This work presents a detailed analysis of the three-dimensional flows in a Pump-as-Turbine (PaT). The flow field is studied through URANS simulations and a velocity vector analysis. Moreover, a prediction model is used to forecast the performance of the PaT. The results of these methodologies were validated using experimental results. Flow rate and head at Best Efficiency Point (BEP) in turbine mode were 27% and 41% higher than the ones in pump mode, respectively; the mechanical efficiency was 4% lower. To give a fluid flow interpretation of this behaviour, velocity triangles in turbine mode were analytically calculated, as well as numerically evaluated. The analytically identified PaT flow rate at BEP is in agreement with CFD and measureme...
The aim of this work is to propose a predicting model for evaluating Pump-as-Turbines' (PaTs) perfor...
Abstract: Vaneless centrifugal pumps are reversible turbomachines that can operate also as centripet...
Among the most used hydraulic machines in the small-scale hydropower sector, Pump-as-Turbine (PaT) t...
This work presents a detailed analysis of the three-dimensional flows in a Pump-as-Turbine (PaT). Th...
Lecturepg. 21This paper deals with pump as turbine (PAT) as a feasible solution to the energy proble...
A Pump as Turbine (PAT) is one of micro hydro system components that is used to substitute a commerc...
In this work, an extensive assessment of a predicting model used to evaluate Pumps-as-Turbines’ (PaT...
Energy contributes significantly in almost all aspects of human life as well as economic activities ...
The instability of the no-load working condition of the pump turbine directly affects the grid conne...
Pumps as turbines (PATs) are the typical solution for electrification using micro hydropower plants ...
The wide use of pumps and turbines has significant value in energy conservation and utilization. In ...
Velocity profiles originated by a pump as turbine (PAT) were measured using an ultrasonic doppler ve...
This work presents a model based on analytical equations to identify the Best Efficiency Point (BEP)...
Small and micro hydropower systems represent an attractive solution for generating electricity at lo...
The aim of this work is to propose a predicting model for evaluating Pump-as-Turbines' (PaTs) perfor...
Abstract: Vaneless centrifugal pumps are reversible turbomachines that can operate also as centripet...
Among the most used hydraulic machines in the small-scale hydropower sector, Pump-as-Turbine (PaT) t...
This work presents a detailed analysis of the three-dimensional flows in a Pump-as-Turbine (PaT). Th...
Lecturepg. 21This paper deals with pump as turbine (PAT) as a feasible solution to the energy proble...
A Pump as Turbine (PAT) is one of micro hydro system components that is used to substitute a commerc...
In this work, an extensive assessment of a predicting model used to evaluate Pumps-as-Turbines’ (PaT...
Energy contributes significantly in almost all aspects of human life as well as economic activities ...
The instability of the no-load working condition of the pump turbine directly affects the grid conne...
Pumps as turbines (PATs) are the typical solution for electrification using micro hydropower plants ...
The wide use of pumps and turbines has significant value in energy conservation and utilization. In ...
Velocity profiles originated by a pump as turbine (PAT) were measured using an ultrasonic doppler ve...
This work presents a model based on analytical equations to identify the Best Efficiency Point (BEP)...
Small and micro hydropower systems represent an attractive solution for generating electricity at lo...
The aim of this work is to propose a predicting model for evaluating Pump-as-Turbines' (PaTs) perfor...
Abstract: Vaneless centrifugal pumps are reversible turbomachines that can operate also as centripet...
Among the most used hydraulic machines in the small-scale hydropower sector, Pump-as-Turbine (PaT) t...