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_04: Computational Fluid Dynamics and Numerical Methods, Computational Rheology, Large-Eddy Simulation and Related Techniques, Quantum Computing for Fluids
Time:
Thursday, 19/September/2024:
10:00am - 12:00pm

Session Chair: Holger Foysi, Universität Siegen
Location: H08

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

Show help for 'Increase or decrease the abstract text size'
Presentations
10:00am - 10:15am

Immersed Boundary Method Solver with Vanka Smoother for Efficient Implicit Computations

Kirill Goncharuk, Oz Oshri, Yuri Feldman

Ben-Gurion University of the Negev,

Goncharuk-Immersed Boundary Method Solver with Vanka Smoother-269.pdf


10:15am - 10:30am

Improvement of Compressibility Correction for the High Convective Mach Number Mixing Layer

Yuyan Tian, Zhenxun Gao, Ke Xu, Fan Mo

National Laboratory for Computational Fluid Dynamics, Beihang University, Beijing, China

Tian-Improvement of Compressibility Correction for the High Convective Mach Number Mixing-713.pdf


10:30am - 10:45am

Is a direct numerical simulation of Navier-Stokes equations with small enough grid spacing and small enough time-step definitely reliable/correct?

Shijun LIAO1, Shijie QIN1, Yu YANG1, Yongxiang HUANG2, Xinyu MEI3, Lipo WANG3

1Shanghai Jiaotong University, School of Ocean and Civil Engineering, China; 2State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University, China; 3Shanghai Jiaotong University, UM-SJTU Joint Institute, China

LIAO-Is a direct numerical simulation of Navier-Stokes equations with small enough grid-196.pdf


10:45am - 11:00am

Large/Small Eddy Simulations: A High-Fidelity Simulation Method for High Reynolds Number Turbulent Flows

Arnab Moitro, Chang Hsin Chen, Sai Sandeep Dammati, Alexei Y. Poludnenko

University of Connecticut

Moitro-LargeSmall Eddy Simulations-1364.pdf


11:00am - 11:15am

Machine Learning Enhanced Collision Operator for the Lattice Boltzmann Method Based on Equivariant Networks

Mario Christopher Bedrunka1,2, Dirk Reith2, Holger Foysi1

1Chair of Fluid Mechanics, University of Siegen, Paul-Bonatz-Straße 9-11, 57076 Siegen-Weidenau, Germany; 2Institute of Technology, Resource and Energy-efficient Engineering (TREE), Bonn-Rhein-Sieg University of Applied Sciences, Grantham-Allee 20, 53757 Sankt Augustin, Germany

Bedrunka-Machine Learning Enhanced Collision Operator for the Lattice Boltzmann Method Based-758.pdf


11:15am - 11:30am

Machine-Learning-Based Droplet Shape Prediction in Piezo-Based Drop-on-Demand Inkjet Devices

Ali Reza Hashemi1, Mohammad R. Hashemi1, Angela Ares1, Riccardo Rossi1,2, Pavel B. Ryzhakov1,2

1Centre Internacional de Mètodes Numèrics en Enginyeria (CIMNE), Gran Capitan, S/N, Barcelona, 08034, Spain; 2Universitat Politècnica de Catalunya (UPC), North Campus, Barcelona, 08034, Spain

Hashemi-Machine-Learning-Based Droplet Shape Prediction in Piezo-Based Drop-on-Demand Inkjet-761.pdf


11:30am - 11:45am

Multishot ice accretion simulations in complex icing environments with an enhanced remeshing framework

Jee Hann Ng, Chien Ming Tay, Yongdong Cui, Siou Chye Chew, Boo Cheong Khoo

National University of Singapore

Ng-Multishot ice accretion simulations in complex icing environments with an enhanced-352.pdf


11:45am - 12:00pm

NUMERICAL AND EXPERIMENTAL INVESTIGATION OF A LONGITUDINAL VORTEX OF A DELTA WING

Elrawy Soliman1, Tobias Knopp1, Philip Ströer2, Axel Probst1, Nils Rathje3, Rolf Radespiel3

1Institute of Aerodynamics and Flow Technology, German Aerospace Center DLR, Göttingen, Germany; 2Engineering Fluid Dynamics, University of Twente, Enschede, The Netherlands; 3Institute of Fluid Mechanics, TU Braunschweig, Braunschweig, Germany

Soliman-NUMERICAL AND EXPERIMENTAL INVESTIGATION OF A LONGITUDINAL VORTEX-1196.pdf


 
Contact and Legal Notice · Contact Address:
Privacy Statement · Conference: EFDC1
Conference Software: ConfTool Pro 2.8.105+TC+CC
© 2001–2025 by Dr. H. Weinreich, Hamburg, Germany