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
S5-4: Modelling of Multiphase Flows with moving interfaces
Time:
Tuesday, 13/May/2025:
2:40pm - 4:40pm

Session Chair: Adrien Toutant
Location: Spot


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Presentations
2:40pm - 3:00pm

Identification of Closure Terms for Time-averaged Two-phase Flow Modelling based on the Volume-of-Fluid Method

Wiebke Schrader, David Mueller, Bettina Frohnapfel, Alexander Stroh

Karlsruhe Institute of Technology (KIT), Germany

Schrader-Identification of Closure Terms for Time-averaged Two-phase Flow Modelling-1206.pdf


3:00pm - 3:20pm

Data-driven modeling of force and shape evolution for highly deformable droplets using machine learning

Samuel Graham Garcia1, Taofiqhasan Mahmood2, Yue Ling1

1University of South Carolina, United States of America; 2Baylor University, United Stated of America

Garcia-Data-driven modeling of force and shape evolution-1225.pdf


3:20pm - 3:40pm

A-priori analysis and subgrid-scale modeling of the slip term in the volume-averaged conservation equations for multiphase flows

Josef Hasslberger, Markus Klein

University of the Bundeswehr Munich, Germany

Hasslberger-A-priori analysis and subgrid-scale modeling of the slip term-504.pdf


3:40pm - 4:00pm

NUMERICAL COMPARISON OF DIFFERENT DRAG FORCE FORMULATIONS FOR AN ALL-FLOW-REGIME TWO-FLUID MODEL APPROACH

Peio Berrécochéa Machingoréna1,2, Dominique Legendre2, Daniele Vivaldi1

1IRSN (Institut de Radioprotection et de Sûreté Nucléaire), France; 2IMFT (Institut de Mécanique des Fluides de Toulouse), France

Berrécochéa Machingoréna-NUMERICAL COMPARISON OF DIFFERENT DRAG FORCE FORMULATIONS-720.pdf


4:00pm - 4:20pm

Lattice Boltzmann method applied to Ostwald Ripening for nuclear glasses under gravity

Capucine Méjanès1, Alain Cartalade1, Mathis Plapp2

1CEA, DES,ISAS 91190 Gif-Sur-Yvette, France; 2Institut de Polytechnique, 91190, GIf-Sur-Yvette, France

Méjanès-Lattice Boltzmann method applied to Ostwald Ripening-404.pdf


 
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