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56 % Headers and footers
57 \usepackage{lastpage} % for "Page N of M" footer
58 \usepackage{fancyhdr}
59 \pagestyle{fancy}
60 \rhead{\small A.\ Damsgaard, CV}
61 \lfoot{\small \emph{Updated: \today}}
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96 \begin{document}
97 \thispagestyle{firststyle}
98 \begin{center}
99 \noindent{\LARGE \bfseries \sffamily Anders Damsgaard}
100 \end{center}
101
102 \begin{center}
103 \begin{tabular}{rl}
104 \\
105 %{Phone:} & +45 42 74 31 42\\ % chktex 8
106 {Email:} & \url{anders@andersdamsgaard.dk}\\
107 {Web:} & \url{https://andersdamsgaard.dk}\\
108 %{Gopherspace:} & \url{gopher://andersdamsgaard.dk}\\
109 {ORCID:} & \url{https://orcid.org/0000-0002-9284-1709}\\
110 {Scopus:} & \url{https://www.scopus.com/authid/detail.uri?authorId=6602269102}\\
111 {Web of Science:} & \url{https://www.webofscience.com/wos/author/record/ABA-3996-2021}\\
112 \end{tabular}
113 \end{center}
114
115 %\section*{Short bio}
116 %I am a geoscientist with competences in geotechnics and computer science.
117 %I use field observations, numerical modeling, geophysics, programming,
118 %and data processing in order to understand Quaternary geology, sediment
119 %mechanics, and groundwater flow.
120 %\\
121
122 \section*{Professional experience}
123 \begin{itemize}[leftmargin=1in,topsep=0in,parsep=0.5em,labelwidth=0.9in,align=left]
124 %\begin{itemize}[leftmargin=1in,topsep=0in,parsep=0.5em]
125
126 \item[2025\textendash{}Present] \textbf{\large Geological Survey of Denmark and Greenland (GEUS)}\\
127 \emph{Senior Researcher in Quaternary Geology and 3D Modeling, Department of Near Surface Land and Marine Geology}
128 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
129 \item Quaternary processes and sedimentary environments
130 \item Geological and hydrostratigraphical 3D modeling
131 \item Ice-marginal sedimentation and glaciotectonics
132 \item Methods development in remote sensing and geospatial data
133 \end{itemize}
134
135 \item[2023\textendash{}2025] \textbf{\large Geo}\\
136 \emph{Senior Specialist, Geodata, Aarhus}
137 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
138 \item Geological 3D modeling using geological, geotechnical, and geophysical field surveys and databases
139 \item Software architecture and engineering: Microservice design, orchestration and monitoring
140 \item Key technologies: Linux, Pub/sub via MQTT, containerization, Go, Python, Grafana, PostgreSQL, TimescaleDB, Redis, InfluxDB
141 \item Automated processing of geophysical data (C, OpenMP, HPC Linux)
142 \item InSAR analysis
143 \end{itemize}
144
145 \item[2023\textendash{}2025] \textbf{\large Aarhus University}\\
146 \emph{External lecturer}\\
147 Department of Geoscience\\
148 B.Sc.\ course: Quaternary Geology (10 ECTS)
149
150 \item[2020\textendash{}2023] \textbf{\large Aarhus University}\\
151 \emph{Assistant Professor (tenure track) and Postdoc}\\
152 Department of Geoscience
153 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
154 \item High-performance computing (Linux, Nvidia CUDA)
155 \item System administration, data analysis, scientific reporting
156 \item Computational modeling of tunnel valley formation from sediment mechanics and groundwater flow
157 \item Modeling of water flow
158 \end{itemize}
159 Courses: Quaternary Geology (10 ECTS), Greenland Field Course (5 ECTS)
160
161 \item[2019\textendash{}2020] \textbf{\large Stanford University}\\
162 \emph{Independent Consultant}\\
163 Department of Geophysics
164 %Visiting researcher at Aarhus University, Department of Geoscience
165 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
166 \item Glacial sediment advection modeling
167 \item Development of continuum methods for multi-phase granular flows
168 \item High-performance computing (C, MPI/OpenMP, shell, UNIX)
169 \item Continuum and discrete modeling of ice-water-sediment systems
170 \end{itemize}
171 \emph{Supervisor:} Jenny Suckale
172
173 \item[2018\textendash{}2019] \textbf{\large Danish Environmental Protection Agency}\\
174 \emph{Academic Technician}\\
175 Ministry of Environment of Denmark
176 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
177 \item Automated quality control of geological, hydrological, and geochemical data
178 \item Management and development of geospatial databases using PostgreSQL/PostGIS
179 \item Development of Python plugins for QGIS
180 \end{itemize}
181
182 \item[2017\textendash{}2018] \textbf{\large Princeton University}\\
183 \emph{Postdoctoral Research Associate}\\
184 Program in Atmospheric and Oceanic Sciences\\
185 Andlinger Center for Energy and the Environment\\
186 Geophysical Fluid Dynamics Laboratory (GFDL)\\
187 National Oceanographic and Atmosphere Administration (NOAA)
188 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
189 \item Design of granular-mechanics methods for simulating sea-ice mechanics
190 \item Python, Julia, and Fortran HPC software development
191 \end{itemize}
192 \emph{Supervisors:} Alistair Adcroft and Olga Sergienko
193
194 \item[2016\textendash{}17] \textbf{\large Scripps Institution of Oceanography}\\
195 \emph{Green's Foundation Postdoctoral Scholar}\\
196 Institute of Geophysics and Planetary Physics\\
197 University of California, San Diego
198 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
199 \item Scientific software development
200 \item Modeling hydrology and mechanics under the West Antarctic Ice Sheet
201 \item Remote sensing data analysis
202 \item Rate and state friction in discrete-element models
203 \end{itemize}
204 \emph{Supervisor:} Helen A.\ Fricker
205
206 \item[2015] \textbf{\large Aarhus University}\\
207 \emph{Research assistant}\\
208 Department of Geoscience
209 \begin{itemize}[leftmargin=0.2in,topsep=0in,parsep=0in]
210 \item Markov-Chain Monte Carlo inversion of cosmogenic nuclide ages
211 \item Linux automation, job scheduling, frontend and backend development
212 \end{itemize}
213 \emph{Supervisor:} Mads F.\ Knudsen
214 \end{itemize}
215
216 \section*{Education}
217 \begin{itemize}[leftmargin=1in,topsep=0in,parsep=0.5em,labelwidth=0.9in,align=left]
