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</o:shapelayout></xml><![endif]--></head><body lang=ES-AR link="#0563C1" vlink="#954F72" style='word-wrap:break-word'><div class=WordSection1><p class=MsoNormal>Estimados colegas, <o:p></o:p></p><p class=MsoNormal><o:p> </o:p></p><p class=MsoNormal>les recordamos que este viernes 9 de septiembre es la fecha de cierre para el envío de resúmenes al IAL IPA 2022. Los invitamos especialmente a enviar contribuciones a la sesión FS15 – Subaqueous mass wasting in natural and artificial lakes: triggers, development and impacts. <o:p></o:p></p><p class=MsoNormal><o:p> </o:p></p><p class=MsoNormal><span lang=EN-US>Subaqueous mass wasting is one of the most efficient mechanisms of sediment transport from coastal to deep lacustrine basins. Given that such events can directly impact coastal communities, infrastructure and human activities at littoral areas and are able to generate tsunamis, a deep understanding of the origin, dynamics and potential impacts of these processes has significant implications for geohazard and risk assessment at both natural and artificial lakes. The aim of this session is to provide a forum to discuss the latest accomplishments and advancements in the topic of subaqueous mass movements (including landslides, debris flows, turbidity currents, delta collapses, etc) in lacustrine environments, including but not limited to: conditioning mechanisms and potential triggers (including volcanic, seismic, sedimentary and anthropogenic triggers, among others), failure dynamics, sedimentary and geomorphic processes, slope stability and risk assessments, landslide-prone environments, tsunamigenic risk and modelling, geotechnical aspects of mass movements, tectonics and mass movements, instrumentation and methods for monitoring mass movements, etc. The understanding of these processes is especially interesting in systems located in geologic environments that are expected to be significantly affected by climate change (proglacial lakes, reservoirs in arid and semiarid regions, etc.) We particularly encourage to contribute with studies related to deltaic instability in natural lakes and reservoirs given that these environments are proven to be particularly landslide-prone areas.<o:p></o:p></span></p><p class=MsoNormal><span lang=EN-US>Conveners: Gustavo Villarosa, IPATEC (CONICET/UNCo), Universidad Nacional del Comahue, Argentina villarosag@comahue-conicet.gob.ar, Débora Beigt, IPATEC (CONICET/UNCo), Argentina, Emmanuel Chapron, Université Toulouse Jean Jaurès, CNRS UMR 5602, Toulouse, France, Léo Chassiot, Université Laval, INRS-ETE, Québec, Canada.<o:p></o:p></span></p><p class=MsoNormal><span lang=EN-US><o:p> </o:p></span></p><p class=MsoNormal><span lang=EN-US><o:p> </o:p></span></p><p class=MsoNormal>Dr. Gustavo Villarosa<o:p></o:p></p><p class=MsoNormal>Instituto Andino Patagónico de Tecnologías Biológicas y Geoambientales IPATEC<o:p></o:p></p><p class=MsoNormal>CONICET – Universidad Nacional del Comahue<o:p></o:p></p><p class=MsoNormal>Centro Regional Universitario Bariloche<o:p></o:p></p><p class=MsoNormal>Quintral 1250 – 8400 Bariloche – Río Negro, Argentina<o:p></o:p></p><p class=MsoNormal>villarosag@comahue-conicet.gob.ar<o:p></o:p></p><p class=MsoNormal>+54 294 4428505 int 405<o:p></o:p></p><p class=MsoNormal><o:p> </o:p></p></div></body></html>