Cavitating flow dynamics are investigated in an axisymmetric converging-diverging Venturi nozzle. Computational Fluid Dynamics (CFD) results are compared with those from previous experiments. New analysis performed on the quantitative results from both data sets reveals a coherent trend and show that the simulations and experiments agree well. The CFD results have confirmed the interpretation of the high-speed images of the Venturi flow, which indicated there are two vapor shedding mechanisms that exist under different running conditions: re-entrant jet and condensation shock. Moreover, they provide further detail of the flow mechanisms that cannot be extracted from the experiments. For the first time with this cavitating Venturi nozzle, th...
The unsteady cloud cavitation is a significant source of unwanted noise, erosion and performance det...
The development and collapse of cloud cavitation and its link to surface erosion within a transparen...
International audienceHydrodynamic cavitation represents complex physical phenomenon undesirably aff...
Cavitating flow dynamics are investigated in an axisymmetric converging–diverging Venturi nozzle. Co...
Cavitating flow dynamics are investigated in an axisymmetric converging–diverging Venturi nozzle. Co...
The main goal of this master thesis is to reproduce by CFD computations the characteristic cavitatio...
The paper presents numerical and experimental investigations of the existence of two different physi...
Partial cavitation dynamics in an axisymmetric converging-diverging nozzle are investigated experime...
The injection of bubbles into an already cavitating flow is a way of influencing the typical cavitat...
Cavitation is a well-known phenomenon, occurring in a wide range of applications. In most applicatio...
International audienceThis paper presents a numerical study of an aperiodic cavitation pocket develo...
Cavitation is a well-known phenomenon, occurring in a wide range of applications. In most applicatio...
The unsteady cloud cavitation is a significant source of unwanted noise, erosion and performance det...
Abstract: The so-called ‘re-entrant jet’ is fundamental to periodic cloud shedding in partial cavita...
Partial cavitation dynamics in an axisymmetric converging-diverging nozzle are investigated experime...
The unsteady cloud cavitation is a significant source of unwanted noise, erosion and performance det...
The development and collapse of cloud cavitation and its link to surface erosion within a transparen...
International audienceHydrodynamic cavitation represents complex physical phenomenon undesirably aff...
Cavitating flow dynamics are investigated in an axisymmetric converging–diverging Venturi nozzle. Co...
Cavitating flow dynamics are investigated in an axisymmetric converging–diverging Venturi nozzle. Co...
The main goal of this master thesis is to reproduce by CFD computations the characteristic cavitatio...
The paper presents numerical and experimental investigations of the existence of two different physi...
Partial cavitation dynamics in an axisymmetric converging-diverging nozzle are investigated experime...
The injection of bubbles into an already cavitating flow is a way of influencing the typical cavitat...
Cavitation is a well-known phenomenon, occurring in a wide range of applications. In most applicatio...
International audienceThis paper presents a numerical study of an aperiodic cavitation pocket develo...
Cavitation is a well-known phenomenon, occurring in a wide range of applications. In most applicatio...
The unsteady cloud cavitation is a significant source of unwanted noise, erosion and performance det...
Abstract: The so-called ‘re-entrant jet’ is fundamental to periodic cloud shedding in partial cavita...
Partial cavitation dynamics in an axisymmetric converging-diverging nozzle are investigated experime...
The unsteady cloud cavitation is a significant source of unwanted noise, erosion and performance det...
The development and collapse of cloud cavitation and its link to surface erosion within a transparen...
International audienceHydrodynamic cavitation represents complex physical phenomenon undesirably aff...