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An Examination of the Taikoyama Wind Farm Nacelle Separation Accident Using a CFD Approach

机译:使用CFD方法检查太鼓山风电场机舱分离事故

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摘要

Because a significant portion of the topography of Japan is characterized by steep, complex terrain, which results in a complex spatial distribution of wind speed, great care is necessary for selecting a site for the construction of wind turbines. We have developed a computational fluid dynamics (CFD) model for unsteady flow called Research Institute for Applied Mechanics, Kyushu University, COMputational Prediction of Airflow over Complex Terrain (RIAM-COMPACT®). The RIAM-COMPACT® CFD model is based on the large-eddy simulation (LES) technique. In this paper, a numerical wind simulation for the Taikoyama Wind Farm is performed using high-resolution terrain elevation data. The results suggest that all six wind turbines at the Taikoyama Wind Farm are subject to significant influence from separated flow (terrain-induced turbulence) which is generated due to the topographical irregularities in the vicinity of the wind turbines. A proposal has been also made on reconstruction of the wind farm.
机译:由于日本大部分地形的特征是陡峭,复杂的地形,导致风速的空间分布复杂,因此在选择建造风力涡轮机的地点时必须格外小心。我们开发了一种用于非恒定流的计算流体动力学(CFD)模型,称为九州大学应用力学研究所,对复杂地形上的气流进行计算机预测(RIAM-COMPACT®)。 RIAM-COMPACT®CFD模型基于大涡模拟(LES)技术。在本文中,使用高分辨率的地形高程数据对Taikoyama Wind Farm进行了数值风模拟。结果表明,Taikoyama风电场的所有六个风力涡轮机都受到分离流(地形引起的湍流)的重大影响,该分离流是由于风力涡轮机附近的地形不规则而产生的。还提出了关于重建风电场的建议。

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