论文标题

垂直轴风力涡轮机的动态失速困境

The dynamic stall dilemma for vertical-axis wind turbines

论文作者

Fouest, Sébastien Le, Mulleners, Karen

论文摘要

垂直轴风力涡轮机(VAWT)是补充传统风力涡轮机并增加总风能的出色候选者。 VAWT的发展受到其低效率和结构性不可靠性的阻碍,这与动态失速的发生有关。动态摊位包括大规模动态摊位涡流的形成,生长和脱落,然后进行大规模流动分离。涡流脱落不利于涡轮机的效率,并引起明显的载荷波动,从而危及涡轮机的结构完整性。我们提出了在VAWT刀片上的动态失速的全面实验表征,包括时间分辨载荷和速度场测量值。沃特(Vawt)面临的困境特别注意以较低的尖端速度比率运行,以最大程度地提高其峰值空气动力学性能,但会体验动态失速,或者以降低其峰值性能为代价避免动态失速。根据结果​​,我们将涡轮机的工作条件映射到三个制度之一:深摊,灯摊和无摊位。光摊位方案在动态失速困境中提供了最佳折衷,因为它在上风和下风旋转过程中产生了正切向力,并且与深层失速状态相比,载荷瞬变瞬变了75%。

Vertical-axis wind turbines (VAWT) are excellent candidates to complement traditional wind turbines and increase the total wind energy capacity. Development of VAWT has been hampered by their low efficiency and structural unreliability, which are related to the occurrence of dynamic stall. Dynamic stall consists of the formation, growth, and shedding of large-scale dynamic stall vortices, followed by massive flow separation. The vortex shedding is detrimental to the turbine's efficiency and causes significant load fluctuations that jeopardise the turbine's structural integrity. We present a comprehensive experimental characterisation of dynamic stall on a VAWT blade including time-resolved load and velocity field measurements. Particular attention is dedicated to the dilemma faced by VAWT to either operate at lower tip-speed ratios to maximise their peak aerodynamic performance but experience dynamic stall, or to avoid dynamic stall at the cost of reducing their peak performance. Based on the results, we map turbine operating conditions to one of three regimes: deep stall, light stall, and no stall. The light stall regime offers VAWT the best compromise in the dynamic stall dilemma as it yields positive tangential forces during the upwind and downwind rotation and reduces load transients by 75% compared to the deep stall regime.

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