<?xml version="1.0" encoding="UTF-8"?>
<doi_records>
  <doi_record owner="10.1007" timestamp="2022-04-20 15:18:32">
    <crossref>
      <journal>
        <journal_metadata language="en">
          <full_title>Journal of Soils and Sediments</full_title>
          <abbrev_title>J Soils Sediments</abbrev_title>
          <issn media_type="print">1439-0108</issn>
          <issn media_type="electronic">1614-7480</issn>
        </journal_metadata>
        <journal_issue>
          <publication_date media_type="print">
            <month>12</month>
            <year>2014</year>
          </publication_date>
          <journal_volume>
            <volume>14</volume>
          </journal_volume>
          <issue>12</issue>
        </journal_issue>
        <journal_article publication_type="full_text">
          <titles>
            <title>Process-based modelling of erosion, sediment transport and reservoir siltation in mesoscale semi-arid catchments</title>
          </titles>
          <contributors>
            <person_name contributor_role="author" sequence="first">
              <given_name>Axel</given_name>
              <surname>Bronstert</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>José-Carlos</given_name>
              <surname>de Araújo</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Ramon J.</given_name>
              <surname>Batalla</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Alexandre Cunha</given_name>
              <surname>Costa</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>José Miguel</given_name>
              <surname>Delgado</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Till</given_name>
              <surname>Francke</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Saskia</given_name>
              <surname>Foerster</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Andreas</given_name>
              <surname>Guentner</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>José Andrés</given_name>
              <surname>López-Tarazón</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>George Leite</given_name>
              <surname>Mamede</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Pedro Henrique</given_name>
              <surname>Medeiros</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Eva</given_name>
              <surname>Mueller</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Damià</given_name>
              <surname>Vericat</surname>
            </person_name>
          </contributors>
          <publication_date media_type="online">
            <month>10</month>
            <day>29</day>
            <year>2014</year>
          </publication_date>
          <publication_date media_type="print">
            <month>12</month>
            <year>2014</year>
          </publication_date>
          <pages>
            <first_page>2001</first_page>
            <last_page>2018</last_page>
          </pages>
          <publisher_item>
            <identifier id_type="pii">994</identifier>
          </publisher_item>
          <crossmark>
            <crossmark_version>1</crossmark_version>
            <crossmark_policy>10.1007/springer_crossmark_policy</crossmark_policy>
            <crossmark_domains>
              <crossmark_domain>
                <domain>link.springer.com</domain>
              </crossmark_domain>
            </crossmark_domains>
            <crossmark_domain_exclusive>false</crossmark_domain_exclusive>
            <custom_metadata>
              <program name="AccessIndicators">
                <license_ref applies_to="tdm">http://www.springer.com/tdm</license_ref>
              </program>
            </custom_metadata>
          </crossmark>
          <doi_data>
            <doi>10.1007/s11368-014-0994-1</doi>
            <timestamp>20141114132209</timestamp>
            <resource>http://link.springer.com/10.1007/s11368-014-0994-1</resource>
            <collection property="crawler-based">
              <item crawler="iParadigms">
                <resource>http://link.springer.com/content/pdf/10.1007/s11368-014-0994-1</resource>
              </item>
            </collection>
            <collection property="text-mining">
              <item>
                <resource mime_type="application/pdf">http://link.springer.com/content/pdf/10.1007/s11368-014-0994-1.pdf</resource>
              </item>
              <item>
                <resource mime_type="text/html">http://link.springer.com/article/10.1007/s11368-014-0994-1/fulltext.html</resource>
              </item>
            </collection>
          </doi_data>
          <citation_list>
            <citation key="994_CR1">
              <journal_title>Catena</journal_title>
              <author>H Aksoy</author>
              <volume>64</volume>
              <first_page>247</first_page>
              <cYear>2005</cYear>
              <doi provider="crossref">10.1016/j.catena.2005.08.008</doi>
              <unstructured_citation>Aksoy H, Kavvas ML (2005) A review of hillslope and watershed scale erosion and sediment transport models. Catena 64:247–271</unstructured_citation>
            </citation>
            <citation key="994_CR2">
              <journal_title>J Hydrol</journal_title>
              <author>LC Alatorre</author>
              <volume>391</volume>
              <first_page>109</first_page>
              <cYear>2010</cYear>
              <doi provider="crossref">10.1016/j.jhydrol.2010.07.010</doi>
              <unstructured_citation>Alatorre LC, Beguería S, García-Ruiz JM (2010) Regional scale modelling of hillslope sediment delivery: a case study in the Barasona Reservoir watershed (Spain) using WATEM/SEDEM. J Hydrol 391:109–123</unstructured_citation>
            </citation>
            <citation key="994_CR3">
