Conference Agenda

Session
7.1: Vegetation hydrodynamics (2)
Time:
Tuesday, 10/Sept/2024:
2:00pm - 3:30pm

Session Chair: Maria Maza
Location: Room A - AULA MAGNA

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

Presentations
2:00pm - 2:15pm

Performance-based design for using emergent vegetation to mitigate wave overtopping considering climate change

Kayla Ostrow1, Daniel T. Cox1, Tori Tomiczek2, Esteban L. Biondi3

1Oregon State University; 2United States Naval Academy; 3Applied Technology & Management / Geosyntec Consultants

775-Ostrow-Performance-based design for using emergent vegetation.pdf


2:15pm - 2:30pm

Prototyping an engineered algae field to attenuate long swells

Hurtado Felipe1, Toledo Jean Pierre1, López Jesús1, Zamora Víctor1, Magnere Milton1, Bruna Alexandra2, Pérez Jorge2, Córdova Pablo2, Correa Sebastián2, Winckler Patricio2

1Pontificia Universidad Católica de Valparaíso, Chile; 2Universidad de Valparaíso

158-Felipe-Prototyping an engineered algae field to attenuate long swells.pdf


2:30pm - 2:45pm

CFD Modelling of Wave-Mangrove Interaction Via RANS and VARANS Approaches

David Kelly1, Frederic Mann1, Douglas Pender1, Hans Bihs2, Widar Wang2, Gaurav Savant3

1JBA Consulting, Edinburgh, United Kingdom; 2Norwegian University of Science and Technology (NTNU), Trondheim, Norway; 3Coastal and Hydraulics Laboratory (CHL), U.S. Army Engineer Research and Development Center, Vicksburg, USA

249-Kelly-CFD Modelling of Wave-Mangrove Interaction Via RANS and VARANS Approaches.pdf


2:45pm - 3:00pm

The impact of damping coefficients on dynamic blade motion of flexible submerged vegetation

Inga Prüter1, Kara Keimer1, Felix Spröer1, Oliver Lojek1, Christian Windt1, Ioan Nistor2, Nils Goseberg1

1Technische Universität Braunschweig, Germany; 2University of Ottawa, Canada

336-Prüter-The impact of damping coefficients on dynamic blade motion.pdf


3:00pm - 3:15pm

Wave attenuation due to vegetation using the fully nonlinear Boussinesq model

Yu-Lin Tsai1, Che-Wei Chang2, Nobuhito Mori1

1DPRI, Kyoto University, Japan; 2DOE, the University of Rhode Island

683-Tsai-Wave attenuation due to vegetation using the fully nonlinear Boussinesq.pdf


3:15pm - 3:30pm

SPH modelling of vegetation-induced wave dissipation: implementation and applications

Joe El Rahi1, Vasiliki Stratigaki1, Tomohiro Suzuki2, Peter Troch1

1Department of Civil Engineering, Ghent University, Belgium; 2Flanders Hydraulics, Antwerp, Belgium

730-El Rahi-SPH modelling of vegetation-induced wave dissipation.pdf