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<h1><a href="#">Irena Vaňková</a></h1>
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<li><a href="index.html">Home</a></li>
<li><a href="Research.html">Research</a></li>
<li class="active"><a href="#">Publications and Talks</a></li>
<li><a href="Teaching.html">Teaching</a></li>
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<h2 class="title">Publications</a></h2>
<div class="entry">
<u><i>Peer-reviewed articles</i></u>
<ol reversed="reversed">
<li>Schild, K. <b>I. Vaňková</b>, D. Sutherland, and K. Nicholls (2024): <a href="https://doi.org/10.1017/aog.2024.35" rel="nofollow">Deriving iceberg ablation rates using an on-iceberg autonomous phase-sensitive radar (ApRES)</a>, <i>Annals of Glaciology</i>.</li>
<li>Yan, P., D. M. Holland, V. C. Tsai, <b>I. Vaňková</b>, and S. Xie (2024): <a href="http://dx.doi.org/10.1029/2023GL105342" rel="nofollow">Tidally-modulated glacial slip and tremor at Helheim Glacier, Greenland</a>, <i>Geophysical Research Letters</i>, 51(1).</li>
<li><b>Vaňková, I.</b>, J. P. Winberry, S. Cook, K. W. Nicholls, C. A. Greene, and B. K. Galton-Fenzi (2023): <a href="http://dx.doi.org/10.1029/2023GL102960" rel="nofollow">High spatial melt rate variability near the Totten Glacier grounding zone explained by new bathymetry inversion</a>, <i>Geophysical Research Letters</i>, 50(10).</li>
<li>Cook S., K. W. Nicholls, <b>I. Vaňková</b> , S. S. Thompson, and B. K. Galton-Fenzi (2023): <a href="https://doi.org/10.1017/aog.2023.6" rel="nofollow">Data initiatives for ocean-driven melt of Antarctic ice shelves</a>, <i>Annals of Glaciology</i>.</li>
<li>Davis P. E. D., K. W. Nicholls, D. M. Holland, B. E. Schmidt, P. Washam, K. L. Riverman, R. J. Arthern, <b>I. Vaňková</b>, C Eayrs, J. A. Smith, P. G. D. Anker, A. D. Mullen, D. Dichek, J. D. Lawrence, M. M. Meister, E. Clyne, A. Basinski-Ferris, E. Rignot, B. Y. Queste, L. Boehme, K. J. Heywood, S. Anandakrishnan, and K. Makinson (2023): <a href="https://doi.org/10.1038/s41586-022-05586-0" rel="nofollow">Suppressed basal melting in the eastern Thwaites Glacier grounding zone</a>, <i>Nature</i>, 614.</li>
<li><b>Vaňková, I.</b> and K. W. Nicholls (2022): <a href="https://doi.org/10.1029/2022JC018879" rel="nofollow">Ocean variability beneath the Filchner-Ronne Ice Shelf inferred from basal melt rate time series</a>, <i>Journal of Geophysical Research: Oceans</i>, 127.</li>
Paper featured as a Research Spotlight in the AGU's <a href="https://eos.org/research-spotlights/a-close-look-at-melting-below-antarcticas-largest-ice-shelf" rel="nofollow">Eos magazine</a>.
