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Impact of rainfall spatial aggregation on the identification of debris flow occurrence thresholds

机译:降雨空间聚集对碎片流动发生阈值识别的影响

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摘要

The systematic underestimation observed in debris flow early warning thresholds has been associated with the use of sparse rain gauge networks to represent highly non-stationary rainfall fields. Remote sensing products permit concurrent estimates of debris-flow-triggering rainfall for areas poorly covered by rain gauges, but the impact of using coarse spatial resolutions to represent such rainfall fields is still to be assessed. This study uses fine-resolution radar data for ~?100 debris flows in the eastern Italian Alps to (i)?quantify the effect of spatial aggregation (120?km grid size) on the estimation of debris-flow-triggering rainfall and on the identification of early warning thresholds and (ii)?compare thresholds derived from aggregated estimates and rain gauge networks of different densities. The impact of spatial aggregation is influenced by the spatial organization of rainfall and by its dependence on the severity of the triggering rainfall. Thresholds from aggregated estimates show 821?% variation in the parameters whereas 1025?% systematic variation results from the use of rain gauge networks, even for densities as high as 1∕10?km?2.
机译:在碎片流动预警阈值中观察到的系统低估已经与使用稀疏雨量测量网络代表高度静止的降雨场相关联。遥感产品允许雨量覆盖不良区域的碎片流动触发降雨的并发估计,但是仍然仍可评估使用粗糙空间分辨率代表这种降雨场的影响。本研究采用东部意大利阿尔卑斯山(I)的〜100碎片流动的微分辨率雷达数据?量化空间聚集(120 km网格尺寸)对碎片流动触发降雨的影响识别预警阈值和(ii)?比较从不同密度的聚合估计和雨量计网络中得出的阈值。空间聚集的影响受到降雨量的空间组织的影响,并通过对触发降雨的严重程度的依赖性影响。来自聚合估计的阈值显示参数的821?%变化,而1025?%系统变化是由使用雨量仪网络的使用,即使是高达1/10的密度高达1/10 km?2。

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