218
219 \item[2013\textendash{}15] \textbf{Aarhus University: Ph.D.}\\
220 Department of Geoscience.
221 Courses in computer graphics and high-performance computing at Department of Computer Science.\\
222 Ph.D.\ thesis title: \emph{``Numerical modeling of subglacial sediment
223 deformation''}\\
224 Ph.D.\ project of the year within the Faculty and Science and Technology 2015.\\
225 \emph{Supervisors:} David L.\ Egholm and Jan A.\ Piotrowski.\\
226 Thesis download: \url{https://andersdamsgaard.dk/pub/ad-phd-thesis.pdf}
227
228 \item[2010\textendash{}13] \textbf{Aarhus University: M.Sc.}, Department of Geoscience.
229
230 \item[2006\textendash{}10] \textbf{Aarhus University: B.Sc.}, Department of Geoscience.
231
232 \end{itemize}
233
234
235 \section*{Awards, grants, and scholarships}
236 %\begin{itemize}[leftmargin=0.5in,topsep=0in,parsep=0.5em]
237 \begin{itemize}[leftmargin=0.75in,topsep=0in,parsep=0.5em,labelwidth=0.65in,align=left]
238
239 \item[2022\textendash{}2025] Bundesgesellschaft f\"ur Endlagerung, Germany:\\
240 \emph{``Dynamical modelling of subglacial meltwater erosion during past and future glaciations''}.\\
241 A.\ Damsgaard, J.\ A.\ Piotrowski (AU), J.\ Winsemann (Leibniz University Hannover, LUH).\\
242 Funding for one two-year postdoc at AU, and one two-year postdoc at LUH.
243 EUR 547.835.
244
245 \item[2020] European Union/European Commission, Horizon 2020:\\
246 Marie Sk\l{}odowska-Curie Actions Individual Fellowship\\
247 H2020-MSCA-IF-2019, 24 months, EUR 207,000.\\
248 Project: \emph{NEMOSID: NExt-generation MOdeling of Sedimentary Ice-sheet Dynamics}
249
250 \item[2016] Aarhus University Research Foundation:\\
251 Award for outstanding Ph.D.\ research in Science and Technology.
252
253 \item[2016] XSEDE Startup Allocation, Principal Investigator: “Grain and
254 fluid dynamics: Governors of glacier flow and earthquake initiation”,
255 48,000 CPU hours on GPU clusters Stampede, Comet and Bridges.
256
257 \item[2016] NVIDIA Corporation, hardware grant (Tesla K40).
258
259 \item[2016] Community Surface Dynamics Modeling System (CSDMS) Student
260 Modeler Award 2016, University of Colorado Boulder, USA, for innovative
261 model development in the field of earth-surface dynamics.
262
263 \item[2015] Cecil H. and Ida M. Green Foundation for Earth Sciences
264 scholarship,\\
265 50\% of salary for two years.
266
267 \end{itemize}
268
269 \section*{Publications (h-index 10)}
270 \begin{etaremune}[leftmargin=0in,topsep=0in,parsep=0in]
271
272 \item Pedersen, L.\ L., K.\ Svennevig, C.\ Morino, A.\ S.\ Søndergaard, C.\ Pearce, L.\ F.\ Pérez, \textbf{A.\ Damsgaard}, J.\ Olsen, M.\ F.\ Knudsen, A.\ Noblet, N.\ K.\ Larsen,
273 ``A giant Early Holocene tsunamigenic rock-ice avalanche in South Greenland preconditioned by glacial thinning''.
274 \emph{Geomorphology}, vol 492.
275 \url{https://doi.org/10.1016/j.geomorph.2025.110057}. ISI WoS article.
276
277 \item Svendsen, M.\ W., S.\ M.\ Kristiansen, V.\ K.\ Pedersen and \textbf{A.\ Damsgaard} 2024
278 “Mit livs dessert: 100-års jubilæet for Ellen Louise Mertz' studie af niveauforandringer i Danmark”
279 (en: “The dessert of my life: the 100-year anniversary of Ellen Louise Mertz' studies of elevation changes in Denmark”).
280 \emph{Geologisk Tidsskrift}.
281 \url{https://2dgf.dk/publikationer/geologisk-tidsskrift/geologisk-tidsskrift-2024/#7}
282
283 \item Andersen, J.\ D., L.\ B\o{}dker, J.\ Dolby, \textbf{A.\ Damsgaard}, and N.\ Okkels 2024
284 “Foundation on organic diatomite”.
285 \emph{Proceedings of the 19th Nordic Geotechnical Meeting}.
286 %\url{https://doi.org/10.1029/2021JF006460}
287
288 \item Kasmalkar, I., \textbf{A.\ Damsgaard}, L.\ Goren, and J.\ Suckale 2022
289 ``Shear variation at the ice-till interface changes the
290 spatial distribution of till porosity and meltwater drainage''.
291 \emph{Journal of Geophysical Research: Earth Surface}.
292 \url{https://doi.org/10.1029/2021JF006460}. ISI WoS article.
293
294 \item \textbf{Damsgaard, A.}, O.\ Sergienko, and A.\ Adcroft 2021
295 ``The effects of ice floe-floe interactions on pressure ridging in sea ice''.
