HydroCav

morphingmesh

Research activities

  • Cavitation modelling for steady and unsteady CFD simulations

  • Experimental and numerical optimization of passive cavitation controllers

Projects

Cavitation in hydraulic is an important phenomenon to be considered for performance predictions. Correct analysis of the cavitation onset and development and its effect on the flow field while diminishing the pressure level need to be investigated. Particular attention is given to the coupling between cavitation and turbulence models as well as on the underlying numerical procedure. The performance of the proposed models will be initially assessed on simple cases in steady case. In a second step results for different applications will be presented with pitching foils. The final purpose of the project will be to design a passive controller on the hydrofoils able to decrease and control the size of the cavitating bubble around the hydrofoil and the lift oscillatione related to the shear cavitation. For the purpose,  appendages, and vortex generator will be considered. The size, the height and the location will be considered to optimize the compromise between cavitation and lift reduction. The results will be compared with the experimental date on steady and pitchig hydrofoils.


Attracting Lagrangian Coherent Structures ALCSs

Repelling Lagrangian Coherent Structures RLCSc 

Tools

FacilityCavitation Facility 

Mesh ToolsICEM and Salome 

CFD ToolsANSYS CFX  and OpenFOAM 

Post Processing Tools VTK, Paraview, Matlab and Python

Contacts

Publications

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    2025

    Yin, Tingyun; Pavesi, Giorgio

    Compressibility characteristics of transient sheet/cloud cavitation – a numerical survey Journal Article

    In: International Communications in Heat and Mass Transfer, vol. 162, 2025, ISSN: 07351933.

    Abstract | Links | BibTeX | Tags: Cavitation, Condensation Shock, Energy conversion, Shock Wave

    Yin, Tingyun; Pavesi, Giorgio

    Interpreting proper orthogonal decomposition modes extracted from partial cavity oscillation Journal Article

    In: Physics of Fluids, vol. 37, iss. 1, 2025, ISSN: 10897666.

    Abstract | Links | BibTeX | Tags: Cavitation, Cavity, Orthogonal Decomposition

    Shen, Jiantao; Jia, Xuanwen; Cheng, Li; Jiao, Weixuan; Zhang, Bowen; Pavesi, Giorgio

    Investigation into the coupling mechanism of tailwater vortex dynamics and cavitation during pump-as-turbine operations Journal Article

    In: Physics of Fluids, vol. 37, iss. 10, 2025, ISSN: 10897666.

    Abstract | Links | BibTeX | Tags: Cavitation, PAT, Pump as Turbine

    Yin, Tingyun; Pavesi, Giorgio

    Several compressible computational fluid dynamics methods applied to transient sheet/cloud cavitation Journal Article

    In: Physics of Fluids, vol. 37, iss. 2, 2025, ISSN: 10897666.

    Abstract | Links | BibTeX | Tags: Cavitation, Cloud cavitation, Sheet Cavitation

    Yin, Tingyun; Pavesi, Giorgio

    Study of sheet cavitation on a pitching hydrofoil Proceedings Article

    In: Journal of Physics: Conference Series, Institute of Physics, 2025, ISSN: 17426596.

    Abstract | Links | BibTeX | Tags: Cavitation, Pitching Hydrofoil, Sheet Cavitation

    2023

    Yin, Tingyun; Pavesi, Giorgio; Yuan, Shouqi

    Influenced of Bio-Inspired Leading-Edge Tubercle on Cloud Cavitation Around NACA 0009 Hydrofoil Proceedings Article

    In: ETC, (Ed.): Proceedings of 15th European Conference on Turbomachinery Fluid dynamics & Thermodynamics ETC15, April 24-28 2023; Budapest, Hungary, pp. 1-14, ETC, 2023.

    Abstract | Links | BibTeX | Tags: Bio-Inspired, Cavitation, Hydrofoil, Tubercle

    2019

    Yin, Tingyun; Pavesi, Giorgio; Pei, Ji; Yuan, Shouqi; Daniel, Nana Adu

    Comparison of Various Turbulence Models Applied to a Twisted Hydrofoil Journal Article

    In: Proceedings of the 10th International Symposium on Cavitation (CAV2018), iss. 5, pp. 269-275, 2019.

    Abstract | Links | BibTeX | Tags: Cavitation, Turbulence Model, Twisted Hydrofoil, unsteady shedding

    2015

    Cavazzini, Giovanna; Pavesi, Giorgio; Santolin, Alberto; Ardizzon, Guido; Lorenzi, Renzo

    Using splitter blades to improve suction performance of centrifugal impeller pumps Journal Article

    In: Institution of Mechanical Engineering, vol. 3, iss. 229, pp. 309-323, 2015, ISSN: 0957-6509.

    Abstract | Links | BibTeX | Tags: Cavitation, Centrifugal Pump, date received, Plesset Cavitation Model, Rayleigh, Rayleigh-Plesset, Splitter Blades, suction performance

    2014

    Rossetti, Antonio; Pavesi, Giorgio; Ardizzon, Guido; Santolin, Alberto

    Numerical Analyses of Cavitating Flow in a Pelton Turbine Journal Article

    In: Journal of Fluids Engineering, vol. 136, iss. 8, pp. 081304, 2014, ISSN: 0098-2202.

    Abstract | Links | BibTeX | Tags: Cavitation, CFD, Multiphase Flow, Pelton

    2013

    Pavesi, Giorgio; Rossetti, Antonio; Santolin, Alberto; Ardizzon, Guido

    Numerical Analyses of a Cavitating Pelton Turbine Proceedings Article

    In: 10th European Conference on Turbomachinery Fluid Dynamics and Thermodynamics, ETC 2013, pp. 1-12, 2013, ISSN: 24104833.

    Abstract | BibTeX | Tags: Cavitation, CFD, Pelton Turbine

    1994

    Ardizzon, Guido; Pavesi, Giorgio

    Caratterizzazione Sperimentale del Comportamento a Cavitazione delle Pompe Centrifughe: Confronto fra Metodologie Convenzionali e Tecniche di Analisi Acustica Proceedings Article

    In: 49° Congresso Nazionale ATI, pp. 1559-1570, SGE - Padova, 1994.

    Abstract | BibTeX | Tags: Acustic Cavitation, Cavitation, Pump

    1993

    Pavesi, Giorgio; Ardizzon, Guido

    Sulla Progettazione delle Turbopompe Centrifughe nei Riguardi della Cavitazione Proceedings Article

    In: Congresso Nazionale "Macchine e Apparecchiature Idrauliche", pp. 543-562, 1993.

    Abstract | BibTeX | Tags: Cavitation, Pump, Pump Design

    1992

    Ardizzon, Guido; Pavesi, Giorgio

    Experimental study on cavitation in centrifugal pump impellers Journal Article

    In: 47. ATI national congress, vol. II, pp. 847 - 856, 1992, (Query date: 2017-05-06).

    Abstract | Links | BibTeX | Tags: Cavitation, Pump