<li><b>Vaňková, I.</b> , K. W. Nicholls, and H. F. J. Corr (2021): <a href="https://doi.org/10.1029/2021JC017290" rel="nofollow">The nature of ice intermittently accreted at the base of Ronne Ice Shelf, Antarctica, assessed using phase-sensitive radar</a>, <i>Journal of Geophysical Research: Oceans</i>, 126(10).</li>
<li><b>Vaňková, I.</b> (2021): <a href="https://doi.org/10.1038/s41561-021-00752-x" rel="nofollow">Calving prediction from ice mélange motion</a>, <i>Nature Geoscience</i>, 14(6).</li>
<li><b>Vaňková, I.</b>, S. Cook, J. P. Winberry, K. W. Nicholls, and B. K. Galton-Fenzi (2021): <a href="https://doi.org/10.1029/2021GL092692" rel="nofollow">Deriving melt rates at a complex ice shelf base using in-situ radar: Application to Totten Ice Shelf</a>, <i>Geophysical Research Letters</i>, 48(7).</li>
<li>Bull, C. Y. S., A. Jenkins, N. C. Jourdain, <b>Vaňková I.</b>, P. R. Holland, P. Mathiot, U. Hausmann and J.-B. Sallée (2021): <a href=" https://agupubs.onlinelibrary.wiley.com/doi/epdf/10.1029/2020JC016550" rel="nofollow">Remote control of Filchner‐Ronne Ice Shelf melt rates by the Antarctic Slope Current</a>, <i>Journal of Geophysical Research: Oceans</i>, 126(2).</li>
<li><b>Vaňková, I.</b>, K. W. Nicholls, S. Xie, B. R. Parizek, D. Voytenko and D. M. Holland (2020): <a href="https://doi.org/10.1017/aog.2020.56" rel="nofollow">Depth-dependent artifacts resulting from ApRES signal clipping</a>, <i>Annals of Glaciology</i>, 61(81).</li>
<li><b>Vaňková, I.</b>, K. W. Nicholls, H. F. J. Corr, K. Makinson and P. V. Brennan (2020): <a href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2019JF005280" rel="nofollow">Observations of tidal melt and vertical strain at the Filchner-Ronne Ice Shelf, Antarctica</a>, <i>Journal of Geophysical Research: Earth Surface</i>, 125(1). </li>
<li>Xie, S., T. H. Dixon, D. M. Holland, D. Voytenko and <b>I. Vaňková</b> (2019): <a href="https://www.nature.com/articles/s41467-019-10908-4" rel="nofollow">Rapid iceberg calving following removal of tightly packed pro-glacial mélange</a>, <i>Nature Communications</i>, 10(1). </li>
<li>Parizek, B. R., K. Christianson, R. B. Alley, D. Voytenko, <b>I. Vaňková</b>, T. H. Dixon, R. T. Walker and D. M. Holland (2019): <a href="https://pubs.geoscienceworld.org/gsa/geology/article/569567/ice-cliff-failure-via-retrogressive-slumping" rel="nofollow">Ice-cliff failure via retrogressive slumping</a>,
<i>Geology</i>, 47(5).</li>
<li><b>Vaňková, I.</b>, D. Voytenko, K. W. Nicholls, S. Xie, B. R. Parizek and D. M. Holland (2018): <a href="https://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2018GL077869" rel="nofollow">Vertical structure of diurnal englacial hydrology cycle at Helheim Glacier, East Greenland</a>, <i>Geophysical Research Letters</i>, 45(16). </li>
<li><b>Vaňková, I.</b> and D. M. Holland (2017): <a href="http://onlinelibrary.wiley.com/doi/10.1002/2017JC013012/full" rel="nofollow">A model of icebergs and sea ice in a joint continuum framework</a>, <i>Journal of Geophysical Research: Oceans</i>, 122(11). </li>
<li>Holland, D. M., D. Voytenko, K. Christianson, T. H. Dixon, M.J. Mei, B. R. Parizek, <b>I. Vaňková</b>, R. T. Walker, J. I. Walter, K. W. Nicholls and D. Holland (2016): <a href="http://tos.org/oceanography/article/an-intensive-observation-of-calving-at-helheim-glacier-east-greenland" rel="nofollow">An intensive observation of calving at Helheim Glacier, East Greenland</a>,
<i>Oceanography</i>, 29(4).</li>
<li><b>Vaňková, I. </b> and D. M. Holland (2016): <a href="http://journals.ametsoc.org/doi/pdf/10.1175/JPO-D-15-0236.1" rel="nofollow">Calving signature in ocean waves at Helheim Glacier and Sermilik Fjord, East Greenland</a>,
<i>Journal of Physical Oceanography</i>, 46(10).</li>