296 \emph{Journal of Advances in Modeling Earth Systems}, vol.\ 13.
297 \url{https://doi.org/10.1029/2020MS002336}. ISI WoS article.
298
299 \item \textbf{Damsgaard, A.}, L.\ Goren, and J.\ Suckale 2020
300 ``Water pressure fluctuations control variability in sediment
301 flux and slip dynamics beneath glaciers and ice streams''.
302 \emph{Communications Earth \& Environment}, vol.\ 1(66).
303 \url{https://doi.org/10.1038/s43247-020-00074-7}. ISI WoS article.
304
305 \item \textbf{Damsgaard, A.}, A.\ Adcroft, and O.\ Sergienko 2018
306 ``Application of discrete-element methods to approximate sea-ice
307 dynamics''.
308 \emph{Journal of Advances in Modeling Earth Systems}, vol.\ 10,
309 2228\textendash{}2244.
310 \url{https://doi.org/10.1029/2018MS001299}. ISI WoS article.
311
312 \item Bateman, M.\ D., D.\ A.\ Swift, J.\ A.\ Piotrowski, E.\ J.\ Rhodes,
313 \textbf{Damsgaard, A.} 2018
314 ``Can glacial shearing of sediment reset the signal used for
315 luminescence dating?''.
316 \emph{Geomorphology}, vol.\ 306, 90\textendash{}101.
317 \url{https://doi.org/10.1016/j.geomorph.2018.01.017}. ISI WoS article.
318
319 \item \textbf{Damsgaard, A.}, J.\ Suckale, J.\ A.\ Piotrowski, M.\
320 Houssais, M.\ R.\ Siegfried, and H.\ A.\ Fricker 2017
321 ``Sediment behavior controls equilibrium width of subglacial
322 channels''.
323 \emph{Journal of Glaciology}, vol.\ 63, 1034\textendash{}1048.
324 \url{https://doi.org/10.1017/jog.2017.71}. ISI WoS article.
325
326 \item \textbf{Damsgaard, A.}, A.\ Cabrales-Vargas, J.\ Suckale, and L.\ Goren
327 2017
328 ``The coupled dynamics of meltwater percolation and granular
329 deformation in the sediment layer underlying parts of the big ice
330 sheets''.
331 \emph{Poromechanics VI}.
332 \url{https://doi.org/10.1061/9780784480779.024}. ISI WoS proceedings.
333
334 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, L.\ H.\ Beem, N.\ K.\ Larsen,
335 S.\ Tulaczyk, J.\ A.\ Piotrowski, and M.\ R.\ Siegfried 2016
336 ``Ice flow dynamics forced by water pressure variations in subglacial
337 granular beds''.
338 \emph{Geophysical Research Letters}, vol.\ 43, \num{12165}–\num{12173}.
339 \url{https://doi.org/10.1002/2016GL071579}. ISI WoS article.
340
341 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, S.\
342 Tulaczyk, N.\ K.\ Larsen, and C.\ F.\ Br\ae{}dstrup
343 2015
344 ``A new methodology to simulate subglacial deformation of
345 water-saturated granular material''.
346 \emph{The Cryosphere},
347 vol.\ 9, 2183\textendash{}2200.\\
348 \url{https://doi.org/10.5194/tc-9-2183-2015}. ISI WoS article. % chktex 8
349
350 \item Br\ae{}dstrup, C.\ F., \textbf{A.\ Damsgaard}, and D.\ L.\ Egholm
351 2014
352 ``Ice-sheet modelling accelerated by graphics cards''.
353 \emph{Computers \& Geosciences},
354 vol.\ 72, 210\textendash{}220.\\
355 \url{https://doi.org/10.1016/j.cageo.2014.07.019}. ISI WoS article.
356
357 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, S.\
358 Tulaczyk, N.\ K.\ Larsen, and K.\ Tylmann
359 2013
360 ``Discrete element modeling of subglacial sediment deformation''.
361 \emph{Journal of Geophysical Research:\ Earth Surface},
362 vol.\ 118, 2230\textendash{}2242.
363 \url{https://doi.org/10.1002/2013JF002830}. ISI WoS article.
364
365 \end{etaremune}
366
367
368 \section*{Presentations}
369
370 \subsection*{Invited talks}
371 \begin{etaremune}[leftmargin=0in,topsep=0in,parsep=0in]
372
373 \item \textbf{Damsgaard, A.}, D.\ Hansen, and L.\ Zoet
374 ``Subglacial landforms from variations in modeled sediment flux''.
375 Geological Society of America Annual Meeting 2022, Session EP015 - Landscape evolution beneath and beyond the ice, Chicago, IL, USA.
376
377 \item \textbf{Damsgaard, A.}
378 ``Coupled modeling of ice, subglacial sediment, and glacier hydrology''.
379 8th European Seminar on Computing (ESCO) June 2022, Pilsen, Czech Republic.
380
381 \item \textbf{Damsgaard, A.}
382 ``Sediment transport in an ice flow model: Implications for marine-terminating ice sheets''.
383 European Congress on Computational Methods in Applied Sciences and Engineering (ECCOMAS), June 2022, Oslo, Norway.
384
385 \item \textbf{Damsgaard, A.}
386 ``Glacial reshaping of the Earth Surface: From geological observations to modeling''.
387 University of Oxford Mathematical Geosciences seminar, 2022-03-11
388
389 \item \textbf{Damsgaard, A.}
390 ``Interactions between ice and till: From geological observations to modeling”
391 ETH Z\"urich, VAW Glaciology seminar, 2022-03-03
392
393 \item \textbf{Damsgaard, A.}, J.\ A.\ Piotrowski, I.\ Madden,
394 J.\ Suckale, and K.\ K.\ S\o{}rensen
395 ``Approaches to modeling subglacial till deformation''.
