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_01: Computational Fluid Dynamics and Numerical Methods, Computational Rheology, Large-Eddy Simulation and Related Techniques, Quantum Computing for Fluids
Time:
Monday, 16/September/2024:
3:30pm - 6:00pm

Session Chair: Wolfgang Schröder, RWTH Aachen University
Location: H04

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

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Presentations
3:30pm - 3:45pm

Latent space representation of plunging airfoil wakes using a drag-augmented autoencoder (YSA)

Hiroto Odaka, Kai Fukami, Kunihiko Taira

University of California, Los Angeles

Odaka-Latent space representation of plunging airfoil wakes using a drag-augmented-219.pdf


3:45pm - 4:00pm

Space and time adaptive scheme for compressible two-phase flows (YSA)

Yijun Wang, Jonas Luther, David Jenny, Marc Immer, Patrick Jenny

ETH Zürich

Wang-Space and time adaptive scheme for compressible two-phase flows-687.pdf


4:00pm - 4:15pm

A Direct Forcing Immersed Boundary Method for Block-Gauss-Seidel Vanka Smoother formulation with Application to Multiphase Flows

mukesh kumar, yuri feldman

Ben-Gurion University of the Negev, Beer Sheva, Israel

kumar-A Direct Forcing Immersed Boundary Method for Block-Gauss-Seidel Vanka Smoother-414.pdf


4:15pm - 4:30pm

A Lattice Boltzmann Approach for Fluid Flows on Spherical Surfaces

Elisa Bellantoni1,2,3, Victor E. Ambruș4, Sergiu Busuioc4, Alessandro Gabbana5, Federico Toschi5

1Computation-based Science and Technology Research Center, The Cyprus Institute, Nicosia, Cyprus; 2Department of Physics and INFN, University of Rome "Tor Vergata", Rome, Italy; 3LTCI, Télécom Paris, IP Paris, France; 4Physics Department, West University of Timis ̧oara, Romania; 5Applied Physics and Science Education, Eindhoven University of Technology, The Netherlands

Bellantoni-A Lattice Boltzmann Approach for Fluid Flows on Spherical Surfaces-1186.pdf


4:30pm - 4:45pm

A Multi-Layer Stochastic Icing Model Utilizing a Viscous Immersed Boundary Method

Maxime Blanchet1, Yannick Hoarau2, Éric Laurendeau1

1Polytechnique Montreal; 2ICUBE Laboratory

Blanchet-A Multi-Layer Stochastic Icing Model Utilizing a Viscous Immersed Boundary-971.pdf


4:45pm - 5:00pm

Quantum Algorithm for Simulating Advection (YSA)

Peter Brearley, Sylvain Laizet

Department of Aeronautics, Imperial College London, London, UK

Brearley-Quantum Algorithm for Simulating Advection-244.pdf


5:00pm - 5:15pm

Embedding Koopman operators for nonlinear flows on quantum computers

Philipp Pfeffer1, Dimitrios Giannakis2, Joanna Slawinska2, Jörg Schumacher1

1TU Ilmenau, Institut für Thermo- und Fluiddynamik, Ilmenau, 98694, Germany; 2Dartmouth College, Department of Mathematics, Hanover, NH 03755, USA

Pfeffer-Embedding Koopman operators for nonlinear flows on quantum computers-295.pdf


5:15pm - 5:30pm

Quantum Algorithm for the Lattice-Boltzmann Method

David Wawrzyniak1, Josef Winter2, Steffen Schmidt2, Thomas Indinger2, Uwe Schramm3, Christian Janßen3, Nikolaus A. Adams2

1Technical University Munich, Munich Institute of Integrated Materials, Energy and Process Engineering, Lichtenbergstr. 4a, 85748 Garching, Germany; 2Technical University Munich, Chair of Aerodynamics and Fluid Mechanics, Boltzmannstr. 15, 85748 Garching, Germany; 3Altair Engineering Inc., 1820 E. Big Beaver Road, Troy, MI 48083, United States

Wawrzyniak-Quantum Algorithm for the Lattice-Boltzmann Method-593.pdf


5:30pm - 5:45pm

Towards Quantum Gaussian Process Emulation for Flow Simulations

Sathyamurthy Hegde, Oliver Ahrend, Mithlesh V. Kumar, Julia Kowalski

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

Hegde-Towards Quantum Gaussian Process Emulation for Flow Simulations-1193.pdf


5:45pm - 6:00pm

Variational Quantum Algorithms for simple fluid flow problems

Julia Ingelmann, Philipp Pfeffer, Jörg Schumacher

Technische Universität Ilmenau

Ingelmann-Variational Quantum Algorithms for simple fluid flow problems-236.pdf


 
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