Conference Agenda

Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).

 
 
Session Overview
Session
A05_03: Computational Fluid Dynamics and Numerical Methods, Computational Rheology, Large-Eddy Simulation and Related Techniques, Quantum Computing for Fluids
Time:
Wednesday, 18/September/2024:
5:00pm - 6:00pm

Session Chair: Mathis Bode, Forschungszentrum Jülich
Location: H08

C.A.R.L.-Central Auditorium for Research and Learning Claßenstr. 11 52072 Aachen

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Presentations
5:00pm - 5:15pm

CFD modelling of thermal phase change in compressible two-phase flows with machine learning model for temperature prediction

Gokul Siddarth Mani Sakthi, Laila Abu-Farah, Natalie Germann

Process Systems Engineering, University of Stuttgart, Böblingerstraße 78, 70199 Stuttgart, Germany

Mani Sakthi-CFD modelling of thermal phase change in compressible two-phase flows with machine-644.pdf


5:15pm - 5:30pm

DG-FEM for flows transitioning from Navier-Stokes to Darcy on domains with arbitrary time-dependent permeability

Benjamin Leon Terschanski, Mohammad Ghanem, Julia Kowalski

RWTH Aachen University, Chair of Methods for Model-based Development in Computational Engineering

Terschanski-DG-FEM for flows transitioning from Navier-Stokes-858.pdf


5:30pm - 5:45pm

High-fidelity numerical simulations of high-speed single- and multi-phase flows with novel ROUND schemes on unstructured grids

Xi Deng, Omar Matar

Department of Chemical Engineering, Imperial College London

Deng-High-fidelity numerical simulations of high-speed single- and multi-phase flows with-227.pdf


5:45pm - 6:00pm

High-order methods for compressible multi-phase flow: a comparison of the level-set method and the high-resolution discrete-equations method

Thomas Paula1, Alexander Bußmann1, Nikolaus A. Adams1,2

1Technical University of Munich, Munich Institute of Integrated Materials, Energy and Process Engineering (MEP); 2Technical University of Munich, TUM School of Engineering and Design, Chair of Aerodynamics and Fluid Mechanics

Paula-High-order methods for compressible multi-phase flow-739.pdf


 
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