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Aerodynamic Analysis of a Novel Wind Turbine for an Omni-flow Wind Energy System

机译:一种用于全流量风能系统的新型风力发电机的气动分析

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摘要

The purpose of this research is to propose a novel wind turbine for an omni-flow wind energy system and investigate its aerodynamic performance. The geometry of the novel wind turbine is based upon the impulse turbine technology which has been successful in wave energy. In this study, both numerical and experimental studies were conducted to evaluate the aerodynamic features of this wind turbine. The numerical method was validated by a comparison between numerical and experimental results over a range of tip speed ratios.udResults obtained from experiments and simulations indicate that the proposed wind turbine can be employed. Additionally, on the basis of the analyses performed, this new wind turbine has the potential for having a good startup feature, which means that this wind turbine can be suitable for applications in an urban environment. As an important component, the stator of this wind turbine can increase the passing flow velocity by 20%. Meanwhile, the passing flow direction also can be optimised by the stator.udAerodynamics of the wind turbine was analysed under the non-uniform flow condition, because the flow is non-uniform inside the omni-flow wind energy system. It was found that the maximum power coefficient of such a turbine under the non-uniform flow condition is lower than that under the uniform flow condition. Due to the non-uniform flow, the blades experience different flow velocities, and as a consequence, undergo different aerodynamic loads during one operation cycle. Thus the generated torque and thrust on a blade are subjected to frequent and periodical changes.udInfluences of the geometrical parameters on the aerodynamic characteristics of this wind turbine were investigated. From the initial study, it was found that changes of hub-to-tip ratios, numbers of blades, aerofoils and numbers of guide vanes, can significantly affect theudIIudpower performance. Additionally, the wind turbine obtained high values of maximum torque coefficients with changing geometrical parameters.
机译:这项研究的目的是提出一种用于全流风能系统的新型风力涡轮机,并研究其空气动力性能。新型风力涡轮机的几何形状基于在波浪能方面已经成功的脉冲涡轮技术。在这项研究中,进行了数值和实验研究,以评估该风力涡轮机的空气动力特性。通过在一定的叶尖速比范围内将数值与实验结果进行比较,验证了该数值方法的有效性。此外,根据执行的分析,这种新型风力发电机具有良好的启动功能,这意味着该风力发电机可适用于城市环境。作为重要组成部分,该风力涡轮机的定子可以使通过流速增加20%。同时,定子也可以优化通过的流向。 ud在非均匀流动条件下分析了风力涡轮机的空气动力学特性,因为在全流风能系统内部流动是不均匀的。已经发现,这种涡轮机在非均匀流动条件下的最大功率系数低于在均匀流动条件下的最大功率系数。由于流量不均匀,叶片会经历不同的流速,因此在一个操作周期内叶片会承受不同的空气动力学负荷。因此,叶片上产生的扭矩和推力会频繁且周期性地变化。 ud研究了几何参数对这种风力涡轮机空气动力学特性的影响。从最初的研究中发现,轮毂尖端比,叶片数量,翼型和导向叶片数量的变化会显着影响 udII udpower性能。另外,风力涡轮机在几何参数变化的情况下获得了最大扭矩系数的高值。

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    Ying Pei;

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  • 年度 2016
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