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Multi-element ducts for ducted wind turbines: a numerical study

机译:用于管道风力涡轮机的多元素管道:数值研究

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Multi-element ducts are used to improve the aerodynamic performance of ducted wind turbines?(DWTs). Steady-state, two-dimensional computational fluid dynamics?(CFD) simulations are performed for a multi-element duct geometry consisting of a duct and a flap; the goal is to evaluate the effects on the aerodynamic performance of the radial gap length and the deflection angle of the flap. Solutions from inviscid and viscous flow calculations are compared. It is found that increasing the radial gap length results in an augmentation of the total thrust generated by the DWT, whereas a larger deflection angle has an opposite effect. Reasonable to good agreement is seen between the inviscid and viscous flow calculations, except for multi-element duct configurations characterized by large flap deflection angles. The viscous effects become stronger at large flap deflection angles, and the inviscid calculations are incapable of taking this phenomenon into account.
机译:多元素管道用于改善管道风力涡轮机的空气动力学性能?(DWTS)。稳态,二维计算流体动力学?(CFD)模拟,用于由管道和襟翼组成的多元素管道几何形状;目标是评估对径向间隙长度的气动性能和襟翼的挠曲角度的影响。比较来自粘性和粘性流量计算的解决方案。发现增加径向间隙长度导致由DWT产生的总推力的增强,而较大的偏转角具有相反的效果。在没有大的翻盖偏转角度的多元素管道配置外,可以在不合格和粘性流动计算之间看到合理的良好协议。粘性效果在大的翻盖偏转角度变得更强,并且无法考虑到托运分析。

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