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Wind in Complex Terrain - Lidar Measurements for Evaluation of CFD Simulations

机译:复杂地形中的风 - 用于评估CFD模拟的激光雷达测量

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摘要

Computational Fluid Dynamics (CFD) is widely used to predict wind conditions for wind energy production purposes. However, as wind power development expands into areas of even more complex terrain and challenging flow conditions, more research is needed to investigate the ability of such models to describe turbulent flow features. In this study, the performance of a hybrid Reynolds-Averaged Navier-Stokes (RANS)/Large Eddy Simulation (LES) model in highly complex terrain has been investigated. The model was compared with measurements from a long range pulsed Lidar, which first were validated with sonic anemometer data. The accuracy of the Lidar was considered to be sufficient for validation of flow model turbulence estimates. By reducing the range gate length of the Lidar a slight additional improvement in accuracy was obtained, but the availability of measurements was reduced due to the increased noise floor in the returned signal. The DES model was able to capture the variations of velocity and turbulence along the line-of-sight of the Lidar beam but overestimated the turbulence level in regions of complex flow.
机译:计算流体动力学(CFD)被广泛用于预测风况,以产生风能。但是,随着风能的发展扩展到更复杂的地形和具有挑战性的流动条件的地区,需要更多的研究来研究这种模型描述湍流特征的能力。在这项研究中,研究了在高度复杂的地形中混合的雷诺平均Navier-Stokes(RANS)/大涡模拟(LES)模型的性能。该模型与远程脉冲激光雷达的测量结果进行了比较,首先使用声波风速计数据对其进行了验证。激光雷达的精度被认为足以验证流动模型的湍流估计。通过减小激光雷达的距离门长度,可以在精度上稍有提高,但是由于返回信号的本底噪声增加,因此测量的可用性降低了。 DES模型能够捕获沿激光雷达光束视线的速度和湍流的变化,但是高估了复杂流动区域的湍流水平。

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