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Improving safety and performance of small-scale vertical axis wind turbines

机译:提高小规模垂直轴风力涡轮机的安全性和性能

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Although horizontal axis wind turbines (HAWT) are considered more efficient in operation than their vertical axis wind turbine (VAWT) counterpart and are more commonly used in wind farms as large wind turbines, the VAWT may offer greater advantages in safety and operation when it comes to their application within the urban environment. Yaw control systems are an essential requirement for the safe operation of HAWT, which are costly and require high levels of maintenance, but are inherently unnecessary for VAWT. At low blade speed ratios, the performance of VAWT degrades owing to strong dynamic stall effects. This necessitates VAWT operation at high blade speed ratios to suppress them. However, the consequent large rotational speeds lead to hazardous operation especially in confined urban areas. Thus to improve the low blade speed performance, a preliminary experimental investigation has been carried out at the Aerodynamics Laboratory of the University of New South Wales on an H-type VAWT blade that employed zero-net mass flux actuation. This technique has traditionally been used for static stall delay and flow separation mitigation on aircraft wings. In the present study, large relative angles of incidence were simulated by sinusoidally oscillating the blade about its quarter-chord, and resulted in the formation of dynamic stall vortices. The application of zero-net mass flux actuation was found to have a beneficial effect on the blade aerodynamic performance by either suppressing dynamic stall or delaying its onset to higher angles of attack. This study, therefore, suggests thai reduced oscillatory loads and more robust output power can be achieved with zero-net mass flux actuation on VAWT operating at low blade-speed ratios. Consequently, the findings have positive practical implications for the design of small-scale VAWT for widespread use in the urban environment.
机译:虽然横轴风力涡轮机(HAWT)在操作中被认为比其垂直轴风力涡轮机(VAWT)对应更有效,但是在风电场中更常用于大型风力涡轮机,因此VAWT可以在安全性和操作方面提供更大的优势他们在城市环境中的应用。偏航控制系统是HAWT安全操作的基本要求,这是昂贵的,并且需要高级别的维护,但是VAWT本质上不必要。在低叶片速度比下,由于强大的动态失速效应,VAWT的性能降低。这需要在高刀片速度比下进行VAWT操作以抑制它们。然而,随之而来的大型转速导致危险操作,特别是在狭窄的城市地区。因此,为了提高低刀片速度的性能,在新南威尔士大学的空气动力学实验室对零净质量助焊剂作用的H型VAWT刀片进行了初步实验研究。传统上,该技术已被用于飞机翼的静态失速延迟和流分离缓解。在本研究中,通过对其四分之一和弦围绕刀片振荡刀片来模拟大的相对角度,并导致形成动态失速涡流。发现零净质量磁通致动的应用对叶片空气动力学性能具有抑制动态失速或延迟其发作到更高的攻击角度具有有益的影响。因此,这项研究表明泰语降低了振荡负载,并且可以在低叶片速度比下运行的VAWT零净质量磁通作用来实现更强大的输出功率。因此,该研究结果对城市环境广泛使用的小规模VAWT设计具有积极的实际影响。

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