396 Maths on Ice seminar, 2022-01-10
397
398 \item \textbf{Damsgaard, A.}, O.\ Sergienko, and A.\ Adcroft
399 ``Sea-ice ridging in discrete element models''.
400 European Congress on Computational Methods in Applied Sciences and Engineering (ECCOMAS), June 2021, Valencia, Spain.
401
402 \item \textbf{Damsgaard, A.}, J.\ Suckale, and L.\ Goren
403 ``The role of granular mechanics and porous flow for ice
404 sheet behavior in a changing climate''.
405 7th European Seminar on Computing (ESCO) 2020, Pilsen, Czech Republic.
406
407 \item \textbf{Damsgaard, A.}, J.\ Suckale, J.\ A.\ Piotrowski, M.\
408 Houssais, M.\ R.\ Siegfried, and H.\ A.\ Fricker
409 ``Subglacial channelized drainage on soft beds and implications for
410 grounding-line dynamics''.
411 Geological Society of America Annual Meeting 2017, Seattle, WA, USA.\@
412
413 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ Suckale, J.\ A.\
414 Piotrowski, M.\ Houssais, M.\ R.\ Siegfried, and H.\ A.\ Fricker
415 ``Grain-scale numerical modeling of granular mechanics and fluid
416 dynamics''.
417 Week's lecturer at University of Wisconsin Madison, Department of
418 Geoscience, November 2017.
419
420 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, S.\ Tulaczyk, J.\ A.\
421 Piotrowski, N.\ K.\ Larsen, M.\ R.\ Siegfried, L.\ H.\ Beem, and J.\
422 Suckale
423 ``Subglacial sediment mechanics investigated by computer simulation of
424 granular material''.
425 American Geophysical Union Fall Meeting 2016, San Francisco, CA, USA.\@
426
427 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, S.\ Tulaczyk, N.\ K.\ Larsen,
428 J.\ A.\ Piotrowski, M.\ R.\ Siegfried, L.\ H.\ Beem, J.\ Suckale, and
429 L.\ Goren
430 ``Grain-scale numerical modeling of granular mechanics and fluid
431 dynamics''.
432 Stanford University, Department of Geoscience, July 2016.
433
434 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, L.\ H.\ Beem, S.\ Tulaczyk, N.\
435 K.\ Larsen, J.\ A.\ Piotrowski, and M.\ R.\ Siegfried
436 ``Grain-scale numerical modeling of granular mechanics and fluid
437 dynamics and application in a glacial context''. Keynote speaker at
438 Community Surface Dynamics Modeling System (CSDMS) Annual Meeting,
439 March 2016, Boulder, CO, USA.\@
440
441 \end{etaremune}
442
443 \subsection*{Oral presentations}
444 \begin{etaremune}[leftmargin=0in,topsep=0in,parsep=0in]
445
446 \item F\"alber, R., G.\ Jungdal-Olesen, V.\ K.\ Pedersen, \textbf{A.\ Damsgaard}, J.\ A.\ Piotrowski, C.\ Brandes, and J.\ Winsemann
447 ``Construction of hydrostratigraphic subsurface models of the Northwest German Basin: input for numerical simulation of subglacial erosion during past and future glaciations''.
448 European Geosciences Union, General Assembly 2025, Vienna, Austria,
449 EGU25\textendash{}1788.
450
451 \item Jung, S., M.\ A.\ Weder, \textbf{A.\ Damsgaard}, and D.\ Farinotti
452 ``A parameterization for the closure rate of canals incised in subglacial till''.
453 European Geosciences Union, General Assembly 2024, Vienna, Austria,
454 EGU24\textendash{}2035.
455
456 \item Jundgal-Olesen, G., J.\ A.\ Piotrowski, V.\ K.\ Pedersen, \textbf{A.\ Damsgaard}, R.\ F\"alber, and J.\ Winsemann
457 ``Modelling tunnel valley erosion in northern Germany for the first ice-sheet advance (Elsterian, MIS 12)---a conceptual model and preliminary results''.
458 DEUQUA, Austria, Salzburg, 2024.
459
460 \item Piotrowski, J.\ A., P.\ Hermanowski, G.\ Jungdal-Olesen, V.\ K.\ Pedersen, \textbf{A.\ Damsgaard}, R.\ F\"alber, and J.\ Winsemann
461 ``Response of till to subglacial shear stress simulated in ring-shear experiments derived from X-ray computed microtomography''.
462 DEUQUA, Austria, Salzburg, 2024.
463
464 \item I.\ Madden, \textbf{A.\ Damsgaard}, D.\ Hansen, L.\ Zoet, J.\ Suckale
465 ``Predicting maximal shear-layer thicknesses in subglacial till with adapted friction laws''.
466 American Geophysical Union Fall Meeting 2023, EP24B-08, USA.\@
467
468 \item \textbf{Damsgaard, A.}, D.\ Hansen, and L.\ Zoet
469 ``Subglacial landforms from variations in modeled sediment flux''.
470 American Geophysical Union Fall Meeting 2022, EP33C-02, USA.\@
471
472 \item \textbf{Damsgaard, A.}, J.\ A.\ Piotrowski, I.\ Madden, J.\ Suckale, K.\ K.\ S\o{}rensen
473 ``Process-based modeling of glacial till advection''.
474 American Geophysical Union Fall Meeting 2021, New Orleans, LA, USA.\@
475
476 \item \textbf{Damsgaard, A.}, O.\ Sergienko, and A.\ Adcroft
477 ``Floe-scale ridging in discrete element models for sea ice''.
