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首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Comparisons between S-, C- and X-band polarimetric radar observations and convective-scale simulations of the HyMeX first special observing period
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Comparisons between S-, C- and X-band polarimetric radar observations and convective-scale simulations of the HyMeX first special observing period

机译:HyMeX第一个特殊观测期的S波段,C波段和X波段极化雷达观测结果与对流尺度模拟的比较

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This article describes a forward observation operator for polarimetric radar variables, developed within the research mesoscale non-hydrostatic model Meso-NH. The forward operator enables direct comparisons of atmospheric simulations with polarimetric radar observations and constitutes a first step towards the assimilation of polarimetric radar data. The parameters of the polarimetric forward operator were defined in order to be consistent (whenever possible) with the model microphysical parametrization. Subjective and quantitative comparisons between observations and simulations are analyzed for S-, C- and X-band radars for two convective cases that were observed in autumn 2012 in southeastern France during the first observing period (SOP1) of the Hydrological cycle in the Mediterranean Experiment (HyMeX) campaign. The good consistency between the medians of the observed and simulated distributions of Z(dr) and K-dp as a function of Z(hh), in rain and in dry snow, enables the validation of the parametrization of the polarimetric forward operator. However, the higher spread in observed Z(dr) and K-dp (due to noise and microphysical variability) reveals a need for careful data quality control and pre-processing for use in assimilation. Comparisons between observed and simulated vertical profiles of Z(hh), K-dp and Z(dr) in convective areas also show generally good agreement. Some differences between observations and simulations are attributed to model limitations, in particular its one-moment microphysics scheme and coarser resolution.
机译:本文介绍了在研究中尺度非静水模型Meso-NH中开发的极化雷达变量的前向观测算子。向前的操作员可以将大气模拟与极化雷达观测结果进行直接比较,这是向极化雷达数据进行同化的第一步。定义了极化正向算子的参数,以便与模型微物理参数化保持一致(如果可能)。针对地中海实验水文周期的第一个观测期(SOP1)于2012年秋季在法国东南部观测到的两个对流案例,分析了观测和模拟之间的S,C和X波段雷达的主观和定量比较(HyMeX)广告系列。在下雨和干雪中,Z(dr)和K-dp的观测分布和模拟分布的Z值和Z-dp的函数之间的良好一致性,可以验证极化正向算子的参数化。但是,观察到的Z(dr)和K-dp较高的扩散(由于噪声和微物理变异性)表明,需要进行仔细的数据质量控制和预处理以用于同化。在对流区域内观察到的Z(hh),K-dp和Z(dr)的垂直轮廓之间的比较也显示出良好的一致性。观测和模拟之间的某些差异归因于模型的局限性,特别是其一瞬间的微物理方案和较粗糙的分辨率。

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