              <journal_title>J Hydraul Eng</journal_title>
              <author>JG Arnold</author>
              <volume>121</volume>
              <first_page>171</first_page>
              <cYear>1995</cYear>
              <doi provider="crossref">10.1061/(ASCE)0733-9429(1995)121:2(171)</doi>
              <unstructured_citation>Arnold JG, Williams JR, Maidment DR (1995) Continuous time water and sediment-routing model for large basins. J Hydraul Eng 121:171–183</unstructured_citation>
            </citation>
            <citation key="994_CR4">
              <journal_title>Philos T R Soc Lond A</journal_title>
              <author>RA Bagnold</author>
              <volume>249</volume>
              <first_page>235</first_page>
              <cYear>1956</cYear>
              <doi provider="crossref">10.1098/rsta.1956.0020</doi>
              <unstructured_citation>Bagnold RA (1956) The flow of cohesion less grains in fluids. Philos T R Soc Lond A 249:235–297</unstructured_citation>
            </citation>
            <citation key="994_CR5">
              <journal_title>Hydrol Process</journal_title>
              <author>LJ Bracken</author>
              <volume>21</volume>
              <first_page>1749</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1002/hyp.6313</doi>
              <unstructured_citation>Bracken LJ, Croke J (2007) The concept of hydrological connectivity to understand runoff-dominated geomorphic systems. Hydrol Process 21:1749–1763</unstructured_citation>
            </citation>
            <citation key="994_CR6">
              <journal_title>Earth-Sci Rev</journal_title>
              <author>LJ Bracken</author>
              <volume>119</volume>
              <first_page>17</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.earscirev.2013.02.001</doi>
              <unstructured_citation>Bracken LJ, Wainwright J, Ali GA, Tetzlaff D, Smith MW, Reaney SM, Roy AG (2013) Concepts of hydrological connectivity: research approaches, pathways and future agendas. Earth-Sci Rev 119:17–34</unstructured_citation>
            </citation>
            <citation key="994_CR7">
              <journal_title>Earth Surf Process Landforms</journal_title>
              <author>ND Bradley</author>
              <volume>37</volume>
              <first_page>1034</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1002/esp.3223</doi>
              <unstructured_citation>Bradley ND, Tucker GE (2012) Measuring gravel transport and dispersion in a mountain river using passive radio tracers. Earth Surf Process Landforms 37:1034–1045</unstructured_citation>
            </citation>
            <citation key="994_CR8">
              <journal_title>J Hydrol</journal_title>
              <author>A Bronstert</author>
              <volume>198</volume>
              <first_page>177</first_page>
              <cYear>1997</cYear>
              <doi provider="crossref">10.1016/S0022-1694(96)03306-9</doi>
              <unstructured_citation>Bronstert A, Plate EJ (1997) Modelling of runoff generation and soil moisture dynamics for hillslopes and micro-catchments. J Hydrol 198:177–195</unstructured_citation>
            </citation>
            <citation key="994_CR9">
              <doi provider="crossref">10.1007/s11368-014-0925-1</doi>
              <unstructured_citation>Brosinsky A, Foerster S, Segl K, López-Tarazón J, Piqué G, Bronstert A (2014a) Spectral fingerprinting: sediment source discrimination and contribution modelling of artificial mixtures based on VNIR-SWIR spectral properties. J Soils Sediments. doi: 10.1007/s11368-014-0925-1 (this issue)</unstructured_citation>
            </citation>
            <citation key="994_CR10">
              <doi provider="crossref">10.1007/s11368-014-0927-z</doi>
              <unstructured_citation>Brosinsky A, Foerster S, Segl K, López-Tarazón J, Bronstert A (2014b) Spectral fingerprinting: characterizing suspended sediment sources by the use of VNIR-SWIR spectral information. J Soils Sediments. doi: 10.1007/s11368-014-0927-z (this issue)</unstructured_citation>
            </citation>
            <citation key="994_CR11">
              <journal_title>Environ Model Softw</journal_title>
              <author>JN Callow</author>
              <volume>24</volume>
              <first_page>959</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1016/j.envsoft.2009.02.003</doi>
              <unstructured_citation>Callow JN, Smettern KRJ (2009) The effect of farm dams and constructed banks on hydrologic connectivity and runoff estimation in agricultural landscapes. Environ Model Softw 24:959–968</unstructured_citation>
            </citation>
            <citation key="994_CR12">
              <unstructured_citation>Chow VT, Maidment DR, Mays LW (1988) Applied Hydrology. Civil Engineering Series, McGraw-Hill Int., Singapore</unstructured_citation>
            </citation>
            <citation key="994_CR13">
              <unstructured_citation>Costa AC (2007) Hidrologia de um abacia experimental em Caatinga conservada no semiárido brasileiro. Dissertação de Mestrado, Departamento de Engenharia Hidráulica e Ambiental, Universidade Federal doCeará – UFC. Fortaleza, CE</unstructured_citation>
            </citation>
            <citation key="994_CR14">
              <journal_title>Hydrol Earth Syst Sci</journal_title>
              <author>AC Costa</author>
              <volume>16</volume>
              <first_page>1111</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.5194/hess-16-1111-2012</doi>
              <unstructured_citation>Costa AC, Bronstert A, de Araújo JC (2012) A channel transmission losses model for different dryland rivers. Hydrol Earth Syst Sci 16:1111–1135</unstructured_citation>
            </citation>
