>
Fa   |   Ar   |   En
   effects of dimples as vortex cavities on the aerodynamic performance of darrieus vertical axis wind turbine  
   
نویسنده huang yuewen ,zhang lidong ,song changpeng ,tong guoqiang ,zhao yuze ,jiang tieliu ,meng xin
منبع journal of applied and computational mechanics - 2026 - دوره : 12 - شماره : 3 - صفحه:866 -878
چکیده    This paper investigates the aerodynamic performance enhancement of a straight-bladed vertical axis wind turbine (vawt) through dimple optimization. this study employs orthogonal experimental design (oed), a classical design of experiments (doe) methodology, to systematically analyze dimple parameters. initially, three key single-dimple parameters (diameter, position, depth) were investigated, followed by an extended dual-dimple configuration incorporating six parameters (x/c, d1, l1, d2, l2, s). the oed approach achieves optimization of these multi-factor, multi-level systems with minimal computational cost by scientifically selecting representative combinations from full factorial experiments. numerical simulations using the transition sst turbulence model demonstrated that the optimal dual-dimple design improved the pressure coefficient (cpe) by 114.9% and the cp of the optimal dual-dimple airfoil is 0.1227 for the numerical simulation at a tip speed ratio (tsr) of 3. the position x/c of dimple 1, with an fvalue of 2.729, was identified as the most influential parameter, exceeding the significance threshold of 2.25. the design effectively delayed dynamic stall and suppressed boundary layer separation, though performance gains diminished with additional dimples or higher tsr values. these findings provide valuable insights for optimizing vawt blade design through surface modifications.
کلیدواژه wind turbine ,dimple ,oed ,dynamic stall ,numerical simulation
آدرس northeast electric power university, school of energy and power engineering, china, northeast electric power university, school of energy and power engineering, china, northeast electric power university, school of energy and power engineering, china, nanjing university of aeronautics and astronautics, school of aerospace engineering, china, tianjin university, school of electrical automation and information engineering, china, northeast electric power university, school of energy and power engineering, china, huaneng jilin power generation co, china
پست الکترونیکی linglei@263.net
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved