Dr. Ginevra Rubino

Hamburg University of Technology (TUHH)
Institute for Fluid Dynamics and Ship Theory (M8)
Am Schwarzenberg-Campus 4 (C)
D-21073 Hamburg
Room C5.004

Phone: +49 40 42878 6029

E-mail:ginevra.rubino(at)tuhh(dot)de

URL: http://www.tuhh.de/fds/staff/

Bio-Sketch

Schooling in Italy

2011-2015

B.Sc. Mathematics, Università La Sapienza, Rome, Italy

2015-2017

M.Sc. Mathematical Engineering, Politecnico di Torino, Turin, Italy

2016-2017

M2 Computational Mechanics, Ecole Centrale de Nantes, Nantes, France

2018-2021

Ph.D. in Fluid Mechanics, Ecole Centrale de Nantes, Nantes, France

2022-present

Research Assistant, Institute of Fluid Dynamics and Ship Theory, Hamburg University of Technology, Hamburg, Germany

Major Areas of Interest & Expertise

Transition and Turbulence Modeling, Computational Fluid Dynamics: RANS and Hybrid RANS/LES models

Publications

2022

Rubino, G., & Visonneau, M. (2022). Improved crossflow transition predictions for the one-equation γ transition model. Computers & Fluids245, 105580.


Rubino, G., & Visonneau, M. (2022, August). Laminar-to-turbulence transition modeling around the 6:1 prolate spheroid at different angles of attack. In 34th Symposium on Naval Hydrodynamics.

2021

Guilmineau, E., Visonneau, M., Mozaffari, S., Rubino, G., & Wackers, J. (2021). Evaluation of turbulence modelling for the incopressible flow simulations around a multi delta wing configuration. In 55th 3AF International Conference on Applied Aerodynamics, AERO2020+ 1.

2020

Visonneau, M., Guilmineau, E., & Rubino, G. (2020). Computational Analysis of the Flow Around a Surface Combatant at 10° Static Drift. In Progress in Hybrid RANS-LES Modelling (pp. 389-400). Springer, Cham.

2019

Rubino, G., Guilmineau, E., & Visonneau, M. (2019, November). URANS and hybrid RANS/LES simulations of the flow around a US Navy surface combatant at 10° and 20° static drift. In Proceedings of the AVT-307 Symposium.

Rubino, G., & Visonneau, M. (2019, October). Towards the Modeling of Laminar to Turbulence Transition for Incompressible Flows. In 22st Numerical Towing Tank Symposium (NuTTS 2019).

Visonneau, M., Guilmineau, E., & Rubino, G. (2019, September). Performance of turbulence closures for vortex interaction physics over military aircraft. In 22th Numerical Towing Tank Symposium, NUTTS'19.

2018

Guilmineau, E., Visonneau, M., & Rubino, G. (2018, September). Numerical simulations of the flow around a surface combattant at 10° static drift. In 12th International ERCOFTAC Symposium on Engineering Turbulence Modelling and Measurements-ETMM12.

Visonneau, M., Guilmineau, E., & Rubino, G. (2018, August). Computational analysis of the flow around a surface combatant at 10° static drift and dynamic sway conditions. In 32nd Symposium on Naval Hydrodynamics.


Guilmineau, E., Visonneau, M., & Rubino, G. (2018, June). The Flow Around a Surface Combatant at 10° Static Drift: Assessment of Turbulence Models. In Turbulence and Interactions (pp. 130-135). Springer, Cham.