            <citation key="994_CR15">
              <journal_title>Hydrol Process</journal_title>
              <author>APJ Roo De</author>
              <volume>10</volume>
              <first_page>1107</first_page>
              <cYear>1996</cYear>
              <doi provider="crossref">10.1002/(SICI)1099-1085(199608)10:8&lt;1107::AID-HYP415&gt;3.0.CO;2-4</doi>
              <unstructured_citation>De Roo APJ, Wesseling CG, Ritsema CJ (1996) LISEM: a single event physically-based hydrologic and soil erosion model for drainage basins. I: Theory, input and output. Hydrol Process 10:1107–1117</unstructured_citation>
            </citation>
            <citation key="994_CR16">
              <journal_title>Prog Phys Geogr</journal_title>
              <author>J Vente de</author>
              <volume>31</volume>
              <first_page>24</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1177/0309133307076485</doi>
              <unstructured_citation>de Vente J, Poesen J, Arabkhedri M, Verstraeten G (2007) The sediment delivery problem revisited. Prog Phys Geogr 31:24</unstructured_citation>
            </citation>
            <citation key="994_CR17">
              <journal_title>Hydrol Earth Syst Sci</journal_title>
              <author>D Duethmann</author>
              <volume>17</volume>
              <first_page>2415</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.5194/hess-17-2415-2013</doi>
              <unstructured_citation>Duethmann D, Zimmer J, Gafurov A, Güntner A, Kriegel D, Merz B, Vorogushyn S (2013) Evaluation of areal precipitation estimates based on downscaled reanalysis and station data by hydrological modelling. Hydrol Earth Syst Sci 17:2415–2434</unstructured_citation>
            </citation>
            <citation key="994_CR18">
              <unstructured_citation>Elghali A (2012) Apports en sédiments dans le bassin versant amont du N’Fis, Approche par modélisation. Université Cadi Ayyad, Faculté des Sciences et Techniques, Département des Sciences de la Terre, Marrakesh, Morocco</unstructured_citation>
            </citation>
            <citation key="994_CR19">
              <journal_title>Earth Surf Process Landforms</journal_title>
              <author>W Everaert</author>
              <volume>16</volume>
              <first_page>513</first_page>
              <cYear>1991</cYear>
              <doi provider="crossref">10.1002/esp.3290160604</doi>
              <unstructured_citation>Everaert W (1991) Empirical relations for the sediment transport capacity of interrill flow. Earth Surf Process Landforms 16:513–532</unstructured_citation>
            </citation>
            <citation key="994_CR20">
              <journal_title>J Hydraul Res</journal_title>
              <author>HW Fang</author>
              <volume>41</volume>
              <first_page>379</first_page>
              <cYear>2003</cYear>
              <doi provider="crossref">10.1080/00221680309499983</doi>
              <unstructured_citation>Fang HW, Rodi W (2003) Three-dimensional calculations of flow and suspended sediment transport in the neighborhood of the dam for the three gorges project (TGP) reservoir in the Yangtze River. J Hydraul Res 41:379–393</unstructured_citation>
            </citation>
            <citation key="994_CR21">
              <unstructured_citation>Flanagan DC, Nearing M (1995) USDA – Water Erosion Prediction Project: Hillslope Profile and Watershed Model Documentation. National Soil Erosion Research Laboratory Report No. 10, West Lafayette Indiana</unstructured_citation>
            </citation>
            <citation key="994_CR22">
              <doi provider="crossref">10.1007/s11368-014-0992-3</doi>
              <unstructured_citation>Foerster S, Wilczok C, Brosinsky A, Segl K (2014) Assessment of sediment connectivity from vegetation cover and topography using remotely sensed data in a dryland catchment in the Spanish Pyrenees. J Soils Sediments doi: 10.1007/s11368-014-0992-3 (this issue)</unstructured_citation>
            </citation>
            <citation key="994_CR23">
              <unstructured_citation>Francke T (2009) Measurement and modelling of water and sediment fluxes in meso-scale dryland catchments. PhD-Thesis at the University of Potsdam, Germany. 137 pp. http://opus.kobv.de/ubp/volltexte/2009/3152/</unstructured_citation>
            </citation>
            <citation key="994_CR24">
              <journal_title>Int J Geograph Inf Sci</journal_title>
              <author>T Francke</author>
              <volume>22</volume>
              <first_page>111</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1080/13658810701300873</doi>
              <unstructured_citation>Francke T, Güntner A, Bronstert A, Mamede G, Mueller EN (2008) Automated catena-based discretization of landscapes for the derivation of hydrological modelling units. Int J Geograph Inf Sci 22:111–132</unstructured_citation>
            </citation>
            <citation key="994_CR25">
              <doi provider="crossref">10.1007/s11368-014-0990-5</doi>
              <unstructured_citation>Francke T, Werb S, Sommerer E, López-Tarazón JA (2014) Analysis of runoff, sediment dynamics and sediment yield of subcatchments in the highly erodible Isábena catchment, Central Pyrenees. J Soils Sediments doi: 10.1007/s11368-014-0990-5 (this issue)</unstructured_citation>
            </citation>
            <citation key="994_CR26">
              <unstructured_citation>Gläser C (2009) Modellierung des Wasserhaushaltes eines Einzugsgebietes in Südchile unter Berücksichtigung der Landnutzungsänderung. Technical University of Braunschweig, Institut für Geoökologie, Braunschweig, Germany. URL: http://www.soil.tu-bs.de/download/downloads/Diplomarbeiten/Glaeser.DA.2009.toc-abs.pdf</unstructured_citation>
