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CFD study on the impact of yawed inflow on loads, power and near wake of a generic wind turbine

机译:CFD研究偏航流入对通用风力发电机的负荷,功率和近尾流的影响

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This article deals with the influence of yawed inflow conditions on the performance of a single generic 2.4MW wind turbine. It presents the results of studies performed at the Institute of Aerodynamics and Gas Dynamics by means of computational fluid dynamics, using a fully meshed wind turbine with all boundary layers being resolved. The block-structured flow solver FLOWer is used; a dual-time stepping method for temporal discretization and a second-order Jameson-Schmidt-Turkel method for the calculation of the convective fluxes are applied. All simulations are carried out using a detached eddy simulation approach. In detail, two different wind speeds and a yaw angle range between -50 degrees and +50 degrees are evaluated in the paper. Based on these data, it is shown that the reduction of power output follows a cosine to the power of X function of the yaw angle. Furthermore, the growing azimuthal non-uniformity of the load distributions with increasing yaw angle magnitude is analysed by spanwise load distributions. As a central influence on the load distributions, the advancing and retreating blade effect is identified. Moreover, the deflection of the wake as a result of the inflow is investigated, and the deflection angles are compared with a modelling approach. A connection line between wake deflection and load asymmetry is drawn. The results are of particular importance for wind park situations with downstream turbines facing the distorted inflow created from upstream ones. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:本文讨论偏航流入条件对单个通用2.4MW风力发电机性能的影响。它显示了在空气动力学和气体动力学研究所通过计算流体动力学方法使用全网格风力涡轮机解决了所有边界层的研究结果。使用块结构的流量求解器FLOWer;应用了用于时间离散的双重时间步进方法和用于计算对流通量的二阶Jameson-Schmidt-Turkel方法。所有模拟均使用独立的涡流模拟方法进行。详细地,本文评估了两种不同的风速和偏航角范围介于-50度和+50度之间。基于这些数据,显示出功率输出的减小遵循偏航角的X函数的幂的余弦。此外,通过翼展方向载荷分布分析了随着偏航角幅度增加载荷分布的方位角不均匀性增加。作为对载荷分布的主要影响,确定了前进和后退叶片效应。此外,研究了由于流入导致的尾流偏转,并将偏转角与建模方法进行了比较。绘制了尾流偏转和负载不对称之间的连接线。该结果对于风电场情况尤其重要,因为下游涡轮机面对上游涡轮机产生的扭曲流入。版权所有(c)2016 John Wiley&Sons,Ltd.

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