首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Rill characteristics and sediment transport as a function of slope length during a storm event on loess soil
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Rill characteristics and sediment transport as a function of slope length during a storm event on loess soil

机译:黄土暴雨过程中的细沟特性和泥沙输移与边坡长度的关系。

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On the basis of detailed rill surveys carried out on bare plots of different lengths at slopes of 12 per cent, basic rill parameters were derived. Rill width and maximum depth increased with plot length, whereas rill amount and cross-sectional area, expressed per unit length, remained similar. On smaller plots, all rills were connected in a continuous transport system reaching the plot outlet, whilst on larger plots (10 and 20 m long) part of the rills ended with a deposition areas inside the plots. Amounts of erosion, calculated from rill volume and soil bulk density, were compared with soil loss measured at the plot outlets. On plots 10 and 20 m long, erosion estimated from volume of all rills was larger than measured soil loss. The latter was larger than erosion estimated from volume of contributing rills. To identify contributing soil loss area on these plots, two methods were applied: (i) ratio of total soil loss to maximum soil loss per unit area, and (ii) partition of plot area according to the ratio of contributing to total rill volume. Both methods resulted in similar areas of 21.8-23.5 m(2) for the plot 10 m long and 31.2 m(2) for the plot 20 m long. Identification of contributing areas enabled rill (5.9 kg m(-2)) and interrill (2.6 kg m(-2)) erosion rate to be calculated, the latter being very close to the value predicted from the Universal Soil Loss Equation. Although rill and interrill rates seemed to be similar on all plots, their ratio increased slightly with plot length. Application of this ratio to compute slope length factor of the Revised Universal Soil Loss Equation resulted in similar values to those predicted with the model. The achieved balance of soil loss suggested that all the sediment measured at the plot outlet originated from contributing rills and associated contributing rill areas. The results confirmed the utility of different plot lengths as a research too[ for analysing the dynamic response of soil to rainfall-runoff. Copyright (C) 2005 John Wiley Sons, Ltd.
机译:根据在不同长度的裸露土地上以12%的坡度进行的详细钻探调查,得出了基本的钻探参数。田间宽度和最大深度随地块长度的增加而增加,而以单位长度表示的小溪数量和截面积保持相似。在较小的地块上,所有小溪都通过连续运输系统连接到地块出口,而在较大的地块(长10和20 m)上,部分小溪以地块内的沉积区域结束。将根据小溪体积和土壤容重计算出的侵蚀量与在样地出口处测得的土壤流失进行了比较。在10和20 m长的样地中,根据所有小溪的体积估算的侵蚀量大于测得的土壤流失量。后者大于根据小溪数量估算的侵蚀。为了在这些样地上确定造成土壤流失的面积,采用了两种方法:(i)总土壤流失与每单位面积最大土壤流失的比率,以及(ii)根据对小溪总贡献量的比率划分样地面积。两种方法在10 m长的样区和21.2 long 20 m的样区中产生的相似面积分别为21.8-23.5 m(2)。确定贡献区域后,可以计算小溪(5.9 kg m(-2))和小钻间(2.6 kg m(-2))的侵蚀率,后者与通用土壤流失方程式预测的值非常接近。尽管在所有样地上的钻速和间钻率似乎都相似,但它们的比率随样地长度而略有增加。应用该比率计算修正后的通用土壤流失方程的边坡长度因子,得到的值与模型预测的值相似。达到的土壤流失平衡表明,在样地出口处测得的所有沉积物均来自小河和相关的小河区域。结果也证实了不同样地长度的实用性,也可用于分析土壤对降雨径流的动态响应。版权所有(C)2005 John Wiley Sons,Ltd.

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