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Sensitivity analyses of satellite rainfall retrieval and sampling error on flood prediction uncertainty

机译:卫星降雨反演和抽样误差对洪水预报不确定性的敏感性分析

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The Global Precipitation Measurement mission planned jointly by the United States, Japanese, and European space agencies envisions providing global rainfall products from a constellation of passive microwave (PM) satellite sensors at time scales ranging from 3-6 h. In this paper, a sensitivity analysis was carried out to understand the implication of satellite PM rainfall retrieval and sampling errors on flood prediction uncertainty for medium-sized (/spl sim/100 km/sup 2/) watersheds. The 3-h rainfall sampling gave comparable flood prediction uncertainties with respect to the hourly sampling, typically used in runoff modeling, for a major flood event in Northern Italy. The runoff prediction error, though, was magnified up to a factor of 3 when rainfall estimates were derived from 6-h PM sampling intervals. The systematic and random error components in PM retrieval are shown to interact with PM sampling introducing added uncertainty in runoff simulation. The temporal correlation in the PM retrieval error was found to have a negligible effect in runoff prediction. It is shown that merging rain retrievals from hourly infrared (IR) and PM observations generally reduces flood prediction uncertainty. The error reduction varied between 50% (0%) and 80% (50%) for the 6-h (3-h) PM sampling scenarios, depending on the relative magnitudes of PM and IR retrieval errors. Findings from this paper are potentially useful for the design, planning, and application assessment of satellite remote sensing in flood and flash flood forecasting.
机译:由美国,日本和欧洲航天局共同计划的全球降水测量任务设想,将在3-6小时的时间范围内,从一组无源微波(PM)卫星传感器中提供全球降雨产品。本文进行了敏感性分析,以了解中型(/ spl sim / 100 km / sup 2 /)流域的卫星PM降雨反演和采样误差对洪水预报不确定性的影响。对于意大利北部的一次重大洪灾事件,相对于通常用于径流模拟的每小时采样,3小时降雨采样提供了相当的洪水预报不确定性。但是,当从6小时PM采样间隔得出降雨估算值时,径流预测误差会放大到3倍。 PM检索中的系统误差和随机误差成分与PM采样相互作用,在径流模拟中引入了更多不确定性。发现PM反演误差中的时间相关性对径流预测的影响可忽略不计。结果表明,将每小时红外(IR)和PM观测中的雨水回采合并在一起通常会减少洪水预报的不确定性。对于6小时(3小时)的PM采样情况,误差降低在50%(0%)和80%(50%)之间变化,具体取决于PM和IR检索误差的相对大小。本文中的发现对于洪水和山洪预报中卫星遥感的设计,规划和应用评估可能很有用。

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