478 Workshop: Modeling the Granular Nature of Sea Ice, 2021, Online, WA, USA.\@
479
480 \item Suckale, J., I.\ Kasmalkar, \textbf{A.\ Damsgaard}, E.\ Mantelli, A.\
481 Cabrales-Vargas, D.\ Li, L.\ Goren, and C.\ Elsworth
482 ``Progress on understanding the subglacial hydrology over till beds with
483 ramifications for ice dynamics and sediment transport''.
484 International Glaciological Society Meeting on Glacial Erosion and
485 Sedimentation 2019, Madison, WI, USA.\@
486
487 \item Piotrowski, J.\ A., M.\ B.\ Holdensen, \textbf{A.\ Damsgaard},
488 W.\ Narloch, S.\ Carr, and N.\ K.\ Larsen
489 ``The ice/bed interface in past ice sheets constrained by field,
490 experimental and numerical studies''.
491 International Glaciological Society Meeting on Glacial Erosion and
492 Sedimentation 2019, Madison, WI, USA.\@
493
494 \item \textbf{Damsgaard, A.}, J.\ Suckale (presenting author), and L.\ Goren
495 ``A new continuum model for till consistent with granular
496 mechanics''.
497 American Geophysical Union Fall Meeting 2019, San Francisco, CA,
498 USA.\@
499
500 \item I.\ Kasmalkar, \textbf{Damsgaard, A.}, L.\ Goren, J.\ Suckale,
501 and A.\ Cabrales-Vargas
502 ``Subglacial sediment beds resist fast ice flow by facilitating
503 meltwater drainage''.
504 American Geophysical Union Fall Meeting 2019, San Francisco, CA, USA.\@
505
506 \item \textbf{Damsgaard, A.}, J.\ Suckale, D.\ Li, I.\ Kasmalkar, J.\
507 Amundson, L.\ Goren, A.\ Cabrales-Vargas
508 ``A new continuum model for subglacial till based on granular
509 rheology''.
510 International Glaciological Society Meeting on Glacial Erosion and
511 Sedimentation 2019, Madison, WI, USA.\@
512
513 \item \textbf{Damsgaard, A.}, O.\ Sergienko, and A.\ Adcroft
514 ``Lagrangian methods for modeling compressive failure in sea ice across
515 scales''.
516 American Geophysical Union Fall Meeting 2018, Washington, D.C., USA.\@
517
518 \item Suckale, J., C.\ Wheeler Elsworth, I.\ Kasmalkar, E.\ Mantelli,
519 \textbf{A.\ Damsgaard}, J.\ D.\ Platt, T.\ Perol, J.\ R.\ Rice, and L.\
520 Goren
521 ``The surface as a window into the subsurface: Lessons from
522 Antarctica''.
523 American Geophysical Union Fall Meeting 2018, Washington, D.C., USA.\@
524
525 \item Suckale, J., C.\ Wheeler Elsworth, E.\ Mantelli, I.\ Kasmalkar,
526 \textbf{A.\ Damsgaard}, J.\ D.\ Platt, T.\ Perol, J.\ R.\ Rice, and L.\
527 Goren
528 ``Process-based models for ice-stream shear margins''.
529 American Geophysical Union Fall Meeting 2018, Washington, D.C., USA.\@
530
531 \item Piotrowski, J.\ A., M.\ B.\ Holdensen, W.\ Narloch, S.\ Carr, and
532 \textbf{A.\ Damsgaard}
533 ``Laboratory experiments on till deformation: constraining the
534 subglacial processes''.
535 CANQUA/AMQUA, Ottawa, Canada.
536
537 \item Piotrowski, J.\ A.\, M.\ B.\ Holdensen, W.\ Narloch, S.\ Carr,
538 \textbf{A.\ Damsgaard}, N.\ K.\ Larsen
539 ``Subglacial till deformation constrained by laboratory experiments''.
540 European Geosciences Union, General Assembly 2018, Vienna, Austria,
541 EGU2018\textendash{}8662.
542
543 \item Piotrowski, J.\ A.\, M.\ Bering Holdensen, W.\ Narloch, \textbf{A.\
544 Damsgaard}, N.\ K.\ Larsen
545 ``Subglacial till deformation: Lessons from laboratory experiments''.
546 Nordic Geological Winter Meeting 2018, Copenhagen, Denmark.
547
548 \item \textbf{Damsgaard, A.}, A.\ Adcroft, O.\ Sergienko, and A.\ Stern
549 ``Discrete-element simulation of sea-ice mechanics: Contact mechanics
550 and granular jamming''.
551 American Geophysical Union Fall Meeting 2017, New Orleans, LA, USA.\@
552
553 \item Kasmalkar, I., \textbf{A.\ Damsgaard}, A.\ Cabrales-Vargas, J.\
554 Suckale, and L.\ Goren
555 ``Grain-scale investigation of grain and melt-water interaction and
556 implications for the dynamics of ice flow over soft sediments''.
557 6th Biot Conference on Poromechanics 2017, Paris, France.
558
559 \item Suckale, J., C.\ W.\ Elsworth, \textbf{A.\ Damsgaard}, L.\ Goren, A.\
560 Cabrales, D.\ Li, I.\ Kasmalkar, and S.\ Maldonado
561 ``Taking advantage of the predictive potential of process-based models
562 for ice exploration''.
563 American Geophysical Union Fall Meeting 2016, San Francisco, CA, USA.\@
564
565 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, L.\ H.\ Beem, S.\ Tulaczyk, N.\
566 K.\ Larsen, J.\ A.\ Piotrowski, and M.\ R.\ Siegfried
567 ``Creep and stick-slip in subglacial granular beds forced by variations
568 in water pressure''.
569 West Antarctic Ice Sheet Workshop 2016, VA, USA.\@
570
571 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, L.\ H.\ Beem, S.\ Tulaczyk, N.\
572 K.\ Larsen, J.\ A.\ Piotrowski, and M.\ R.\ Siegfried
573 ``Creep and stick-slip in subglacial granular beds forced by ocean
574 tides''.
