial lake outburst floods (GLOFs) are exactly what they sound like. The sudden emptying of a glacial lake in high-topography regions like the Himalaya can quickly destroy everything in its path. Cook
              <italic>et al.</italic>
              intercepted a GLOF in the Bhotekoshi and Sunkoshi river valleys in central Nepal as they were monitoring the region in the aftermath of the 2015 Gorkha earthquake. They found that a massive amount of erosion occurred during the outburst flood, which suggests that GLOFs may be the primary factor in landscape evolution for these regions.
            </p>
            <p>
              <italic>Science</italic>
              , this issue p.
              <related-article ext-link-type="doi" issue="6410" page="53" related-article-type="in-this-issue" vol="362" href="10.1126/science.aat4981">53</related-article>
            </p>
          </abstract>
          <abstract abstract-type="teaser">
            <p>A very well monitored Himalayan glacial lake outburst flood shows the power of these large events to drive erosion.</p>
          </abstract>
          <abstract>
            <p>Himalayan rivers are frequently hit by catastrophic floods that are caused by the failure of glacial lake and landslide dams; however, the dynamics and long-term impacts of such floods remain poorly understood. We present a comprehensive set of observations that capture the July 2016 glacial lake outburst flood (GLOF) in the Bhotekoshi/Sunkoshi River of Nepal. Seismic records of the flood provide new insights into GLOF mechanics and their ability to mobilize large boulders that otherwise prevent channel erosion. Because of this boulder mobilization, GLOF impacts far exceed those of the annual summer monsoon, and GLOFs may dominate fluvial erosion and channel-hillslope coupling many tens of kilometers downstream of glaciated areas. Long-term valley evolution in these regions may therefore be driven by GLOF frequency and magnitude, rather than by precipitation.</p>
          </abstract>
          <publication_date media_type="print">
            <month>10</month>
            <day>05</day>
            <year>2018</year>
          </publication_date>
          <pages>
            <first_page>53</first_page>
            <last_page>57</last_page>
          </pages>
          <publisher_item>
            <identifier id_type="doi">10.1126/science.aat4981</identifier>
          </publisher_item>
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            <free_to_read start_date="2019-10-05" />
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