<li>Lee, L., G. Lyng and <b>I. Vaňková</b> (2012): <a href="https://doi.org/10.1016/j.physd.2012.08.006" rel="nofollow">The Gaussian semiclassical soliton ensemble and numerical methods for the focusing nonlinear Schrödinger equation</a>,
<i>Physica D</i>, 241(21).</li>
<li>Lee, L. and <b>I. Vaňková</b> (2011): <a href="https://doi.org/10.1016/j.physd.2011.06.013" rel="nofollow">A class of Cartesian grid embedded boundary algorithms for incompressible flow with time-varying complex geometries</a>,
<i>Physica D</i>, 240(20).</li>
</ol>
<u><i>Reports</i></u>
<ol reversed="reversed">
<li>McCormack, F., S. Cook, S. Phillips, S. Adusumilli, T. Hattermann, Y. Nakayama, I. Nias, H. Seroussi, D. Slater, C. Begeman, D. Goldberg, R. Jackson, A. Jenkins, N. Jourdain, M. Rosevear, <b>I. Vaňková</b>, & A. Wåhlin (2023). <a href="https://doi.org/10.5281/zenodo.7960675" rel="nofollow">Ice-Ocean Melt: Future Research Directions</a>. Report on the 1st JCIOI workshop on ice-ocean interaction, 17-19th Oct 2022.</li>
</ol>
<u><i>Datasets</i></u>
<ol reversed="reversed">
<li> Zhou, S., P. Dutrieux, C. Guilivi, A. Silvano, C. Auckland, P. Abrahamsen, M. Meredith, <b>I. Vaňková</b>, K. Nicholls, S. Østerhus, A. Gordon, T. Sebaginazzi Dotto, T. Scambos, K. Gunn, S. Rintoul, S. Aoki, C. Stevens, C. Liu, T.-W. Kim, and W. S. Lee (2024): <a href="https://doi.org/10.17882/99922" rel="nofollow">Southern Ocean moored time series (south of 60°S) version 1 (OCEAN:ICE D1.1)</a>. SEANOE.</li>
</ol>
<u><i>Thesis</i></u>
<ol reversed="reversed">
<li><b>Vaňková, I.</b> (2018): Ice and Ocean Dynamics in a Glacier Fjord, <a href="https://drive.google.com/file/d/1BwrgBIl8jpqld8nKl6ldtyF1qRhfPRzT/view?usp=sharingl" rel="nofollow"> PhD dissertation</a>, New York University. </li>
</ol>
</div>
</div>
<div class="post">
<h2 class="title">Conference presentations and seminars</a></h2>
<div class="entry">
<ol reversed="reversed">
2024
<li type="disc"><b>Subglacial discharge effects on ice-shelf basal melting in Antarctica</b>
<ol>
<li type="circle">Joint Commission on Ice-Ocean Interactions virtual workshop. (talk)</li>
</ol>
<li type="disc"><b>Antarctic ice shelf melt and cavity circulation processes in high resolution regionally refined E3SM configurations</b>
<ol>
<li type="circle">EESM PI meeting, New Bethesda, Maryland, USA. (poster)</li>
</ol>
<li type="disc"><b>The effects of including Antarctic subglacial meltwater flux to the ocean in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">European Seminar on Computing, Pilsen, Czech Republic. (invited)</li>
</ol>
<li type="disc"><b>The effects of including Antarctic subglacial meltwater flux to the ocean in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">European Seminar on Computing, Pilsen, Czech Republic. (invited)</li>
</ol>
<li type="disc"><b>The effects of including Antarctic subglacial meltwater flux to the ocean in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">General Assembly of the European Geosciences Union, Vienna, Austria. (poster)</li>
</ol>
<li type="disc"><b>The effect of grid resolution on sub-ice shelf circulation in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">General Assembly of the European Geosciences Union, Vienna, Austria. (poster)</li>
</ol>
<li type="disc"><b>The effects of including Antarctic subglacial meltwater flux to the ocean in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">Special Seminar, British Antarctic Survey, Cambridge, United Kingdom. (invited)</li>
</ol>
2023
<li type="disc"><b>Sub-ice shelf circulation and melt rate variability in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">American Geophysical Union Fall Meeting, San Francisco, California, USA. (poster)</li>
</ol>
<li type="disc"><b>Melt rates, bathymetry, and melt rate variability near the Totten Glacier grounding zone</b>
<ol>
<li type="circle">Forum for Research into Ice Shelf Processes (FRISP 2023), Stalheim, Norway. (poster)
</ol>
