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RANS computations for identification of 1-D cavitation model parameters: application to full load cavitation vortex rope


 
 
Contact   Münch Cécile
 
Title   RANS computations for identification of 1-D cavitation model parameters: application to full load cavitation vortex rope
 
Author(s)   Alligné S., Decaix J., Müller A., Nicolet C., Avellan F., Münch C.
 
References   Journal of Physics: Conference Series, 813, 12032
 
Url   https://www.researchgate.net/publication/315976111_RANS_computations_for_identification_of_1-D_cavitation_model_parameters_application_to_full_load_cavitation_vortex_rope
 
Abstract   Due to the massive penetration of alternative renewable energies, hydropower is a key energy conversion technology for stabilizing the electrical power network by using hydraulic machines at off design operating conditions. At full load, the axisymmetric cavitation vortex rope developing in Francis turbines acts as an internal source of energy, leading to an instability commonly referred to as self-excited surge. 1-D models are developed to predict this phenomenon and to define the range of safe operating points for a hydropower plant. These models require a calibration of several parameters. The present work aims at identifying these parameters by using CFD results as objective functions for an optimization process. A 2-D Venturi and 3-D Francis turbine are considered.
 
 
 
 
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