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Numerical Study of Wake Characteristics in a Horizontal-Axis Hydrokinetic Turbine

机译:水平轴动水轮机尾流特性的数值研究

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摘要

Over the years most studies on wake characteristics have been devoted to wind turbines, while few works are related to hydrokinetic turbines. Among studies applied to rivers, depth and width are important parameters for a suitable design. In this work, a numerical study of the wake in a horizontal-axis hydrokinetic turbine is performed, where the main objective is an investigation on the wake structure, which can be a constraining factor in rivers. The present paper uses the Reynolds Averaged Navier Stokes (RANS) flow simulation technique, in which the Shear-Stress Transport (SST) turbulent model is considered, in order to simulate a free hydrokinetic runner in a typical river flow. The NREL-PHASE VI wind turbine was used to validate the numerical approach. Simulations for a 3-bladed axial hydrokinetic turbine with 10 m diameter were carried out, depicting the expanded helical behavior of the wake. The axial velocity, in this case, is fully recovered at 12 diameters downstream in the wake. The results are compared with others available in the literature and also a study of the turbulence kinetic energy and mean axial velocity is presented so as to assess the influence of proximity of river surface from rotor in the wake geometry. Hence, even for a single turbine facility it is still necessary to consider the propagation of the wake over the spatial domain.
机译:多年来,大多数关于尾流特性的研究都致力于风力涡轮机,而与水动力涡轮机相关的工作很少。在应用于河流的研究中,深度和宽度是进行适当设计的重要参数。在这项工作中,对水平轴水力透平涡轮中的尾流进行了数值研究,其主要目的是研究尾流结构,这可能是河流的制约因素。本文使用雷诺平均Navier Stokes(RANS)流动模拟技术,其中考虑了剪应力-运输(SST)湍流模型,以模拟典型河道中的自由水动力流道。 NREL-PHASE VI风力涡轮机用于验证数值方法。对直径为10 m的3叶片轴向水动涡轮进行了仿真,描绘了尾流的扩展螺旋行为。在这种情况下,轴向速度在尾流下游的12个直径处完全恢复。将该结果与文献中的其他结果进行了比较,并提出了湍流动能和平均轴向速度的研究,以便评估尾流几何形状中河面与转子之间的距离影响。因此,即使对于单个涡轮机设施,仍然有必要考虑尾流在空间域上的传播。

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