<li type="disc"><b>Melt rate variability and circulation in Antarctic ice-shelf cavities, from in-situ radar observations</b>
<ol>
<li type="circle">MISU Seminar Series, Stockholm University, Stockholm, Sweden. (invited)</li>
</ol>
<li type="disc"><b>Sub-ice shelf circulation and melt rate variability in the Energy Exascale Earth System Model</b>
<ol>
<li type="circle">General Assembly of the European Geosciences Union, Vienna, Austria. (poster)</li>
</ol>
<li type="disc"><b>Ocean variability beneath the Filchner-Ronne Ice Shelf inferred from basal melt rate time series</b>
<ol>
<li type="circle">General Assembly of the European Geosciences Union, Vienna, Austria. (poster)</li>
</ol>
<li type="disc"><b>Melt rate variability and circulation in Antarctic ice-shelf cavities, from in-situ radar observations</b>
<ol>
<li type="circle">Lunchtime Seminar Series, Geophysical Fluid Dynamics Laboratory, Princeton, New Jersey, USA. (invited)</li>
</ol>
<li type="disc"><b>Melt rate variability and circulation in Antarctic ice-shelf cavities, from in-situ radar observations</b>
<ol>
<li type="circle">Marine Geology and Geophysics/Seismology, Geology, and Tectonophysics Seminar Series, Lamont-Doherty Earth Observatory, Palisades, New York, USA. (invited)</li>
</ol>
2022
<li type="disc"><b>Ocean variability beneath the Filchner-Ronne Ice Shelf inferred from basal melt rate time series</b>
<ol>
<li type="circle">American Geophysical Union Fall Meeting, Chicago, Illinois, USA. (poster)</li>
</ol>
<li type="disc"><b>Exploring ocean dynamics beneath ice shelves with radar</b>
<ol>
<li type="circle">Science Cafe, Earth and Environmental Sciences Division, Los Alamos National Laboratory, Los Alamos, New Mexico, USA.</li>
</ol>
<li type="disc"><a href="https://youtu.be/KlQw8ba-e2M" rel="nofollow"><b>Observing and understanding variability in sub-ice-shelf circulation and basal melting</b></a>
<ol>
<li type="circle">Joint Commission on Ice-Ocean Interactions virtual workshop. (invited keynote address on the topic of "New and Emerging Technologies")</li>
</ol>
<li type="disc"><a href="https://youtu.be/QjqTF0Q7YjM?list=PLaPrVYyxSZsirAaBiZVL4kXewkG_STBtt&t=10361" rel="nofollow"><b>Inferring ocean variability in ice-shelf cavities from basal melt rate time series</b></a>
<ol>
<li type="circle">West Antarctic Ice Sheet Workshop, Estes Park, Colorado, USA. (talk)</li>
</ol>
<li type="disc"><b>Ocean variability beneath the Filchner-Ronne Ice Shelf, from observations</b>
<ol>
<li type="circle">Climate, Ocean and Sea Ice Modeling Seminar, Los Alamos National Laboratory, Los Alamos, New Mexico, USA.</li>
</ol>
<li type="disc"><b>Observing interactions between ocean and ice shelves in Antarctica</b>
<ol>
<li type="circle">Climate and Math Conference, Brandeis University, Waltham, Massachusetts, USA. (invited)</li>
</ol>
<li type="disc"><b>Exploring ocean dynamics beneath ice shelves with radar</b>
<ol>
<li type="circle">Earth & Planetary Sciences Special Colloquium, Harvard University, Cambridge, Massachusetts, USA. (invited)</li>
</ol>
<li type="disc"><b>ApRES on the Filchner-Ronne Ice Shelf</b>
<ol>
<li type="circle">Science Seminar, Rothera Research Station, Adelaide Island, Antarctica. (invited)</li>
</ol>
2021
<li type="disc"><b>Exploring ocean dynamics beneath ice shelves with radar</b>
<ol>
<li type="circle">Special Seminar, Hebrew University of Jerusalem, Jerusalem, Israel. (invited)</li>
</ol>
<li type="disc"><b>Exploring ocean dynamics beneath ice shelves with radar</b>
<ol>
<li type="circle">Physical Geography and Geoecology Seminar, Charles University, Prague, Czech Republic. (invited)</li>
</ol>
<li type="disc"><b>Exploring ocean dynamics beneath ice shelves with radar</b>
<ol>
<li type="circle">Physical Oceanography Seminar, Woods Hole Oceanographic Institution, Falmouth, Massachusetts, USA. (invited)</li>
