Numerical evaluation of aerodynamic performances of vertical-axis wind turbine rotor with flow concentrator

J. Svorcan, Ognjen Peković, Toni Ivanov, M. Vorkapić
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Abstract

With wind energy extraction constantly increasing, the interest in small-scale urban wind turbines is also expanding. Given that these machines often work in adverse operating conditions (Earth’s boundary layer, vortex trails of surrounding objects, small and changeable wind speeds), additional elements that locally augment wind velocity and facilitate turbine start may be installed. This paper investigates possible benefits of adding an optimized flow concentrator to a vertical-axis wind turbine (VAWT) rotor. Three-dimensional, unsteady, turbulent, incompressible flow simulations of both isolated rotor consisting of three straight blades and a rotor with flow concentrator have been performed in ANSYS FLUENT by finite volume method for several different operational regimes. This type of flow simulations is challenging since flow angles are high, numerous flow phenomena and instabilities are present and the interaction between the blades and detached vortices can be significant. The rotational motion of the blades is solved by the unsteady Sliding Mesh (SM) approach. Flow field is modeled by Unsteady Reynolds Averaged Navier-Stokes (URANS) equations with k-ω SST turbulence model used for closure. Both quantitative and qualitative examinations of the obtained numerical results are presented. In particular, the two computed power coefficient curves are compared and the advantages of installing a flow concentrator are accentuated.
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带集中器的垂直轴风力机转子气动性能数值评价
随着风能开采的不断增加,对小型城市风力发电机的兴趣也在扩大。考虑到这些机器经常在不利的操作条件下工作(地球的边界层,周围物体的涡旋轨迹,小而多变的风速),可以安装额外的元件来局部增加风速并促进涡轮机启动。本文研究了在垂直轴风力发电机(VAWT)转子上增加一个优化的集流器可能带来的好处。在ANSYS FLUENT软件中,采用有限体积法对由三直叶片组成的隔离转子和带聚流器的隔离转子进行了不同工况下的三维非定常、湍流和不可压缩流动模拟。这种类型的流动模拟具有挑战性,因为流动角很大,存在许多流动现象和不稳定性,并且叶片与分离涡之间的相互作用可能很重要。采用非定常滑动网格法求解叶片的旋转运动。流场采用非定常Reynolds平均Navier-Stokes (URANS)方程,k-ω海表温度湍流模型作为闭合。对所得到的数值结果进行了定量和定性检验。特别对两种功率系数计算曲线进行了比较,强调了安装集流器的优点。
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