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首页> 外文期刊>Journal of hydrometeorology >Cross Validation of TRMM PR Reflectivity Profiles Using 3D Reflectivity Composite from the Ground-Based Radar Network over the Korean Peninsula
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Cross Validation of TRMM PR Reflectivity Profiles Using 3D Reflectivity Composite from the Ground-Based Radar Network over the Korean Peninsula

机译:使用朝鲜半岛地面雷达网络的3D反射率复合材料对TRMM PR反射率剖面进行交叉验证

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摘要

The Tropical Rainfall Measuring Mission (TRMM) Precipitation Radar (PR) measures reflectivity downward from space and provides observations of the vertical distributions of precipitation over land as well as the ocean. It overpasses the southern part of the Korean Peninsula where (i) a dense network of operational S-band scanning radars is available and (ii) various types of precipitation occur. By utilizing a 3D reflectivity composite from the ground S-band radar (GR) observations, this paper shows a comparison of reflectivity profiles observed with both PR and GR focusing on their vertical structure. For four cases of widespread rain, visual and statistical analyses show that PR attenuation-corrected reflectivity agrees closely with reflectivity observed from the GR composite below the melting layer. Above and within the melting layer, PR is affected critically by its sensitivity while GR beam broadening at far ranges causes systematic differences in the PR-GR comparisons. For four cases of convective rain, PR underestimates the mean reflectivities by 1-3 dB compared with those from GR at low levels where precipitation attenuation is significant toward the ground. In these cases, the low sensitivity of PR results in a small number of matched points for weak echoes. Also, the PR-GR discrepancy for the convective case is more affected by time mismatching.
机译:热带雨量测量团(TRMM)降水雷达(PR)从太空向下测量反射率,并观察陆地和海洋上降水的垂直分布。它跨越了朝鲜半岛的南部,在那里(i)可以使用密集的S波段扫描雷达网络,并且(ii)出现各种类型的降水。通过利用来自地面S波段雷达(GR)观测值的3D反射率合成,本文显示了PR和GR都集中在垂直结构上观察到的反射率分布的比较。对于四场大雨,视觉和统计分析表明,PR衰减校正的反射率与从熔融层以下的GR复合材料观察到的反射率非常吻合。在熔化层上方和内部,PR受到其灵敏度的严重影响,而GR光束在远距离处的展宽会导致PR-GR比较中的系统差异。在对流降雨的四种情况下,与低水平的GR相比,PR低估了1-3 dB的平均反射率,因为在低水平下降雨对地面的衰减很大。在这些情况下,PR的低灵敏度导致弱回波的匹配点数量少。同样,对流情况下的PR-GR差异受时间不匹配的影响更大。

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