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Spatiotemporal Changes of Rainfall Erosivity in Loess Plateau, China

机译:黄土高原地区降雨侵蚀力的时空变化

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The reason for the severity of soil erosion in Loess Plateau can be attributed to three nonanthropogenic factors: rainfall erosivity, slope gradient, and loess soil. The rainfall erosivity is controlled by the rainfall characteristics. Generally, rainfall characteristics change drastically in space and time. The rainfall erosivity has been investigated using the modified Fournier index (MFI), annual rainfall, and precipitation concentration index (PCI). The study showed a decrease in average MFI by 10%. However, the difference between the MFI in 1960s and 1990s was found to decrease in a large area in Loess Plateau, whereas there was an increase in MFI at the high latitude. The maximum decrease in the rainfall erosivity was higher in the southeast than that in the north and west. The was found to have a trend similar to the MFI, which further indicates that the MFI follows, to a high extent, the annual rainfall trend. The PCI was found to have trend opposite to MFI and . The PCI increased in the north and west and decreased toward the southeast. The average temporal difference in the PCI between the 1960s, and 1990s was two percent.
机译:黄土高原土壤侵蚀严重的原因可归因于三个非人为因素:降雨侵蚀力,坡度梯度和黄土土壤。降雨侵蚀力受降雨特征控制。通常,降雨特征在时空上会急剧变化。使用修正的傅尼叶指数(MFI),年降雨量和降水集中指数(PCI)对降雨侵蚀力进行了研究。研究表明,平均MFI降低了10%。然而,发现黄土高原地区大面积MFI的差异在1960年代和1990年代有所减小,而高纬度地区的MFI有所增加。东南部的降雨侵蚀力最大下降幅度高于北部和西部。发现的MFI趋势与MFI相似,这进一步表明MFI在很大程度上遵循了年度降雨趋势。发现PCI具有与MFI和MFI相反的趋势。在北部和西部,PCI增加,而在东南部则减少。 1960年代与1990年代之间PCI的平均时间差异为2%。

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