575 International Glaciological Society, International Symposium on
576 Interactions of Ice Sheets and Glaciers with the Ocean, 2016,
577 La Jolla, CA, USA.\@
578
579 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, S.\
580 Tulaczyk, and N.\ K.\ Larsen
581 ``Oscillations in till strength due to particle-fluid feedbacks''.
582 International Union for Quaternary Research Congress, 2015,
583 Nagoya, Japan.
584
585 \item Piotrowski, J.\ A., K.\ Tylmann, W.\ Narloch, W.\ Wysota,
586 \textbf{A.\ Damsgaard}, D.\ L.\ Egholm, N.\ K.\ Larsen, and J.\
587 Lesemann.
588 ``A soft-bed system under the Scandinavian Ice Sheet: Mosaic of stable
589 and deforming spots''.
590 Abstract from 31st Nordic Geological Winter Meeting 2014, Lund, Sweden.
591
592 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, S.\
593 Tulaczyk, and N.\ K.\ Larsen
594 ``Discrete element modeling of subglacial sediment deformation''.
595 American Geophysical Union Fall Meeting 2013, San Francisco, CA,
596 USA.\@
597
598 \item Br\ae{}dstrup, C.\ F., D.\ L.\ Egholm, S.\ V.\ Ugelvig, \textbf{A.\
599 Damsgaard}, and J.\ L.\ Andersen
600 ``Feedbacks between subglacial dynamics and long-term glacial landscape
601 evolution''.
602 American Geophysical Union Fall Meeting 2013, San Francisco, CA, USA.\@
603
604 \item Piotrowski, J.\ A., K.\ Tylmann, W.\ Narloch, W.\ Wysota, \textbf{A.\
605 Damsgaard}, D.\ L.\ Egholm, N.\ K.\ Larsen, and J.\ Lesemann
606 ``Subglacial mosaic of stable and deforming spots under the Scandinavian
607 Ice Sheet: field, laboratory and numerical data''.
608 Canadian Quaternary Association biannual meeting, August 2013,
609 Edmonton, Canada.
610
611 \end{etaremune}
612
613 \subsection*{Poster presentations}
614 \begin{etaremune}[leftmargin=0in,topsep=0in,parsep=0in]
615
616 \item Kasmalkar, I., \textbf{A.\ Damsgaard}, L.\ Goren, J.\ Suckale, and
617 A.\ Cabrales-Vargas
618 ``Subglacial Channelization Through Till Deformation and Failure at the
619 Shear Margin''.
620 American Geophysical Union Fall Meeting 2018, Washington, D.C., USA.\@
621
622 \item Li, D., J.\ Suckale, A.\ Cabrales, and \textbf{A.\ Damsgaard}
623 ``Till dynamics underneath ice streams with a nonlocal dense granular
624 flow model''.
625 American Geophysical Union Fall Meeting 2016, San Francisco, CA, USA.\@
626
627 \item Cabrales-Vargas, A., J.\ Suckale, \textbf{A.\ Damsgaard}, and L.\
628 Goren
629 ``Spatially variable till deformation and water transport in ice-stream
630 shear margins from numerical simulations''.
631 American Geophysical Union Fall Meeting 2016, San Francisco, CA, USA.\@
632
633 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, S.\
634 Tulaczyk, N.\ K.\ Larsen, and C.\ F.\ Br\ae{}dstrup
635 ``Numerical modeling of particle-fluid mixtures in a subglacial
636 setting''.
637 American Geophysical Union Fall Meeting 2014, San Francisco,
638 CA, USA.\@
639
640 \item \textbf{Damsgaard, A.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, S.\
641 Tulaczyk, and N.\ K.\ Larsen
642 ``Numerical modelling of granular subglacial deformation using the
643 discrete element method''.
644 European Geosciences Union, General Assembly 2013, Vienna, Austria,
645 EGU2013\textendash{}4026.
646
647 \item \textbf{Christensen, A.\ D.}, D.\ L.\ Egholm, J.\ A.\ Piotrowski, and
648 S.\ Tulaczyk
649 ``Discrete element modelling of subglacial sediment deformation''.
650 European Geosciences Union, General Assembly 2012, Vienna, Austria,
651 EGU2012\textendash{}2931.
652
653 \item Clausen, O.\ R., D.\ L.\ Egholm, R.\ Wesenberg, and \textbf{A.\ D.\
654 Christensen} (presenting author)
655 ``Salt movements and faulting of the overburden \textemdash{} can numerical
656 modeling predict the fault patterns above salt structures''.
657 European Geosciences Union, General Assembly 2012, Vienna, Austria,
658 EGU2012\textendash{}1615.
659
660 \item \textbf{Christensen, A.\ D.}, D.\ L.\ Egholm, and J.\ A.\ Piotrowski
661 ``Numerical modelling of sediment deformation by glacial stress''.
662 International Union for Quaternary Research Congress 2011,
663 Bern, Switzerland.
664
665 \item \textbf{Christensen, A.\ D.}, D.\ L.\ Egholm, and J.\ A.\ Piotrowski
666 ``Numerical modelling of subglacial sediment deformation''.
