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<span style="font-size: 14pt;"><b><i>"Numerical analysis of drainage in porous media using network models"</i></b></span>
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<div class="ContentPasted0"><span style="font-size: 14pt;"><b>Dr. Paula Reis</b></span></div>
<div class="ContentPasted0">PoreLab - Porous Media Laboratory</div>
<div class="ContentPasted0">Physics Department,</div>
<div class="ContentPasted0">University of Oslo</div>
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<div class="ContentPasted0">Please feel free to forward/share this invitation with other groups/disciplines that might be interested in this talk/topic.
<b>All are welcome to attend. </b></div>
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<div class="ContentPasted0">Note: Zoom access is for non-departmental participants only. </div>
<div class="ContentPasted0"><b><a href="https://fsu.zoom.us/j/94273595552">https://fsu.zoom.us/j/94273595552</a> </b></div>
<div class="ContentPasted0">Meeting # <b>942 7359 5552 </b></div>
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<div class="ContentPasted0">🎦 Colloquium recordings will be made available here,
<a href="https://www.sc.fsu.edu/colloquium">https://www.sc.fsu.edu/colloquium</a></div>
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<div class="ContentPasted0"><b>Wednesday, Oct 25</b>, 2023, Schedule: </div>
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<div class="ContentPasted0">* <b>3:00</b> to 3:30 PM Eastern Time (US and Canada)
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<div class="ContentPasted0">☕ <b>Nespresso & Teatime</b> - 417 DSL Commons </div>
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<div class="ContentPasted0">* <b>3:30 </b>to 4:30 PM Eastern Time (US and Canada)
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<div class="ContentPasted0">🕟 <b>Colloquium</b> - 499 DSL Seminar Room </div>
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<div class="ContentPasted0"><b>Abstract: </b></div>
<div class="ContentPasted0">Modeling fluid-fluid displacements in porous media has been an active research topic for the past few decades, with applications spanning multiple fields. In this endeavor, extensive efforts have been directed toward the development
of models related to CO_2 storage in subsurface geological, oil recovery methods, drying, and water management in fuel cells. In this presentation, we narrow our focus to pore-scale models of drainage using network representations of the pore space. From invasion-percolation
to more complex dynamic pore-network models (PNM), we explore ways to incorporate the complex interplay of capillary, viscous, and gravitational forces taking place in porous-media multiphase flows into simplified numerical models. Particularly, a method to
effectively model the impact of film flow during slow drainage in granular porous media is introduced, and the related results – along with comparisons with experimental observations – are presented.</div>
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<div class="ContentPasted0">Additional colloquium details can be found here, </div>
<div class="ContentPasted0"><a href="https://www.sc.fsu.edu/news-and-events/colloquium/1755-colloquium-with-paula-reis-2023-10-25">https://www.sc.fsu.edu/news-and-events/colloquium/1755-colloquium-with-paula-reis-2023-10-25</a> </div>
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