首页> 外文期刊>Pure and Applied Geophysics >Performance Evaluation of PBL Schemes of ARW Model in Simulating Thermo-Dynamical Structure of Pre-Monsoon Convective Episodes over Kharagpur Using STORM Data Sets
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Performance Evaluation of PBL Schemes of ARW Model in Simulating Thermo-Dynamical Structure of Pre-Monsoon Convective Episodes over Kharagpur Using STORM Data Sets

机译:使用STORM数据集模拟ARW模型的PBL方案在模拟Kharagpur季风前对流过程的热力结构中的性能

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摘要

In the present study, advanced research WRF (ARW) model is employed to simulate convective thunderstorm episodes over Kharagpur (22A degrees 30'N, 87A degrees 20'E) region of Gangetic West Bengal, India. High-resolution simulations are conducted using 1 x 1 degree NCEP final analysis meteorological fields for initial and boundary conditions for events. The performance of two non-local [Yonsei University (YSU), Asymmetric Convective Model version 2 (ACM2)] and two local turbulence kinetic energy closures [Mellor-Yamada-Janjic (MYJ), Bougeault-Lacarrere (BouLac)] are evaluated in simulating planetary boundary layer (PBL) parameters and thermodynamic structure of the atmosphere. The model-simulated parameters are validated with available in situ meteorological observations obtained from micro-meteorological tower as well has high-resolution DigiCORA radiosonde ascents during STORM-2007 field experiment at the study location and Doppler Weather Radar (DWR) imageries. It has been found that the PBL structure simulated with the TKE closures MYJ and BouLac are in better agreement with observations than the non-local closures. The model simulations with these schemes also captured the reflectivity, surface pressure patterns such as wake-low, meso-high, pre-squall low and the convective updrafts and downdrafts reasonably well. Qualitative and quantitative comparisons reveal that the MYJ followed by BouLac schemes better simulated various features of the thunderstorm events over Kharagpur region. The better performance of MYJ followed by BouLac is evident in the lesser mean bias, mean absolute error, root mean square error and good correlation coefficient for various surface meteorological variables as well as thermo-dynamical structure of the atmosphere relative to other PBL schemes. The better performance of the TKE closures may be attributed to their higher mixing efficiency, larger convective energy and better simulation of humidity promoting moist convection relative to non-local schemes.
机译:在本研究中,采用先进的研究WRF(ARW)模型来模拟印度恒河西孟加拉邦Kharagpur(22A度30'N,87A度20'E)地区的对流雷暴发作。对于事件的初始条件和边界条件,使用1 x 1度NCEP最终分析气象场进行高分辨率模拟。在以下位置评估了两个非局部[延世大学(YSU),非对称对流模型版本2(ACM2)]和两个局部湍流动能闭合[Mellor-Yamada-Janjic(MYJ),Bougeault-Lacarrere(BouLac)]的性能模拟行星边界层(PBL)参数和大气的热力学结构。通过从微型气象塔获得的可用现场气象观测值对模型仿真的参数进行了验证,并且在研究地点的STORM-2007现场实验和多普勒天气雷达(DWR)影像上具有高分辨率DigiCORA探空仪上升。已经发现,与非局部闭合相比,用TKE闭合MYJ和BouLac模拟的PBL结构与观测结果更加吻合。使用这些方案进行的模型模拟还很好地捕获了反射率,表面压力模式(例如低尾流,中高,预s低和对流上升气流和下降气流)。定性和定量比较显示,MYJ和BouLac方案更好地模拟了Kharagpur地区雷暴事件的各种特征。与其他PBL方案相比,各种地面气象变量以及大气的热力学结构的平均偏差,平均绝对误差,均方根误差和良好的相关系数均较小,这表明MYJ的性能更好,其次是BouLac。与非局部方案相比,TKE密封件的更好性能可归因于其更高的混合效率,更大的对流能以及更好的湿度促进湿对流模拟。

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