</ol>
<li type="disc"><b>Seasonal and inter-annual melt rate variability at the Filchner-Ronne Ice Shelf</b>
<ol>
<li type="circle">Polar Oceans Seminar, British Antarctic Survey, Cambridge, UK.</li>
</ol>
2020
<li type="disc"><a href="https://agu.confex.com/agu/fm20/webprogram/Paper674179.html" rel="nofollow"><b>Radar observations of physical processes at the base of the Filchner-Ronne Ice Shelf</b></a>
<ol>
<li type="circle">American Geophysical Union - Fall Meeting, virtual. (invited)</li>
</ol>
<li type="disc"><b>Detecting ocean dynamics beneath Antarctic ice shelves with a radar</b>
<ol>
<li type="circle">Darwin Science Seminar, Darwin College, University of Cambridge, Cambridge, UK. (invited)</li>
</ol>
<li type="disc"><b>Observing ice shelf basal melt at sites with complex basal geometries at the Totten Ice Shelf</b>
<ol>
<li type="circle">Forum for Research into Ice Shelf Processes (FRISP 2020), virtual conference. (talk)</li>
</ol>
<li type="disc"><b>Monitoring of basal melt at Antarctic Ice Shelves - observations, processes, and model comparisons</b>
<ol>
<li type="circle">Atmospheric, Oceanic and Planetary Physics Seminar, Oxford University, Oxford, UK. (invited)</li>
</ol>
<li type="disc"><b>Observing ice shelf basal melt at sites with complex basal geometries</b>
<ol>
<li type="circle">Ice & Climate Group Seminar, Georgia Institute of Technology, Atlanta, Georgia, USA. (invited)</li>
</ol>
<li type="disc"><b>Observations of sub-monthly melt rate variability at the Filchner-Ronne Ice Shelf</b>
<ol>
<li type="circle">Ocean Sciences Meeting, San Diego, California, USA. (poster)</li>
</ol>
<li type="disc"><b>Detection of melt at the ice shelf base with a phase-sensitive radar</b>
<ol>
<li type="circle">Atmosphere-Ocean Dynamics Group Seminar, Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Cambridge, UK. (invited)</li>
</ol>
2019
<li type="disc"><a href="https://www.ccrc.unsw.edu.au/events/irena-vankova-monitoring-basal-melt-filcher-ronne-ice-shelf-observations-processes-and-model" rel="nofollow"><b>Monitoring of basal melt at the Filcher-Ronne Ice Shelf - observations, processes, and model comparisons</b></a>
<ol>
<li type="circle">Seminar, Climate Change Research Center, University of New South Wales, Sydney, Australia.</li>
</ol>
<li type="disc"><b>Monitoring of basal melt at the Filcher-Ronne Ice Shelf - observations, processes, and model comparisons</b>
<ol>
<li type="circle">Seminar, Australian Antarctic Division, Kingston, Australia. (invited)</li>
</ol>
<li type="disc"><b>Detection of fast time scale processes in the ice and ocean with ApRES</b>
<ol>
<li type="circle">Glaciology Seminar, University of Tasmania, Hobart, Australia. (invited)</li>
</ol>
<li type="disc"><b>Tidal melt and vertical strain observations at the Filchner-Ronne Ice Shelf</b>
<ol>
<li type="circle">Forum for Research into Ice Shelf Processes (FRISP 2019), Oxford, UK. (talk)</li>
</ol>
<li type="disc"><b>Detecting oceanic variability at the ice sheet edges of Greenland and Antarctica</b>
<ol>
<li type="circle">CEOS Seminar, University of Manitoba, Winnipeg, Canada. (invited)</li>
</ol>
<li type="disc"><b>A model of icebergs and sea ice in a joint continuum framework</b>
<ol>
<li type="circle">Modeling Seminar, Alfred Wegener Institute, Bremerhaven, Germany. (invited)</li>
</ol>
<li type="disc"><b>High-frequency melt and vertical strain observations at the Filchner-Ronne Ice Shelf</b>
<ol>
<li type="circle">Antarctic Seminar, Alfred Wegener Institute, Bremerhaven, Germany. (invited)</li>
</ol>
<li type="disc"><b>Greenland glacier fjord hydrographic variability driven by Irminger Sea winter convection</b>
<ol>
<li type="circle">Arctic Seminar, Alfred Wegener Institute, Bremerhaven, Germany. (invited)</li>
</ol>