667 European Geosciences Union, General Assembly 2011, Vienna, Austria,
668 EGU2011\textendash{}7829.
669
670 \end{etaremune}
671
672 \section*{Professional affiliations}
673 \begin{itemize}[leftmargin=0in,topsep=0in,parsep=0in]
674 \item Member, Danish Geotechnical Society (2022\textendash{}present)
675 \item Board Member, Geological Society of Denmark (2021\textendash{}2023)
676 \item Member, Geological Society of Denmark (2023\textendash{}present)
677 \item Member, American Geophysical Union (2013\textendash{}present)
678 \item Member, Geological Society of America (2017\textendash{}present)
679 \item Member, International Glaciological Society (2015\textendash{}present)
680 \item Member, European Geosciences Union (2011\textendash{}present)
681 \item Member, CICE Consortium (2017\textendash{}2019)
682 \end{itemize}
683
684 \section*{Select activities in programming and high-performance computing}
685 For a full list of public projects, please see my Git repository at \url{https://src.andersdamsgaard.dk}.\\
686
687 \begin{itemize}[leftmargin=0in,topsep=0in,parsep=0in]
688
689 \item Proficient programmer in C, C\texttt{++}, OpenMP, MPI, Python, CUDA
690 C, MAT\-LAB, Julia, HTML, CSS, Javascript, Go,
691 PostgreSQL, sh/sed/awk, \LaTeX{}, and Linux/Unix operating
692 system environments.
693
694 \item Creator of \textbf{sphere}, a three-dimensional discrete element
695 method algorithm with optional fluid coupling. Written in CUDA C, C++,
696 and Python for GPU-based simulation of grain and fluid dynamics.
697 Uses Doxygen software reference documentation and unit testing.
698 Free and open-source licensed.
699 \url{https://src.andersdamsgaard.dk/sphere}
700
701 \item Creator of \textbf{Granular.jl}, a two-dimensional discrete element
702 method algorithm for sea-ice simulation with coupling to NOAA ocean and
703 atmosphere models. Written in Julia.
704 Uses Travis-CI automated testing and is fully documented at
705 \url{https://anders-dc.github.io/Granular.jl/latest/}.
706 Free and open-source licensed.
707 \url{https://src.andersdamsgaard.dk/Granular.jl}
708
709 \item Creator of \textbf{cosmo.au.dk}, a webpage for inversion of
710 cosmogenic nuclide concentrations. Consists of a responsive front end
711 using HTML and Angular and JQuery Javascript libraries, backed by PHP
712 for queuing and MATLAB for numerical inversion. The service is running
713 on a Ubuntu GNU/Linux virtual machine.
714 \url{https://cosmo.au.dk}
715
716 \item Creator of \textbf{lbm-d3q19}, a three-dimensional lattice-Boltzmann
717 solver for incompressible Navier-Stokes fluid flow. Written in C with
718 OpenMP parallelization.
719 Free and open-source licensed.
720 \url{https://src.andersdamsgaard.dk/lbm-d3q19}
721
722 \item Designed, constructed, and maintained a Dell/NVIDIA 192 CPU-core GPU
723 cluster, Aarhus University. Debian GNU/Linux and Torque/MAUI
724 resource management and sche\-du\-ling.
725
726 \item Technical reviewer for ``Getting Started with Tmux'', Packt
727 Publishing 2014. Tmux is a software application for terminal
728 multiplexing, useful for dealing with multiple programs from a
729 command-line interface.
730
731 \item Contributor to \textbf{Icepack} and \textbf{CICE}, numerical codes
732 for sea-ice column physics and dynamics.
733 Written in Fortran.
734 \url{https://github.com/CICE-Consortium}
735
736 Craig, T., E.\ Hunke, A.\ DuVivier, A.\ Dabail, \textbf{A.\ Damsgaard},
737 J.\ F.\ Lemieux, P.\ Blain, M.\ Turner, Mhrib, T.\ Rasmussen, N.\
738 Jeffery
739 ``CICE-Consortium: CICE version 6.0.0, Icepack version 1.1.0''.
740 \url{https://doi.org/10.5281/zenodo.1900639}
741
742 \item Creator or the \textbf{scholarref} toolset for automated
743 \LaTeX{} reference management. Written in POSIX shell.
744 Free and open-source licensed.
745 \url{https://andersdamsgaard.dk/scholarref.html}
746
747 \item Developer of QGIS plugins and experienced GeoScene3D user.
748
749 \end{itemize}
750
751 \section*{Service to the field}
752 \noindent Reviewer for the following agencies and academic journals:
753 \begin{itemize}[leftmargin=1em,topsep=0.5em,parsep=0in]
754 \item National Science Foundation
755 \item Nature Geoscience
756 \item Communications Earth \& Environment
757 \item Journal of Glaciology
758 \item Quaternary Science Reviews
759 \item The Cryosphere
760 \item Journal of Geophysical Research
761 \item Ocean Modelling
762 \item Boreas
763 \item Earth Surface Processes and Landforms
764 \item Journal of Advances Modeling Earth Systems
765 \item E\&G Quaternary Science Journal
766 \end{itemize}
767
768 \section*{Teaching}
769
770 \begin{itemize}[leftmargin=0in,topsep=0in,parsep=0in]
771
772 \item Lecturer, The Geology of Denmark. 5 ECTS, mandatory B.Sc.\ course.
773 Lectures, hands-on exercises, field excursions.
774 Aarhus University, spring semester 2020 and 2021.
775
776 \item Lecturer, Equinor Field Course on Glacial Geology.
777 Geo and GEUS, 2023\textendash{}2024.
778
779 \item Lecturer, Quaternary Geology, 10 ECTS, mandatory B.Sc.\ course.
780 Lectures, laboratory exercises, field excursion.
781 Aarhus University, 2020\textendash{}2025.
782
783 \item Advanced Water Cycle Management Ph.D. Course, Aarhus University. Lecture on
784 “The geological settings in Denmark and their impact on the groundwater system”,
785 August 2021 and 2022.
786
787 \item Completed the Aarhus University Teacher Training Program on pedagogy
788 and learning design, providing a theoretical and practical basis for
789 delivering excellence in university teaching. Spring 2021.
790
791 \item Lecturer, workshop on granular modeling using the discrete element
792 method. University of Wisconsin-Madison, Department of Geoscience,
793 November 2017.
794
795 \item Guest teacher in SIO 209 “Palaeoclimate seminar”, Scripps
796 Institution of Oceanography. Gave class on subglacial friction and ice
797 sheet stability. April 2016.
