Skip to content

Commit e0691eb

Browse files
authored
Merge pull request #5 from tukss/add-rene
add Rene Gassmoeller's talk
2 parents 833ace7 + 176127b commit e0691eb

File tree

1 file changed

+50
-0
lines changed

1 file changed

+50
-0
lines changed

index.html

Lines changed: 50 additions & 0 deletions
Original file line numberDiff line numberDiff line change
@@ -51,6 +51,11 @@ <h2>Overview</h2>
5151
<td><b>Title</b></td>
5252
<td><b>Date</b></td>
5353
</tr>
54+
<tr>
55+
<td>Rene Gassmoeller</td>
56+
<td><a href="#fy269">What We Need to Model Planetary Interiors: The Role of Research Software in Computational Geodynamics</a></td>
57+
<td>10/15/2025</td>
58+
</tr>
5459
<tr>
5560
<td>Maxwell Cole</td>
5661
<td><a href="#fy267">First digital biophysical model of the entire human cardiovascular system</a></td>
@@ -160,6 +165,51 @@ <h2>Overview</h2>
160165

161166
<h2>Talks</h2>
162167

168+
<div id="fy269"></div>
169+
<h3>What We Need to Model Planetary Interiors: The Role of Research Software in Computational Geodynamics</h3>
170+
Speaker: Rene Gassmoeller<br>
171+
GEOMAR Helmholtz Centre for Ocean Research Kiel, Germany<br><br>
172+
173+
Abstract:
174+
<p>
175+
Geodynamics - understanding the internal dynamics of the Earth and
176+
other planets - depends heavily on the use of numerical algorithms and
177+
their software implementations to make sense of the data we collect
178+
and to understand our exposure to geohazards and the availability of
179+
georesources. The software we use to understand these processes varies
180+
from solvers for wave propagation and elastic deformation over
181+
reactive multi-phase flow models and magneto-hydro-dynamics to
182+
micro-scale mineral physics processes and ab initio material property
183+
prediction. As varied as the software is typically their development
184+
history, and with the advent of modern standards for research software
185+
the geodynamics community decided in 2005 to establish an organization
186+
dedicated to improving software standards - the Computational
187+
Infrastructure for Geodynamics, CIG. 20 years later I will discuss the
188+
role that CIG has played in supporting research software in the field
189+
of computational geodynamics, and the lessons we learned. I will also
190+
present application cases of CIG software, with a particular focus on
191+
the ASPECT software - the Advanced Solver for Planetary Evolution,
192+
Convection, and Tectonics - and how it helps us to understand
193+
deformation processes in Earth's interior, such as the movement of
194+
tectonic plates, and the influence of mineral phase transitions on
195+
Earth's long-term evolution.
196+
</p>
197+
198+
Bio:
199+
<p>
200+
Rene Gassmoeller is a staff scientist at the GEOMAR Helmholtz
201+
Centre for Ocean Research Kiel, and previously was the technical lead
202+
for the NSF-funded community organization Computational Infrastructure
203+
for Geodynamics. He completed his PhD at the German Research Centre
204+
for Geosciences (GFZ) in Potsdam, Germany and did postdoctoral work at
205+
Texas A&amp;M University, Colorado State University and the University of
206+
California, Davis as well as an appointment as visiting assistant
207+
professor and research scientist at the University of Florida. His
208+
research interests lie in computational geodynamics, numerical
209+
mathematics, and software engineering, with a particular focus on
210+
processes in the deep Earth and developing the software we need to
211+
understand them.
212+
</p>
163213

164214
<div id="fy267"></div>
165215
<h3>First digital biophysical model of the entire human cardiovascular system</h3>

0 commit comments

Comments
 (0)