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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Investigation of model parameters for high-resolution wind energy forecasting: Case studies over simple and complex terrain
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Investigation of model parameters for high-resolution wind energy forecasting: Case studies over simple and complex terrain

机译:高分辨率风能预测模型参数的研究:简单和复杂地形的案例研究

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Wind power forecasting, turbine micrositing, and turbine design require high-resolution simulations of atmospheric flow. Case studies at two West Coast North American wind farms, one with simple and one with complex terrain, are explored using the Weather Research and Forecasting (WRF) model. Both synoptically and locally driven events that include some ramping are considered. The performance of the model with different grid nesting configurations, turbulence closures, and grid resolutions is investigated through comparisons with observation data. For the simple terrain site, no significant improve- ment in the simulation results is found when using higher resolution. In contrast, for the complex terrain site, there is significant improvement when using higher resolution, but only during the locally driven event. This suggests the possibility that computational resources could be spared under certain conditions, for example when the topography is adequately resolved at coarser resolutions. Physical parameters such as soil moisture have a very large effect, but mostly for the locally forced events for both simple and complex terrain. The effect of the PBL scheme choice varies significantly depending on the meteorological forcing and terrain. On average, prognostic TKE equation schemes perform better than non-local eddy viscosity schemes.
机译:风力发电预测,涡轮微选址和涡轮设计需要对大气流动进行高分辨率模拟。使用“天气研究与预测”(WRF)模型对两个西海岸北美风电场的案例研究进行了研究,一个风电场简单,另一个风电场复杂。包括一些斜率的天气事件和局部事件均被考虑。通过与观测数据进行比较,研究了具有不同网格嵌套配置,湍流闭合和网格分辨率的模型的性能。对于简单的地形站点,当使用更高的分辨率时,在模拟结果中没有发现明显的改善。相比之下,对于复杂的地形站点,使用更高的分辨率时(仅在局部驱动事件期间)会显着改善。这表明在某些条件下(例如,在较粗的分辨率下可以充分解决地形问题时)可以节省计算资源的可能性。诸如土壤湿度之类的物理参数具有很大的影响,但主要针对简单和复杂地形的局部强迫事件。 PBL方案选择的效果根据气象强迫和地形的不同而有很大差异。平均而言,预后性TKE方程方案的性能优于非局部涡流粘度方案。

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