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A stall-regulated wind turbine design to reduce fatigue

机译:失速调节的风力发电机设计,可减少疲劳

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Variable-speed stall-regulated (VS-SR) wind turbines can be designed to produce power as efficiently as variable-speed pitch-controlled (VS-PC) systems. However, amongst the main drawbacks of VS-SR systems high transient power and low predictability have been the primary factors in favour of adopting VS-PC system for multi-MW wind turbines. Cyclic and stochastic loads leading to fatigue failure is one of the prime considerations for large wind turbines. In contrast to the current trend of research, which is focused on load alleviation by integrating active flow controllers, this paper highlights the potential benefits of VS-SR wind turbines in reducing fatigue loads. Adopting the NREL 5 MW wind turbine as the baseline, blades are redesigned for stall-regulation. It is shown that a well-designed VS-SR wind turbine experiences significantly less fatigue loads compared to VS-PC systems. It also results in low power transients near and above rated wind speed. Taking into account added complexity, mass and maintenance costs of wind turbines utilising active flow controllers and in view of the recent progresses that have been made regarding the aeroelastic stability of stalled blades, VS-SR systems seem to have a role to play in the design of future wind turbines. (C) 2018 Elsevier Ltd. All rights reserved.
机译:变速失速调节(VS-SR)风力涡轮机可以设计成与变速变桨控制(VS-PC)系统一样高效地发电。然而,在VS-SR系统的主要缺点中,高瞬态功率和低可预测性一直是支持在多兆瓦风力涡轮机中采用VS-PC系统的主要因素。导致疲劳失效的周期性和随机载荷是大型风力涡轮机的主要考虑因素之一。与目前的研究趋势(通过集成主动流量控制器来减轻负载)相反,本文重点介绍了VS-SR风力涡轮机在降低疲劳负载方面的潜在优势。采用NREL 5 MW风力涡轮机作为基准,对叶片进行了重新设计以进行失速调节。结果表明,与VS-PC系统相比,设计良好的VS-SR风力涡轮机承受的疲劳负荷明显更少。它还会导致接近或高于额定风速的低功率瞬变。考虑到使用主动流量控制器的风力涡轮机增加的复杂性,质量和维护成本,并且鉴于失速叶片的气动弹性稳定性方面的最新进展,VS-SR系统似乎在设计中发挥了作用未来的风机。 (C)2018 Elsevier Ltd.保留所有权利。

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