            </citation>
            <citation key="994_CR27">
              <journal_title>Phys Chem Earth Parts A B C</journal_title>
              <author>P Gourbesville</author>
              <volume>33</volume>
              <first_page>284</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1016/j.pce.2008.02.002</doi>
              <unstructured_citation>Gourbesville P (2008) Challenges for integrated water resources management. Phys Chem Earth Parts A B C 33:284–289</unstructured_citation>
            </citation>
            <citation key="994_CR28">
              <unstructured_citation>Güntner A (2002) Large-scale hydrological modelling in the semi-arid north-east of Brazil. PhD-Thesis at the University of Potsdam, Germany, 120 pp. http://opus.kobv.de/ubp/volltexte/2005/62/</unstructured_citation>
            </citation>
            <citation key="994_CR29">
              <journal_title>J Hydrol</journal_title>
              <author>A Güntner</author>
              <volume>297</volume>
              <first_page>136</first_page>
              <cYear>2004</cYear>
              <doi provider="crossref">10.1016/j.jhydrol.2004.04.008</doi>
              <unstructured_citation>Güntner A, Bronstert A (2004) Representation of landscape variability and lateral redistribution processes for large-scale hydrological modelling in semi-arid areas. J Hydrol 297:136–161</unstructured_citation>
            </citation>
            <citation key="994_CR30">
              <journal_title>Hydrol Sci J</journal_title>
              <author>A Güntner</author>
              <volume>49</volume>
              <first_page>901</first_page>
              <cYear>2004</cYear>
              <doi provider="crossref">10.1623/hysj.49.5.901.55139</doi>
              <unstructured_citation>Güntner A, Krol M, de Araújo JC, Bronstert A (2004) Simple water balance modelling of surface reservoir systems in a large data-scarce semiarid region. Hydrol Sci J 49:901–918</unstructured_citation>
            </citation>
            <citation key="994_CR31">
              <unstructured_citation>Jackisch C (2007) Towards applied modeling of the human-eco-system an approach of hydrology based integrated modeling of a semi-arid sub-catchment in rural north-west India. Universität Potsdam, Institut für Erd- und Umweltwissenschaften, Potsdam, Germany. URL: http://opus.kobv.de/ubp/volltexte/2007/1351/</unstructured_citation>
            </citation>
            <citation key="994_CR32">
              <journal_title>J Hydrol Eng</journal_title>
              <author>M Kavvas</author>
              <volume>9</volume>
              <first_page>450</first_page>
              <cYear>2004</cYear>
              <doi provider="crossref">10.1061/(ASCE)1084-0699(2004)9:6(450)</doi>
              <unstructured_citation>Kavvas M, Chen Z, Dogrul C, Yoon J, Ohara N, Liang L, Aksoy H, Anderson M, Yoshitani J, Fukami K, Matsuura T (2004) Watershed environmental hydrology (WEHY) model based on upscaled conservation equations: hydrologic module. J Hydrol Eng 9:450–464</unstructured_citation>
            </citation>
            <citation key="994_CR33">
              <journal_title>J Hydrol</journal_title>
              <author>T Kebede Gurmessa</author>
              <volume>368</volume>
              <first_page>30</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1016/j.jhydrol.2009.01.033</doi>
              <unstructured_citation>Kebede Gurmessa T, Bárdossy A (2009) A principal components regression approach to model the bed-evolution of reservoirs. J Hydrol 368:30–41</unstructured_citation>
            </citation>
            <citation key="994_CR34">
              <unstructured_citation>Kebede Gurmessa T (2007) Numerical investigation on flow and transport characteristics to improve long-term simulation of reservoir sedimentation, Doctoral Thesis. Institut für Wasserbau, Universität Stuttgart, Stuttgart</unstructured_citation>
            </citation>
            <citation key="994_CR35">
              <author>MJ Kirkby</author>
              <cYear>1997</cYear>
              <volume_title>Mediterranean Desertification and Land Use</volume_title>
              <unstructured_citation>Kirkby MJ (1997) Physically based process model for hydrology, ecology and land degradation. In: Brandt CJ, Thornes JB (eds) Mediterranean Desertification and Land Use. Wiley, UK</unstructured_citation>
            </citation>
            <citation key="994_CR36">
              <journal_title>Earth Surf Process Landf</journal_title>
              <author>F Liébault</author>
              <volume>37</volume>
              <first_page>385</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1002/esp.2245</doi>
              <unstructured_citation>Liébault F, Bellot H, Chapuis M, Klotz S, Deschâtres M (2012) Bedload tracing in a high-sediment-load mountain stream. Earth Surf Process Landf 37:385–399</unstructured_citation>
            </citation>
            <citation key="994_CR37">
              <journal_title>Geomorphology</journal_title>
              <author>JP Lesschen</author>
              <volume>109</volume>
              <first_page>174</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2009.02.030</doi>
              <unstructured_citation>Lesschen JP, Schoorl JM, Cammeraat LH (2009) Modelling runoff and erosion for a semi-arid catchment using a multi-scale approach based on hydrological connectivity. Geomorphology 109:174–183</unstructured_citation>
            </citation>
            <citation key="994_CR38">
              <journal_title>Hydrol Sci J</journal_title>
              <author>IE Lima Neto</author>
              <volume>56</volume>
              <first_page>319</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1080/02626667.2011.553616</doi>
