A one-dimensional hydroacoustic model is set up to perform the numerical simulation of the rotor-stator interaction of a Francis pump-turbine scaled model. The numerical results enable to identify both rotating diametrical modes in the vaneless gap between the 20 guide vanes interacting with the 9 rotating impeller blades and the standing waves in the spiral casing. Moreover, the simulations enlighten the interaction between these rotating diametrical modes and the standing waves. Finally, the parametric study of the influence of the guide vane thickness, the wave speed and rotational speed emphasizes the predominant role of the eigen frequencies of the hydraulic system
A numerical simulation has been carried out to analyze the modal behavior of a reduced scale pump-tu...
In order to understand the complex nature of the system dynamic phenomena, such as the strong vibrat...
With growing environmental awareness, power producers turn their attention to renewable energy sour...
A one-dimensional hydroacoustic model is set up to perform the numerical simulation of the rotor-sta...
A one-dimensional hydroacoustic model is set up to perform the numerical simulation of the rotor-sta...
Investigation of the rotor-stator interactions of a reduced-scale model 0.19 ν= pump-turbine in gene...
In a centrifugal pump the interaction between the rotating impeller pressure field and the stationar...
Renewable energy sources are becoming an integral part of the global energy mix. As hydropower can b...
As energy demand is growing along with the quest for green energy the operating range for hydropower...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
Several breakdowns in hydropower plants with low specific speed Francis runners have been reported. ...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
Natural frequencies estimation of Francis turbines is of paramount importance in the stage of design...
A numerical simulation has been carried out to analyze the modal behavior of a reduced scale pump-tu...
In order to understand the complex nature of the system dynamic phenomena, such as the strong vibrat...
With growing environmental awareness, power producers turn their attention to renewable energy sour...
A one-dimensional hydroacoustic model is set up to perform the numerical simulation of the rotor-sta...
A one-dimensional hydroacoustic model is set up to perform the numerical simulation of the rotor-sta...
Investigation of the rotor-stator interactions of a reduced-scale model 0.19 ν= pump-turbine in gene...
In a centrifugal pump the interaction between the rotating impeller pressure field and the stationar...
Renewable energy sources are becoming an integral part of the global energy mix. As hydropower can b...
As energy demand is growing along with the quest for green energy the operating range for hydropower...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
Several breakdowns in hydropower plants with low specific speed Francis runners have been reported. ...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
The paper presents a detailed numerical model of the dynamic behaviour of a Francis turbine installe...
Natural frequencies estimation of Francis turbines is of paramount importance in the stage of design...
A numerical simulation has been carried out to analyze the modal behavior of a reduced scale pump-tu...
In order to understand the complex nature of the system dynamic phenomena, such as the strong vibrat...
With growing environmental awareness, power producers turn their attention to renewable energy sour...