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首页> 外文期刊>Theoretical and applied climatology >Evaluation of an atmospheric model with surface and ABL meteorological data for energy applications in structured areas
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Evaluation of an atmospheric model with surface and ABL meteorological data for energy applications in structured areas

机译:利用表面和ABL气象数据评估大气模型以用于结构化区域的能源应用

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摘要

This paper provides the performance evaluation of the meteorological component of The Air Pollution Model (TAPM), a nestable prognostic model, in predicting meteorological variables in urban areas, for both its surface layer and atmospheric boundary layer (ABL) turbulence parameterizations. The model was modified by incorporating four urban land surface types, replacing the existing single urban surface. Control runs were carried out over the wider area of Kozani, an urban area in NW Greece. The model was evaluated for both surface and ABL meteorological variables by using measurements of near-surface and vertical profiles of wind and temperature. The data were collected by using monitoring surface stations in selected sites as well as an acoustic sounder (SOnic Detection And Ranging (SODAR), up to 300m above ground) and a radiometer profiler (up to 600m above ground). The results showed the model demonstrated good performance in predicting the near-surface meteorology in the Kozani region for both a winter and a summer month. In the ABL, the comparison showed that the model's forecasts generally performed well with respect to the thermal structure (temperature profiles and ABL height) but overestimated wind speed at the heights of comparison (mostly below 200m) up to 3-4ms(-1).
机译:本文对可嵌套的预测模型“空气污染模型”(TAPM)的气象组成部分进行性能评估,以预测城市地区的气象变量,包括其表层和大气边界层(ABL)湍流参数化。该模型通过合并四种城市土地表面类型进行了修改,以替换现有的单一城市表面。在希腊西北部城市Kozani的较广区域进行了控制运行。通过使用风和温度的近地表和垂直剖面的测量值,对模型的表面和ABL气象变量进行了评估。数据是通过使用选定地点的监测地面站以及声音探测仪(声波探测和测距(SODAR),距离地面不超过300m)和辐射计轮廓仪(距离地面不超过600m)来收集的。结果表明,该模型在冬季和夏季月份的Kozani地区近地面气象预报方面均表现出良好的性能。在ABL中,比较表明,模型的预测通常在热结构(温度分布和ABL高度)方面表现良好,但在高达3-4ms(-1)的比较高度(大部分低于200m)上高估了风速。

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