              <unstructured_citation>Lima Neto IE, Wiegand MC, de Araújo JC (2011) Sediment redistribution due to a dense reservoir network in a large semi-arid Brazilian basin. Hydrol Sci J 56:319–333</unstructured_citation>
            </citation>
            <citation key="994_CR39">
              <journal_title>Geomorphology</journal_title>
              <author>JA López-Tarazón</author>
              <volume>109</volume>
              <first_page>210</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2009.03.003</doi>
              <unstructured_citation>López-Tarazón JA, Batalla RJ, Vericat D, Francke T (2009) Suspended sediment transport in a highly erodible catchment: the River Isabena (Southern Pyrenees). Geomorphology 109:210–221</unstructured_citation>
            </citation>
            <citation key="994_CR40">
              <journal_title>Z Geomorphol</journal_title>
              <author>JA López-Tarazón</author>
              <volume>55</volume>
              <first_page>365</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1127/0372-8854/2011/0045</doi>
              <unstructured_citation>López-Tarazón JA, Batalla RJ, Vericat D (2011) In-channel sediment storage in a highly erodible catchment: the River Isábena (Ebro basin, Southern Pyrenees). Z Geomorphol 55:365–382</unstructured_citation>
            </citation>
            <citation key="994_CR41">
              <journal_title>Geomorphology</journal_title>
              <author>JA López-Tarazón</author>
              <volume>138</volume>
              <first_page>15</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2011.08.020</doi>
              <unstructured_citation>López-Tarazón JA, Batalla RJ, Vericat D, Francke T (2012) The sediment budget of a highly dynamic mesoscale catchment: the River Isábena. Geomorphology 138:15–28</unstructured_citation>
            </citation>
            <citation key="994_CR42">
              <unstructured_citation>Lu H, Moran C, Prosser I, Sivapalan M (2004) Modelling sediment transport ratio based on physical principles. 2nd Biennial Meeting of the iEMSs, Vol 3: 1117-1122</unstructured_citation>
            </citation>
            <citation key="994_CR43">
              <journal_title>J Hydrol Eng</journal_title>
              <author>VTC Malveira</author>
              <volume>17</volume>
              <first_page>109</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1061/(ASCE)HE.1943-5584.0000404</doi>
              <unstructured_citation>Malveira VTC, De Araújo JC, Guentner A (2012) Hydrological impact of a high-density reservoir network in the semiarid north-eastern Brazil. J Hydrol Eng 17:109–117</unstructured_citation>
            </citation>
            <citation key="994_CR44">
              <unstructured_citation>Mamede GL (2008) Reservoir sedimentation in dryland catchments: modelling and management. PhD-Thesis at the University of Potsdam, Germany, 95 pp. http://opus.kobv.de/ubp/volltexte/2008/1704/</unstructured_citation>
            </citation>
            <citation key="994_CR45">
              <journal_title>Proc Natl Acad Sci U S A</journal_title>
              <author>GL Mamede</author>
              <volume>109</volume>
              <first_page>7191</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1073/pnas.1200398109</doi>
              <unstructured_citation>Mamede GL, Araújo N, Schneider CM, de Araújo JC, Herrmann HJ (2012) Overspill avalanching in a dense reservoir network. Proc Natl Acad Sci U S A 109:7191–7195</unstructured_citation>
            </citation>
            <citation key="994_CR46">
              <journal_title>J Soils Sediments</journal_title>
              <author>PHA Medeiros</author>
              <volume>14</volume>
              <first_page>1216</first_page>
              <cYear>2014</cYear>
              <unstructured_citation>Medeiros PHA, de Araújo JC (2014) Temporal variability of rainfall in a semiarid environment in Brazil and its effect on the sediment transport processes. J Soils Sediments 14:1216–1223</unstructured_citation>
            </citation>
            <citation key="994_CR47">
              <unstructured_citation>Medeiros PHA (2009) Hydro-sedimentological processes and connectivity in a semi-arid catchment: distributed modelling and validation in different scales. PhD-Thesis. Federal University of Ceará, Brazil (in Portuguese)</unstructured_citation>
            </citation>
            <citation key="994_CR48">
              <doi provider="crossref">10.1007/s11368-014-0988-z</doi>
              <unstructured_citation>Medeiros PHA, de Araújo JC, Mamede GL, Creutzfeldt B, Güntner A, Bronstert A (2014) Connectivity of sediment transport in a semiarid environment: a synthesis for the Upper Jaguaribe Basin. Brazil J Soils Sediments. doi: 10.1007/s11368-014-0988-z (this issue)</unstructured_citation>
            </citation>
            <citation key="994_CR49">
              <unstructured_citation>Meyer-Peter E, Müller R (1948) Formulas for bedload transport, Proc Int Assoc of Hydraul Res, 3rd Ann. Conference, Stockholm, pp 39–64</unstructured_citation>
            </citation>
            <citation key="994_CR50">
              <journal_title>Earth Surf Process Landf</journal_title>
              <author>RPC Morgan</author>
              <volume>23</volume>
              <first_page>527</first_page>
              <cYear>1998</cYear>
              <doi provider="crossref">10.1002/(SICI)1096-9837(199806)23:6&lt;527::AID-ESP868&gt;3.0.CO;2-5</doi>
              <unstructured_citation>Morgan RPC, Quinton N, Smith RE, Govers G, Poesen JWA, Auerswald K, Chisci G, Torri D, Styczen ME (1998) The European Soil Erosion Model (EUROSEM): a dynamic approach for predicting sediment transport from fields and small catchments. Earth Surf Process Landf 23:527–544</unstructured_citation>
