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
2.1: Numerical wave modelling (2)
Time:
Monday, 09/Sept/2024:
2:45pm - 3:45pm

Session Chair: Giorgio Bellotti
Location: Room A - AULA MAGNA

Ground floor of Pontificia Università Gregoriana - Piazza della Pilotta, 4

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Presentations
2:45pm - 3:00pm

High-fidelity numerical Simulation of oscillating Flows and Turbulence Structures past a single Oyster Individual

Jan Hitzegrad1, Elin Schuh2, Aileen Brendel1, Christian Windt1, Oliver Lojek1, Nils Goseberg1,3

1Technische Universität Braunschweig, Braunschweig, Germany; 2Federal Waterways Engineering and Research Institute, Hamburg, Germany; 3Coastal Research Center, Hannover, Germany

472-Hitzegrad-High-fidelity numerical Simulation of oscillating Flows and Turbulence Structures.pdf


3:00pm - 3:15pm

Geometry evaluating piecewise linear Interface Computation (GE-PLIC) tailored to the numerical Simulation of breaking Waves

Fabian Knoblauch, Ahmet Soydan, Widar Weizhi Wang, Hans Bihs

Norwegian University of Science and Technology, Norway

977-Knoblauch-Geometry evaluating piecewise linear Interface Computation.pdf


3:15pm - 3:30pm

SPH numerical simulations of wave breaking over a barred beach

Pietro Scandura1, Corrado Altomare2, Ivan Cáceres2, Giacomo Viccione3, Dominic van der A4

1University of Catania, Italy; 2Politecnical University of Catalonia, Spain; 3University of Salerno, Italy; 4University of Aberdeen, UK

999-Scandura-SPH numerical simulations of wave breaking over a barred beach.pdf


3:30pm - 3:45pm

Full-scale validation of the RANS k-epsilon turbulence closure model for capturing whitewater reform in the surf zone.

Adam Fincham1,2,3, Michal Pieszka1,2

1Kelly Slater Wave Company, USA; 2World Surf League, USA; 3University of Southern California, USA

1063-Fincham-Full-scale validation of the RANS k-epsilon turbulence closure model.pdf


 
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