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CFD Study of Flow Field Velocities and 3D Effects over the MEXICO Wind Turbine Model

机译:墨西哥风力涡轮机模型的流场速度和3D效果的CFD研究

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The deep understanding about wake field and 3D effects of wind turbines are still a challenge, due to the complexity of the three-dimensional flow which blades rotation produces. In this work an aerodynamic analysis about wind turbine model MEXICO is realized, firstly of axial distribution of velocities in several regions inside the streamtube and then some estimations of 3D effects, either lift coefficient augmentation or stall delay phenomenon. CFD-RANS simulations have been carried out at three different wind speeds, and results are compared to experimental data of the MEXICO project, from wind tunnel tests. Results show that axial and radial inductions are greater for outer sections and lower as wind speed increases, providing different wake configurations. As for the 3D effects, it is found that rotational augmentation appears firstly for inner part of the blade and they advance progressively towards span-wise direction as wind velocity grows. For inner section, at high wind speed, lift coefficient increase reaches to values of 50% over the corresponding 2D polar curve.
机译:由于叶片旋转产生的三维流的复杂性,对风力涡轮机的尾流场和3D效果的深入了解仍然是一个挑战。在这项工作中,对风轮机模型MEXICO进行了空气动力学分析,首先是对流管内部多个区域的速度进行轴向分布,然后对3D效果(升力系数增大或失速延迟现象)进行一些估算。在三种不同的风速下进行了CFD-RANS模拟,并将结果与​​MEXICO项目的实验数据(通过风洞测试)进行了比较。结果表明,轴向和径向感应在外部区域更大,随着风速的增加而减小,从而提供了不同的尾流构造。至于3D效果,发现旋转增强首先出现在叶片的内部,并且随着风速的增加,它们逐渐朝翼展方向前进。对于内部区域,在高风速下,升力系数在相应的2D极坐标曲线上达到50%的值。

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