            </citation>
            <citation key="994_CR51">
              <journal_title>Water Resour Res</journal_title>
              <author>EN Mueller</author>
              <volume>43</volume>
              <first_page>W09412</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1029/2006WR005006</doi>
              <unstructured_citation>Mueller EN, Wainwright J, Parsons AJ (2007) Impact of connectivity on the modelling of overland flow within semiarid shrubland environments. Water Resour Res 43:W09412</unstructured_citation>
            </citation>
            <citation key="994_CR52">
              <journal_title>J Hydraul Eng</journal_title>
              <author>EN Mueller</author>
              <volume>134</volume>
              <first_page>1430</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1061/(ASCE)0733-9429(2008)134:10(1430)</doi>
              <unstructured_citation>Mueller EN, Batalla RJ, Garcia C, Bronstert A (2008) Modelling bed-load rates from fine grain-size patches during small floods in a gravel-bed river. J Hydraul Eng 134:1430–1439</unstructured_citation>
            </citation>
            <citation key="994_CR53">
              <journal_title>Catena</journal_title>
              <author>EN Mueller</author>
              <volume>79</volume>
              <first_page>103</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1016/j.catena.2009.06.007</doi>
              <unstructured_citation>Mueller EN, Batalla RJ, Francke T, Bronstert A (2009) Modelling the effects of land-use change on runoff and sediment yield for a meso-scale catchment in the Southern Pyrenees. Catena 79:103–111</unstructured_citation>
            </citation>
            <citation key="994_CR54">
              <journal_title>Geosci Model Dev</journal_title>
              <author>EN Mueller</author>
              <volume>3</volume>
              <first_page>275</first_page>
              <cYear>2010</cYear>
              <doi provider="crossref">10.5194/gmd-3-275-2010</doi>
              <unstructured_citation>Mueller EN, Güntner A, Francke T, Mamede G (2010) Modelling sediment export, retention and reservoir sedimentation in drylands with the WASA-SED Model. Geosci Model Dev 3:275–291</unstructured_citation>
            </citation>
            <citation key="994_CR55">
              <unstructured_citation>Neitsch SL, Arnold JG, Kiniry JR, Williams JR, King KW (2002) Soil and Water Assessment Tool, Theoretical Documentation, Texas Water Resources Institute, TWRI Report TR-191</unstructured_citation>
            </citation>
            <citation key="994_CR56">
              <unstructured_citation>Nogueira MJ, Oliveira VPVd (2003) Physical and environmental context in the State of Ceará. In: Gaiser T, Krol M, Frischkorn H, Aráujo JCs (eds) Global change and regional impacts: water availibility and vulnerability of ecosystems and society in the semiarid Northeast of Brazil. Springer, Berlin</unstructured_citation>
            </citation>
            <citation key="994_CR57">
              <unstructured_citation>Noman A (2001) Erosionsmodell für semi-aride Einzugsgebiete am Beispiel jemenitischer Wadis. Mitteilungen des Leichtweiss-Instituts für Wasserbau, Technische Universität Braunschweig, Heft 151</unstructured_citation>
            </citation>
            <citation key="994_CR58">
              <unstructured_citation>Pereira RCdM (1982) Solos. In: Oliveira JGBd (ed) Projet o Aiuaba, Fortaleza</unstructured_citation>
            </citation>
            <citation key="994_CR59">
              <journal_title>Acta Hydrophysica</journal_title>
              <author>G Peschke</author>
              <volume>31</volume>
              <first_page>191</first_page>
              <cYear>1987</cYear>
              <unstructured_citation>Peschke G (1987) Moisture and runoff components from a physically founded approach. Acta Hydrophysica 31:191–205</unstructured_citation>
            </citation>
            <citation key="994_CR60">
              <doi provider="crossref">10.1007/s11368-014-0957-6</doi>
              <unstructured_citation>Piqué G, López-Tarazón JA, Batalla RJ (2014) Variability of in-channel sediment storage in a river draining highly erodible areas (the Isábena, Ebro basin). J Soils Sediments. doi: 10.1007/s11368-014-0957-6 (this issue)</unstructured_citation>
            </citation>
            <citation key="994_CR61">
              <journal_title>Hydrol Process</journal_title>
              <author>SM Reaney</author>
              <volume>21</volume>
              <first_page>894</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1002/hyp.6281</doi>
              <unstructured_citation>Reaney SM, Bracken LJ, Kirkby MJ (2007) Use of the Connectivity of Runoff Model (CRUM) to investigate the influence of storm characteristics on runoff generation and connectivity in semi-arid areas. Hydrol Process 21:894–906</unstructured_citation>
            </citation>
            <citation key="994_CR62">
              <journal_title>Water Resour Res</journal_title>
              <author>D Rickenmann</author>
              <volume>37</volume>
              <first_page>3295</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1029/2001WR000319</doi>
              <unstructured_citation>Rickenmann D (2001) Comparison of bed load transport in torrents and gravel bed streams. Water Resour Res 37:3295–3305</unstructured_citation>
            </citation>
            <citation key="994_CR63">
              <journal_title>IAHS Publ</journal_title>
              <author>JW Roehl</author>
              <volume>59</volume>
              <first_page>202</first_page>
              <cYear>1962</cYear>