<li type="disc"><a href="https://www.bjerknes.uib.no/en/article/event-description/seminar-irena-vankova" rel="nofollow"><b>Greenland glacier fjord hydrographic variability driven by Irminger Sea winter convection</b></a>
<ol>
<li type="circle">Bjerknes Seminar, Bjerknes Center for Climate Research, Bergen, Norway. (invited)</li>
</ol>
<li type="disc"><b>Greenland glacier fjord hydrographic variability driven by Irminger Sea winter convection</b>
<ol>
<li type="circle">Glaciology Seminar, Northumbria University, Newcastle upon Tyne, UK. (invited)</li>
</ol>
<li type="disc"><b>Using ApRES to infer tidal melt rates and vertical strain rates at the Filchner-Ronne Ice Shelf</b>
<ol>
<li type="circle">General Assembly of the European Geosciences Union, Vienna, Austria. (poster)</li>
</ol>
<li type="disc"><b>Sources of interannual variability in Sermilik Fjord, East Greenland</b>
<ol>
<li type="circle">Geophysical and Environmental Processes Seminar, Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Cambridge, UK. (invited)
</ol>
2018
<li type="disc"><a href="https://agu.confex.com/agu/fm18/meetingapp.cgi/Paper/351794" rel="nofollow"><b>Vertical structure of diurnal englacial hydrology cycle at Helheim Glacier, East Greenland</b></a>
<ol>
<li type="circle">American Geophysical Union - Fall Meeting, Washington D.C., USA. (talk)</li>
</ol>
<li type="disc"><b>Vertical structure of diurnal englacial hydrology cycle at Helheim Glacier, East Greenland</b>
<ol>
<li type="circle">Forum for Research into Ice Shelf Processes (FRISP 2018), Aussois, France. (talk)</li>
</ol>
<li type="disc"><b>Sources of interannual variability in Sermilik Fjord, East Greenland</b>
<ol>
<li type="circle">Oceans Melting Greenland Science Team Meeting, La Jolla, California. (talk)
</ol>
<li type="disc"><b>Sources of interannual variability in Sermilik Fjord, East Greenland</b>
<ol>
<li type="circle">Ocean Sciences Meeting, Portland, Oregon. (poster)
</ol>
2017
<li type="disc"><b>Direct observations of fast ice dynamics and high strain rates at Helheim Glacier, East Greenland</b>
<ol>
<li type="circle">West Antarctic Ice Sheet Workshop, Coupeville, Washington. (poster)</li>
</ol>
<li type="disc"><b>Sources of interannual variability in Sermilik Fjord, East Greenland</b>
<ol>
<li type="circle">Forum for Research into Ice Shelf Processes (FRISP 2017), Bergen, Norway. (talk)
</ol>
<li type="disc"><b>Sources of interannual variability in Sermilik Fjord, East Greenland</b>
<ol>
<li type="circle">Observing and Understanding the Ocean beneath Antarctic Sea Ice and Ice Shelves, Bremerhaven, Germany. (talk)
</ol>
<li type="disc"><b>A model of icebergs and sea ice in a joint continuum framework</b>
<ol>
<li type="circle">General Assembly of the European Geosciences Union, Vienna, Austria. (talk)
</ol>
2016
<li type="disc"><b>Icebergs in sea ice framework: Ideas towards a numerical model of ice mélange</b>
<ol>
<li type="circle">Young Scientist Seminar, Potsdam Institute for Climate Impact Research, Potsdam, Germany. (invited)
</ol>
<li type="disc"><b>Icebergs in sea ice framework: Ideas towards a numerical model of ice mélange</b>
<ol>
<li type="circle">Symposium on Interactions of Ice Sheets and Glaciers with the Ocean, La Jolla, California. (talk)
</ol>
<li type="disc"><b>Icebergs in sea ice framework: Ideas towards a numerical model of ice mélange</b>
<ol>
<li type="circle">MISOMIP II meeting, NYU Abu Dhabi, UAE. (talk)
</ol>
2015
<li type="disc"><b>Calving signature in ocean waves: Helheim Glacier and Sermilik Fjord dynamics</b>
<ol>
<li type="circle">American Geophysical Union - Fall Meeting, San Francisco, California. (invited)</li>
</ol>
<li type="disc"><b>Calving signature in ocean waves: Helheim Glacier and Sermilik Fjord dynamics</b>
<ol>
<li type="circle">Ocean Campus Summer School, Escola Naval, Lisbon, Portugal. (poster)</li>
</ol>
</ol>
</div>
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