798
799 \item Guest teacher in SIO 115 “Ice in the Climate System”, Scripps
800 Institution of Oceanography. Gave class on glacier dynamics and
801 subglacial mechanics and hydrology. March 2016.
802
803 \end{itemize}
804
805 \section*{Supervision}
806
807 \begin{itemize}[leftmargin=0in,topsep=0in,parsep=0in]
808
809 \item 2023: 7 B.Sc.\ students, Department of Geoscience, Aarhus University:
810 Adam Petterson,
811 Ahadi Ruganiza,
812 Anders Sørensen,
813 Frederick Hornung,
814 Gitte Bertelsen,
815 Lærke Ditlevsen,
816 Lisbeth Pedersen.
817
818 \item 2022:
819 Morten Jessen: M.Sc.\ student, Department of Geoscience,
820 Aarhus University.
821
822 \item 2022:
823 Franch Elbeck: B.Sc.\ student, Department of Geoscience,
824 Aarhus University.
825
826 \item 2021:
827 Asger A.\ Larsen: M.Sc.\ student, Department of Geoscience,
828 Aarhus University.
829
830 \item 2021:
831 Prayati Sharma: Erasmus Intern, Department of Geoscience,
832 Aarhus University.
833
834 \item 2021:
835 Louise Lassen: B.Sc.\ student, Department of Geoscience,
836 Aarhus University.
837
838 \item 2021-24:
839 Marie Winther: B.Sc.\ and M.Sc.\ student, Department of Geoscience,
840 Aarhus University.
841
842 \item 2020\textendash{}2021:
843 Ian Madden: Graduate student, Institute for Computational
844 \& Mathematical Engineering, Stanford University.
845
846 \item 2017\textendash{}2021:
847 Indraneel Kasmalkar: Graduate student, Department of
848 Geophysics, Stanford University.
849
850 \item 2018:
851 MonTre D.\ Hudson: Summer intern, Program in Atmospheric
852 and Oceanic Sciences, Princeton University.
853
854 \end{itemize}
855
856 \section*{Outreach}
857 \begin{itemize}[leftmargin=0in,topsep=0in,parsep=0in]
858
859 \item TV2 Go'Morgen Danmark, Danish national TV.
860 Segment on quicksand physics and risk in Denmark.
861 December 2023. \url{https://play.tv2.dk/afspil/edfda123-6db6-46bb-b21b-c996fc1e6093}
862
863 \item First grade in Lystrup Skole elementary school, Lystrup, Denmark.
864 Presentation on Greenland, fieldwork, and climate.
865 May 2022.
866
867 \item Forskningens døgn (The Festival of Research about Time), Aarhus University.
868 “Tidens tand på Jordens overflade” (The toll of time on the Earth surface).
869 Designed and staffed booth on Earth-surface processes and glaciations.
870 April 2022.
871
872 \item Aarhus University U-Days 2021 and 2022, one hour lecture
873 “Fremtiden for jordens iskapper: Findes svaret i geologien eller supercomputeren?”
874 on glaciology and climate change.
875 February 2022.
876
877 \item Geoscience internship days 2021, presentation and field
878 trip with highschool students.
879 November 2021.
880
881 \item DR1 Viden (Danish Broadcasting Corporation, science section
882 of public service radio and television broadcasting company)
883 article on quicksand in Denmark.
884 “Det bugner med kviksand i Danmark: Sådan kommer du op af de skjulte fælder”.
885 October 2021. \url{https://www.dr.dk/nyheder/viden/natur/det-bugner-med-kviksand-i-danmark-saadan-kommer-du-op-af-de-skjulte-faelder}
886
887 \item Branbjerg H\o{}jskole, two hour lecture
888 “Fra Is til Os” on glaciology and geomorphology in Denmark.
889 Salary donated to charity
890 \emph{Branbjerg H\o{}jskole elevst\o{}tteforening}.
891 October 2020.
892
893 \item Podcast interview (1 hour) “The Changelog” about climate
894 science and my research in glaciology. January 2020.
895 \url{https://changelog.com/podcast/378}
896
897 \item Article (two full pages) in danish newspaper “Nordjyske
898 Stifttidende” about my research on climate change and sediment
899 mechanics. September 2015.
900
901 \item Presentations about climate change and glaciology to high-school
902 teachers. Department of Geoscience, Aarhus University. October 2013.
903
904 \item Arranged introductory talks about the research activities of faculty
905 members. Aarhus University, 2012\textendash{}2013.
906
907 \item ``The Rolling University'' (Danish: ``Det Rullende Universitet''):
908 Held a series of lectures at local high schools about climate change.
909 Fall 2011.
910
911 \item ``Nature in the tent'' (Danish: ``Natur i teltet''): Public outreach
912 in the city center in Aarhus, Denmark. Summer 2009.
913
914 \end{itemize}
915
916 \subsection*{Teaching assistance at Aarhus University during Ph.D.\ studies}
917 \begin{itemize}[leftmargin=0in,topsep=0in,parsep=0in]
918
919 \item Theoretical Geophysics (exercises)
920 \item Geophysical Methods (exercises and field excursions)
921 \item Sedimentology (exercises)
922 \item Numerical Modeling (exercises)
923 \item Sedimentary Processes and Environments (classes, exercises, and field
924 excursions)
925 \item Introductory Petrology (classes and exercises)
926 \item Basin analysis and modeling (classes and exercises)
927 \item Geographical Information Systems (exercises)
928 \item Quaternary Sediments (classes and field excursion)
929 \item Geomodeling (exercises)
930 \item Palaeontology and stratigraphy (exercises)
931 \item Hydrology, soil processes, and dynamic geomorphology\\
932 (classes, exercises, and field excursion)
933
934 \end{itemize}
935
936 \end{document}