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Rainfall erosivity estimation based on rainfall data collected over a range of temporal resolutions

机译:根据在一定时间分辨率范围内收集的降雨数据估算降雨侵蚀力

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Rainfall erosivity is the power of rainfall to cause soil erosion by water. The rainfall erosivity index for a rainfall event (energy-intensity values - E I-30) is calculated from the total kinetic energy and maximum 30 min intensity of individual events. However, these data are often unavailable in many areas of the world. The purpose of this study was to develop models based on commonly available rainfall data resolutions, such as daily or monthly totals, to calculate rainfall erosivity. Eleven stations with 1 min temporal resolution rainfall data collected from 1961 through 2000 in the eastern half of China were used to develop and calibrate 21 models. Seven independent stations, also with 1 min data, were utilized to validate those models, together with 20 previously published equations. The models in this study performed better or similar to models from previous research to estimate rainfall erosivity for these data. Using symmetric mean absolute percentage errors and Nash-Sutcliffe model efficiency coefficients, we can recommend 17 of the new models that had model efficiencies >= 0.59. The best prediction capabilities resulted from using the finest resolution rainfall data as inputs at a given erosivity timescale and by summing results from equations for finer erosivity timescales where possible. Results from this study provide a number of options for developing erosivity maps using coarse resolution rainfall data.
机译:降雨侵蚀力是降雨导致水侵蚀土壤的力量。降雨事件的降雨侵蚀力指数(能量强度值-E I-30)是根据总动能和单个事件的最大30分钟强度来计算的。但是,这些数据通常在世界许多地区都不可用。这项研究的目的是基于常用的降雨数据分辨率(例如每日或每月总计)开发模型,以计算降雨侵蚀力。利用中国东部地区从1961年至2000年收集的11个时间分辨率为1分钟的降雨数据,开发并校准了21个模型。利用七个也有1分钟数据的独立站来验证那些模型,以及20个以前发布的方程式。这项研究中的模型在评估这些数据的降雨侵蚀力方面表现优于或类似于先前研究的模型。使用对称平均绝对百分比误差和Nash-Sutcliffe模型效率系数,我们可以推荐17个模型效率> = 0.59的新模型。最好的预测能力是通过使用最高分辨率的降雨数据作为给定的侵蚀度时间尺度下的输入,以及在可能的情况下对方程式的结果求和来获得的。这项研究的结果为使用粗分辨率降雨数据绘制侵蚀力图提供了多种选择。

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