              <unstructured_citation>Roehl JW (1962) Sediment source areas, delivery ratios and influencing morphological factors. IAHS Publ 59:202–213</unstructured_citation>
            </citation>
            <citation key="994_CR64">
              <journal_title>Catena Suppl</journal_title>
              <author>J Schmidt</author>
              <volume>19</volume>
              <first_page>101</first_page>
              <cYear>1991</cYear>
              <unstructured_citation>Schmidt J (1991) A mathematical model to simulate rainfall erosion. Catena Suppl 19:101–109</unstructured_citation>
            </citation>
            <citation key="994_CR65">
              <author>A Schoklitsch</author>
              <first_page>257</first_page>
              <cYear>1950</cYear>
              <doi provider="crossref">10.1007/978-3-7091-4474-9</doi>
              <volume_title>Handbuch des Wasserbaus</volume_title>
              <edition_number>2</edition_number>
              <unstructured_citation>Schoklitsch A (1950) Handbuch des Wasserbaus, 2nd edn. Springer, Vienna, p 257</unstructured_citation>
            </citation>
            <citation key="994_CR66">
              <journal_title>Q J Roy Meteor Soc</journal_title>
              <author>J Shuttleworth</author>
              <volume>111</volume>
              <first_page>839</first_page>
              <cYear>1985</cYear>
              <doi provider="crossref">10.1002/qj.49711146910</doi>
              <unstructured_citation>Shuttleworth J, Wallace JS (1985) Evaporation from sparse crops - an energy combination theory. Q J Roy Meteor Soc 111:839–855</unstructured_citation>
            </citation>
            <citation key="994_CR67">
              <journal_title>Catena</journal_title>
              <author>A Sidorchuk</author>
              <volume>37</volume>
              <first_page>401</first_page>
              <cYear>1999</cYear>
              <doi provider="crossref">10.1016/S0341-8162(99)00029-6</doi>
              <unstructured_citation>Sidorchuk A (1999) Dynamic and static models of gully erosion. Catena 37:401–414</unstructured_citation>
            </citation>
            <citation key="994_CR68">
              <journal_title>Hydrol Process</journal_title>
              <author>M Sivapalan</author>
              <volume>10</volume>
              <first_page>429</first_page>
              <cYear>1996</cYear>
              <doi provider="crossref">10.1002/(SICI)1099-1085(199603)10:3&lt;429::AID-HYP309&gt;3.0.CO;2-G</doi>
              <unstructured_citation>Sivapalan M, Viney NR, Jeevaraj CG (1996) Water and salt balance modelling to predict the effects of land use changes in forested catchments. 3. The large scale model. Hydrol Process 10:429–446</unstructured_citation>
            </citation>
            <citation key="994_CR69">
              <unstructured_citation>Smart GM, Jaeggi MNR (1983) Sediment transport on steep slopes, Mitteil. 64, Versuchsanstalt für Wasserbau, Hydrologie und Glaziologie, ETH-Zürich, Switzerland</unstructured_citation>
            </citation>
            <citation key="994_CR70">
              <journal_title>Water Resour Res</journal_title>
              <author>MW Smith</author>
              <volume>46</volume>
              <first_page>W12540</first_page>
              <cYear>2010</cYear>
              <unstructured_citation>Smith MW, Bracken LJ, Cox NJ (2010) Toward a dynamic representation of hydrological connectivity at the hillslope scale in semi-arid area. Water Resour Res 46:W12540</unstructured_citation>
            </citation>
            <citation key="994_CR71">
              <journal_title>IAHS Publ</journal_title>
              <author>B Storm</author>
              <volume>167</volume>
              <first_page>595</first_page>
              <cYear>1987</cYear>
              <unstructured_citation>Storm B, Jorgensen GH, Styczen M (1987) Simulation of water flow and soil erosion processes with a distributed physically-based modeling system. IAHS Publ 167:595–608</unstructured_citation>
            </citation>
            <citation key="994_CR72">
              <journal_title>IAHS Publ</journal_title>
              <author>B Valero-Garcés</author>
              <volume>245</volume>
              <first_page>241</first_page>
              <cYear>1997</cYear>
              <unstructured_citation>Valero-Garcés B, Navas A, Machín J (1997) Sediment deposition in the Barasona reservoir (central Pyrenees, Spain): temporal and spatial variability of sediment yield and land use impacts. IAHS Publ 245:241–249</unstructured_citation>
            </citation>
            <citation key="994_CR73">
              <doi provider="crossref">10.1016/S0169-555X(98)00096-8</doi>
              <unstructured_citation>Valero-Garcés, B.L., Navas, A., Machín, J., Walling, D. (1999): Sediment sources and siltation in mountain reservoirs: a case study from the Central Spanish Pyrenees. Geomorphology, 18, 23–41</unstructured_citation>
            </citation>
            <citation key="994_CR74">
              <doi provider="crossref">10.1016/j.catena.2014.04.012</doi>
              <unstructured_citation>Vericat D, Smith M, Brasington J (2014) Patterns of erosion and deposition in badlands determined by high resolution event-scale topographic surveys. Catena (in press)</unstructured_citation>
            </citation>
            <citation key="994_CR75">
              <journal_title>Hydrol Process</journal_title>
              <author>NR Viney</author>
              <volume>13</volume>
              <first_page>727</first_page>
              <cYear>1999</cYear>
              <doi provider="crossref">10.1002/(SICI)1099-1085(19990415)13:5&lt;727::AID-HYP776&gt;3.0.CO;2-D</doi>
