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Impact of Long-Term Observation on the Sampling Characteristics of TRMM PR Precipitation

机译:长期观察对TRMM PR降水采样特性的影响

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Observations of the Tropical Rainfall Measuring Mission Precipitation Radar (TRMM PR) over 16 yr yielded hundreds of large precipitation systems (>= 100 km) for each 0.1 degrees grid over major rainy regions. More than 90% of the rainfall was attributed to large systems over certain midlatitude regions such as La Plata basin and the East China Sea. The accumulation of high-impact snapshots reduced the significant spatial fluctuation of the rain fraction arising from large systems and allowed the obtaining of sharp images of the geographic rainfall pattern. Widespread systems were undetected over low-rainfall areas such as regions off Peru. Conversely, infrequent large systems brought a significant percentage of rainfall over semiarid tropics such as the Sahel. This demonstrated an increased need for regional sampling of extreme phenomena. Differences in data collected over a period of 16 yr were used to examine sampling adequacy. The results indicated that more than 10% of the 0.1 degrees-scale sampling error accounted for half of the TRMM domain even for a 10-yr data accumulation period. Rainfall at the 0.1 degrees scale was negatively biased in the first few years for over more than half of the areas because of a lack of high-impact samples. The areal fraction of the 0.1 degrees-scale climatology with a 50% accuracy exceeded 95% in the ninth year and in the fifth year for those areas with rainfall >2mmday(-1). A monotonic increase in the degree of similarity of finescale rainfall to the best estimate with an accuracy of 10% illustrated the need for further sampling.
机译:测量任务降水雷达(TRMM PR)的热带降雨量超过16 yr的观察结果,每个0.1摄氏度超过主要的多雨地区的0.1摄氏度的大量沉淀系统(> = 100km)。超过90%的降雨归因于某些中东地区的某些中间地区的大型系统,如La Plata盆地和东海。高冲击快照的累积减少了大型系统产生的雨部分数的显着空间波动,并允许获得地理降雨模式的清晰图像。在秘鲁的区域之类的低雨区域上未被普遍的系统未被发现。相反,不常见的大型系统带来了萨赫勒等半干旱热带百分比的降雨量。这表明需要增加极端现象的区域采样。在16年期间收集的数据的差异用于检查抽样充足性。结果表明,即使对于10年的数据累积时段,0.1度级采样误差的超过10%也占TRMM域的一半。由于缺乏高冲击样本,在0.1度刻度下降0.1度刻度的降雨量在前几年中受到了负面偏见。 0.1度级气候学的面积分数,50%的精度超过了第九年的95%,并在其中有降雨的五年内的第五年(-1)。 FineScale降雨程度的单调增加到最佳估计,精度为10%的准确性,说明了进一步采样的需要。

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