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Numerical simulation and prediction of spatial wind field under complex terrain

机译:复杂地形下空间风场的数值模拟与预测

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摘要

A computational fluid dynamics numerical simulation of a spatial wind field under a complex terrain was conducted, and a prediction model of wind characteristics was proposed based on the correlation of simulation results. A large eddy simulation turbulent model was employed to simulate the behavior of the turbulent flow of the spatial wind field by using OpenFOAM 4.0. Then, the prediction model of the spatial wind field was established according to the "triangle edge angle relationship" for the mean wind velocity and spatial correlation analysis for the fluctuating wind velocity. The predicted model was further validated by simulation velocity time histories, reaching good agreement with the simulated results, which indicated that the predicted model had a higher precision. Finally, the proposed model was utilized to predict natural wind field characteristics, and they were compared with field measurement data acquired from ultrasonic anemometers. A comparison of the fluctuating wind velocity time histories, mean wind speeds, and fluctuating wind velocity spectra indicated that the predicted model was practical.
机译:在复杂地形下的空间风场的计算流体动力学数值模拟,基于模拟结果的相关性提出了风特性的预测模型。采用大型涡旋仿真湍流模型来模拟空间风场的湍流流动通过使用OpenFoam 4.0的行为。然后,根据波动风速的平均风速和空间相关分析建立空间风场的预测模型。通过模拟速度时间历史进一步验证了预测模型,达到了与模拟结果良好的吻合,这表明预测模型具有更高的精度。最后,利用所提出的模型来预测自然风场特征,与从超声波风管获取的现场测量数据进行比较。波动风速时间历史,平均风速和波动风速光谱的比较表明预测模型是实用的。

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