              <unstructured_citation>Viney NR, Sivapalan M (1999) A conceptual model of sediment transport: application to the Avon Riber Basin in Western Australia. Hydrol Process 13:727–743</unstructured_citation>
            </citation>
            <citation key="994_CR76">
              <author>J Wainwright</author>
              <first_page>37</first_page>
              <cYear>2003</cYear>
              <doi provider="crossref">10.1007/3-540-36606-7_3</doi>
              <volume_title>Long Term Hillslope and Fluvial System Modelling</volume_title>
              <unstructured_citation>Wainwright J, Parsons AJ, Michaelides K, Powell D, Brazier R (2003) Linking short- and long-term soil-erosion modelling. In: Lang A, Hennrich K, Dikau R (eds) Long Term Hillslope and Fluvial System Modelling. Springer, Berlin, Heidelberg, Germany, pp 37–51</unstructured_citation>
            </citation>
            <citation key="994_CR77">
              <journal_title>Geomorphology</journal_title>
              <author>J Wainwright</author>
              <volume>126</volume>
              <first_page>387</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2010.07.027</doi>
              <unstructured_citation>Wainwright J, Turnbull L, Ibrahim TG, Lexartza-Artza I, Thornton SF, Brazier RE (2011) Linking environmental regimes, space and time: interpretations of structural and functional connectivity. Geomorphology 126:387–404</unstructured_citation>
            </citation>
            <citation key="994_CR78">
              <journal_title>Earth Surf Process Landf</journal_title>
              <author>J Wainwright</author>
              <volume>33</volume>
              <first_page>813</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1002/esp.1624</doi>
              <unstructured_citation>Wainwright J, Parsons AJ, Mueller EN, Brazier RE, Powell DM, Fenti B (2008) A transport-distance approach to scaling erosion rates: 1. background and model development. Earth Surf Process Landf 33:813–826</unstructured_citation>
            </citation>
            <citation key="994_CR79">
              <journal_title>J Hydrol</journal_title>
              <author>DE Walling</author>
              <volume>65</volume>
              <first_page>209</first_page>
              <cYear>1983</cYear>
              <doi provider="crossref">10.1016/0022-1694(83)90217-2</doi>
              <unstructured_citation>Walling DE (1983) The sediment delivery problem. J Hydrol 65:209–237</unstructured_citation>
            </citation>
            <citation key="994_CR80">
              <unstructured_citation>Walling DE, Woodward JC, Nicholas AP (1993) A multi-parameter approach to fingerprinting suspended sediment sources. In: Peters NE, Hoehn E, Leibundgut Ch, Tase N, Walling DE (eds) Tracers in hydrology. IAHS Publication No. 215, IAHS Press, Wallingford, pp 329–337</unstructured_citation>
            </citation>
            <citation key="994_CR81">
              <journal_title>J Hydrol</journal_title>
              <author>JM Wicks</author>
              <volume>175</volume>
              <first_page>213</first_page>
              <cYear>1996</cYear>
              <doi provider="crossref">10.1016/S0022-1694(96)80012-6</doi>
              <unstructured_citation>Wicks JM, Bathurst JC (1996) SHESED: a physically based, distributed erosion and sediment yield component for the SHE hydrological modeling system. J Hydrol 175:213–238</unstructured_citation>
            </citation>
            <citation key="994_CR82">
              <unstructured_citation>Williams J (1977) Sediment delivery ratios determined with sediment and runoff models. In: Erosion and solid matter transport in inland waters. Proceedings of the IAHS-Paris Symposium. IAHS Publications No. 122.168-179</unstructured_citation>
            </citation>
            <citation key="994_CR83">
              <unstructured_citation>Williams J (1995) The EPIC Model. In: Singh VP (ed) Computer models of watershed hydrology. Water Resources Publications, Highlands Ranch, CO, pp 909–1000</unstructured_citation>
            </citation>
            <citation key="994_CR84">
              <unstructured_citation>Wischmeier W, Smith D (1978) Rainfall erosion loss: a guide to conservation planning. USDA Agriculture Handbook 537, Washington (DC), 58 pp</unstructured_citation>
            </citation>
            <citation key="994_CR85">
              <journal_title>Processes Landf</journal_title>
              <author>PA Wood</author>
              <volume>3</volume>
              <first_page>255</first_page>
              <cYear>1978</cYear>
              <unstructured_citation>Wood PA (1978) Fine-sediment mineralogy of source rocks and suspended sediment, Rother Catchment, West Sussex, Earth Surf. Processes Landf 3:255–263</unstructured_citation>
            </citation>
            <citation key="994_CR86">
              <doi provider="crossref">10.1108/emh.2001.12.4.444.2</doi>
              <unstructured_citation>World Commission on Dams (2000) Dams and development. A new framework for decision-making. The report of the world commission on dams. Earthscan Publcations Ltd, London</unstructured_citation>
            </citation>
            <citation key="994_CR87">
              <journal_title>J Hydraul Res</journal_title>
              <author>W Wu</author>
              <volume>2</volume>
              <first_page>51</first_page>
              <cYear>2004</cYear>
              <unstructured_citation>Wu W, Jiang E, Wang SY (2004) Depth averaged 2D calculation of flow and sediment transport in the lower Yellow River. J Hydraul Res 2:51–59</unstructured_citation>
            </citation>
          </citation_list>
        </journal_article>
      </journal>
    </crossref>
  </doi_record>
</doi_records>