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首页> 外文期刊>Revista Brasileira de Meteorologia >Study of the Thermal Internal Boundary Layer in Sea Breeze Conditions Using Different Parameterizations: Application of the WRF Model in the Greater Vitória Region
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Study of the Thermal Internal Boundary Layer in Sea Breeze Conditions Using Different Parameterizations: Application of the WRF Model in the Greater Vitória Region

机译:使用不同的参数研究海风条件下的热内部边界层:WRF模型在大维多利亚地区的应用

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摘要

In the present study, the physical parameterizations of the Weather Research and Forecasting (WRF) model are verified for making accurate inferences about the dynamics of the Thermal Internal Boundary Layer (TIBL) generated by sea breeze in an urban center with an island in a bay along a coastal region with rugged topography. The simulations were performed using parameterizations from Yonsei University (YSU), Mellor-Yamada-Janjic (MYJ) and Asymmetric Convective Model version 2 (ACM2) for the atmospheric boundary layer (ABL) and Noah and Rapid Update Cycle (RUC) for the Land Surface Model (LSM). The data inferred by the WRF model were compared with those obtained by a Surface Meteorological Station (SMS) and by measurements generated using Light Detection and Ranging (LIDAR), Sonic Detection and Ranging (SODAR) and radiosonde. The simulations showed that although the object of this research was a region with high geographical complexity, the YSU parameterization set (non-local closure) for the ABL and the Noah parameterization for the LSM presented satisfactory results in determining ABL height generated by the sea breeze on the day in question.
机译:在本研究中,对天气研究和预报(WRF)模型的物理参数设置进行了验证,以便对由海风在具有海湾的岛屿的城市中心产生的热内部边界层(TIBL)的动力学做出准确的推断。沿海地区地形崎。使用来自延世大学(YSU),Mellor-Yamada-Janjic(MYJ)和大气边界层(ABL)和Noah的非对称对流模型版本2(ACM2)的参数化进行了模拟,并针对土地进行了Noah和快速更新周期(RUC)表面模型(LSM)。通过WRF模型推断的数据与通过地面气象站(SMS)以及通过使用光探测与测距(LIDAR),声波探测与测距(SODAR)和探空仪产生的测量结果进行了比较。模拟表明,尽管本研究的目标是一个地理复杂性高的地区,但ABL的YSU参数化集(非局部封闭)和LSM的Noah参数化在确定海风产生的ABL高度方面提供了令人满意的结果在相关日期。

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