>
Fa   |   Ar   |   En
   numerical investigation of turbulent flow around a recent horizontal axis wind turbine using low and high reynolds models  
   
نویسنده bouhelal a. ,smaili a. ,guerri o. ,masson c.
منبع journal of applied fluid mechanics - 2018 - دوره : 11 - شماره : 1 - صفحه:151 -164
چکیده    The effects of different reynolds averaged navier stokes (rans) turbulence models on two near-wall approaches using high and low reynolds models on predicting performance of horizontal axis wind turbines (hawts) were studied for a range of wind conditions where flow over the rotor varied from fully attached to massively separated flow. this paper's main contribution is in establishing which rans models can produce quantitatively reliable numerical predictions of turbulent flow around wind turbine rotors. the authors used measurements done by the new mexico (model rotor experiments in controlled conditions) project in the german dutch wind tunnels (dnw) in order to validate and test cfd (computational fluid dynamic) codes. four different rans turbulence models were considered: spalart-allmaras; k − ε (rng); k − ω sst; and the transition γ-reθ model. at low wind speeds, it was found that all four models were good predictors of aerodynamic performance, and at high wind speeds, where the swirl effect was modeled using wall function corrections in both equations, the k − ε model was considered to be the best model: it was the most accurate within a reasonable computational time.
کلیدواژه aerodynamic analysis; hawt; cfd; turbulence modeling; rans; low and high reynoldsmodels; near-wall treatment; new mexico measurement
آدرس école nationale polytechnique, department of mechanical engineering, mechanical engineering and development laboratory, algeria, école nationale polytechnique, mechanical engineering and development laboratory, algeria, centre de développement des énergies renouvelables, algeria, école de technologie supérieure, department of mechanical engineering, canada
پست الکترونیکی christian.masson@etsmtl.ca
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved