CFC 2025

MS010 - Fluid-structure interaction: Methods and applications

Organized by: L. Battaglia (CIMEC - Ctro. de Inv. en Mét. Computacionales, Argentina), J. D'Elía (CIMEC - Ctro. de Inv. en Mét. Computacionales, Argentina), L. Garelli (CIMEC - Ctro. de Inv. en Mét. Computacionales, Argentina), G. Ríos Rodríguez (CIMEC - Ctro. de Inv. en Mét. Computacionales, Argentina), M. Storti (CIMEC - Ctro. de Inv. en Mét. Computacionales, Argentina) and M. Cruchaga (Universidad de Santiago de Chile, Chile)
Keywords: embedded and arbitrary Lagrangian-Eulerian methods, Fluid-Structure Problems, HPC, multiphysics
The mini-symposium focus on advances in computational fluid-structure interaction (FSI) problems. The presentations will cover a wide range of applications, including aerodynamics, renewable energy (e.g. wind turbines, land and airborne, wave energy converters, hydro-power), biomedicine, aerospace and aerodynamics, civil engineering (bridges and buildings). The topics to be discussed include: - Partitioned and staggered methodologies - Embedded and Arbitrary Lagrangian-Eulerian methods - Multiphysics coupling methods - High Performance Computing in FSI - Theoretical developments in FSI and moving boundaries - Industrial applications