A computational model for the hydrodynamic analysis of horizontal axis marine current turbines is presented. The methodology is an original extension of a Boundary Integral Equation Method (BIEM) for inviscid flows to describe the flow features that characterize hydrokinetic turbines. To this purpose, semi-analytical trailing wake and viscous-flow correction models are introduced. A validation study is performed by comparing hydrodynamic performance predictions with experimental data on a model turbine with variable pitch blades. The capability of the proposed methodology to correctly describe turbine thrust and power over a full range of operating conditions is demonstrated. Viscosity effects associated to blade flow separation and stall are predicted and thrust and power are comparable with results of blade element methods that are largely used in the design of marine current turbines.
Viene presentato un modello numerico per l'analisi idrodinamica di turbine ad asse orizzontale. La metodologia estende il metodo agli elementi di contorno (BIEM) per flussi non viscosi per la descrizione del flusso che caratterizza le turbine idrocinetiche. Sono introdotte a tal scopo modelli semi-analitici di scia e di correzione della viscosità del flusso. La validazione viene eseguita mediante confronti delle prestazioni idrodinamiche simulate con dati sperimentali di un modello di turbina per differenti condizioni di passo di pala. Viene dimostrata la capacità della presente metodologia di descrivere accuratamente la spinta e la potenza nell'arco completo di condizioni operative. Gli effetti della viscosità del flusso associati alla separazione del flusso sulla pala e allo stallo sono considerati, con la spinta e la potenza confrontabili con i risultati mediante modelli agli elementi di pala che sono largamente usati nella progettazione di turbine per correnti marine.
Generalised Boundary Element Method to Analyse Marine Current Turbines Hydrodynamics Including Flow Separation and Stall
Salvatore Francesco;Calcagni Danilo
2017
Abstract
A computational model for the hydrodynamic analysis of horizontal axis marine current turbines is presented. The methodology is an original extension of a Boundary Integral Equation Method (BIEM) for inviscid flows to describe the flow features that characterize hydrokinetic turbines. To this purpose, semi-analytical trailing wake and viscous-flow correction models are introduced. A validation study is performed by comparing hydrodynamic performance predictions with experimental data on a model turbine with variable pitch blades. The capability of the proposed methodology to correctly describe turbine thrust and power over a full range of operating conditions is demonstrated. Viscosity effects associated to blade flow separation and stall are predicted and thrust and power are comparable with results of blade element methods that are largely used in the design of marine current turbines.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


