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首页> 外文期刊>Journal of hydrometeorology >A Comparison of Precipitation Occurrence from the NCEP Stage IV QPE Product and the CloudSat Cloud Profiling Radar
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A Comparison of Precipitation Occurrence from the NCEP Stage IV QPE Product and the CloudSat Cloud Profiling Radar

机译:NCEP IV级QPE产品和CloudSat云剖析雷达产生降水的比较

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Because of its extensive quality control procedures and uniform space-time grid, the NCEP Stage IV merged Weather Surveillance Radar-1988 Doppler (WSR-88D) radar and surface rain gauge dataset is often considered to be the best long-term gridded dataset of precipitation observations covering the contiguous United States. Stage IV accumulations are employed in a variety of applications, and while the WSR-88D systems are well suited for observing heavy rain events that are likely to affect flooding, limitations in surface radar and gauge measurements can result in missed precipitation, especially near topography and in the western United States. This paper compares hourly Stage IV observations of precipitation occurrence to collocated observations from the 94-GHz CloudSat Cloud Profiling Radar, which provides excellent sensitivity to light and frozen precipitation. Statistics from 4 yr of comparisons show that the CloudSat observes precipitation considerably more frequently than the Stage IV dataset, especially in northern states where frozen precipitation is prevalent in the cold season. The skill of Stage IV for precipitation detection is found to decline rapidly when the near-surface air temperature falls below 08C. As a result, agreement between Stage IV and CloudSat tends to be best in the southeast, where radar coverage is good and moderate-to-heavy liquid precipitation dominates. Stage IV and CloudSat precipitation detection characteristics are documented for each of the individual river forecast centers that contribute to the Stage IVdataset to provide guidance regarding potential sampling biases thatmay impact hydrologic applications.
机译:由于其广泛的质量控制程序和统一的时空网格,通常将NCEP Stage IV合并的气象监视雷达1988多普勒(WSR-88D)雷达和地表雨量计数据集视为最佳的长期网格化降水数据集观测结果覆盖了连续的美国。 IV阶段的蓄积可用于各种应用,而WSR-88D系统非常适合观察可能影响洪水的暴雨事件,地表雷达和仪表测量的局限性可能会导致降雨遗漏,特别是在地形附近。在美国西部。本文将每小时发生的IV期每小时观测值与94 GHz CloudSat云剖析雷达的并置观测值进行比较,该观测值对轻度和冻结降水具有出色的敏感性。来自4年比较的统计数据表明,CloudSat观测到的降水比IV期数据集更为频繁,尤其是在北部地区,在寒冷的季节中,冻结的降水非常普遍。当近地表气温下降到08摄氏度以下时,发现第四阶段用于降水探测的技能迅速下降。因此,第四阶段和CloudSat之间的协议往往是在东南部最好的,那里的雷达覆盖范围很好,并且中度到重度的液态降水占主导地位。记录了构成IV级数据集的每个河流预报中心的IV级和CloudSat降水检测特征,以提供有关可能影响水文应用的潜在采样偏差的指导。

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