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).
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Session Overview |
Session | ||||||||
A04_06: Granular Flows, Particle-Laden Flows, Suspensions
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Presentations | ||||||||
2:30pm - 2:45pm
Free fall of a group of inertial cylinders: impact of the elongation ratio on the multiscale dynamics Institut de Mécanique des Fluides de Toulouse, Université de Toulouse - CNRS. France
2:45pm - 3:00pm
Inertial particles clustering in turbulence: a computational study on the effect of filtering, caustic folds and cluster length scales Institute of Fluid Dynamics, ETH Zürich, Sonneggstrasse 3, 8092 Zürich, Switzerland
3:00pm - 3:15pm
Influence of highly dilute neutrally buoyant particles on transitional pipe flow characteristics Centre for Fluids and Complex Systems, Coventry University
3:15pm - 3:30pm
Large heavy particles in wall-bounded turbulence Interdisciplinary Center for Fluid Dynamics, Federal University of Rio de Janeiro, Rio de Janeiro, PC 21941-594, Brazil
3:30pm - 3:45pm
Modelling and prediction of inertial particle velocity in turbulent channel flow 1State Key Laboratory for Turbulence and Complex Systems, College of Engineering, Peking University, Beijing 100871, PR China; 2HEDPS and Center for Applied Physics and Technology, College of Engineering, Peking University, Beijing 100871, PR China; 3Nanchang Innovation Institute, Peking University, Nanchang 330008, PR China
3:45pm - 4:00pm
Near-wall accumulation of inertial particles in compressible turbulent channel flows 1Tsinghua University; 2State Key Laboratory of Aerodynamics
4:00pm - 4:15pm
Numerical calculation of the multi-phase transport in geothermal drilling using a Eulerian-Lagrangian approach Clausthal University of Technology, Adolph-Roemer-Str. 2A, 38678 Clausthal-Zellerfeld, Germany
4:15pm - 4:30pm
Numerical study of the particle-bed interaction dynamics in viscous fluids using a combined constraint/impulse-based approach TU Clausthal
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