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首页> 外文期刊>Soil & Tillage Research >Morphology parameters of ephemeral gully in characteristics hillslopes on the Loess Plateau of China.
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Morphology parameters of ephemeral gully in characteristics hillslopes on the Loess Plateau of China.

机译:黄土高原特征性山坡临时沟形态参数

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摘要

The Loess Plateau of North China has one of the highest erosion rates in the world. Ephemeral gullies are an important erosion type found on hill slopes of upland areas, and soil loss due to these gullies equals 30-70% of total soil loss. In this study, we used a high-accuracy global positioning system (GPS) to measure the morphology of characteristic ephemeral gullies near Suide, Shaanxi Province. We discuss the geomorphological characteristics of the gullies (their length, the distance between the head of ephemeral gully and the watershed divide, the distance between two neighboring hill slope ephemeral gullies, the critical slope gradient, the upslope drainage area, and the flow erosivity). The length and average distance between gullies both followed a Pearson IV distribution function, but the function parameters differed. The product of upslope drainage area and the square of the critical slope gradient ranged from 4.74 to 892.66 m2 and can be used to determine locations where gullies are likely to begin in a digital elevation model with a 2 m x 2 m grid. The relationship between the upslope drainage area (A) and the critical slope gradient (S) could be expressed as S=0.058A-0.3. For the first time, this paper determined the relationship between gully length (L) and flow erosivity (E): L=0.0305E+18.185 (R2=0.71). These results improve our understanding of the erosion process in ephemeral gullies..
机译:中国北方的黄土高原是世界上侵蚀率最高的国家之一。临时沟壑是在高地山坡上发现的一种重要的侵蚀类型,由于这些沟壑造成的土壤流失相当于总土壤流失的30-70%。在这项研究中,我们使用高精度的全球定位系统(GPS)来测量陕西省ide德附近特征性临时eph沟的形态。我们讨论了沟壑的地貌特征(它们的长度,临时沟渠的头部到分水岭之间的距离,两个相邻的山坡临时沟壑之间的距离,临界坡度梯度,上坡流域和流动侵蚀性) 。食沟之间的长度和平均距离均遵循Pearson IV分布函数,但函数参数有所不同。上坡排水面积与临界坡度的平方的乘积范围为4.74至892.66 m2,可用于确定在2 m x 2 m网格的数字高程模型中可能发生沟壑的位置。上坡排水面积(A)和临界坡度(S)之间的关系可以表示为S = 0.058A-0.3。本文首次确定了沟长(L)与流侵蚀力(E)之间的关系:L = 0.0305E + 18.185(R2 = 0.71)。这些结果增进了我们对短暂沟壑侵蚀过程的理解。

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