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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Is the connectivity function a good indicator of soil infiltrability distribution and runoff flow dimension?
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Is the connectivity function a good indicator of soil infiltrability distribution and runoff flow dimension?

机译:连通性功能是土壤渗透性分布和径流尺寸的良好指标吗?

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Among the studies on runoff connectivity of soils with heterogeneous properties, the need to understand the relationships between soil heterogeneity and the associated runoff organization and amount is frequently mentioned. In this study, we simulate the stationary runoff-runon process on bi-dimensional (2D) flat slopes for five infiltrability distributions, one of them correlated, as a function of rainfall intensity and flow dimension. We define flow dimension by 1 + ?, where ? is the outflow fraction transferred from one pixel to each of the two lateral downslope pixels. Our aim is to assess the effect of ? and soil heterogeneity on the connectivity function compared to the mean runoff flow rate, the wet area and the number of runoff patterns. The analysis of connectivity is carried within the percolation framework. The results show that the integral connectivity scale is more sensitive to the flow dimension and soil heterogeneity compared to the other variables. The wet area fraction does not depend on ?. Unlike previous studies, we find that increased runoff production is not necessarily related to increased connectivity. The use of the connectivity function within the percolation framework appears to be a valuable method for assessing the impact of soil heterogeneity and flow dimension on the runoff organization during a rainfall event.
机译:在对具有非均质性质的土壤的径流连通性的研究中,经常需要了解土壤非均质性与相关径流组织和数量之间的关系。在这项研究中,我们模拟了二维(2D)平坡上的五个径流渗透率分布的平稳径流-径流过程,其中之一与降雨强度和流量大小有关。我们用1 +?定义流量尺寸,其中?是从一个像素转移到两个横向下坡像素的每个像素的流出分数。我们的目的是评估效果?和土壤非均质性对连通性函数的影响相比,平均径流量,湿地面积和径流模式的数量。连接性分析是在渗透框架内进行的。结果表明,与其他变量相比,积分连通性尺度对流向和土壤异质性更为敏感。湿面积分数不依赖于α。与以前的研究不同,我们发现径流产生的增加不一定与连通性增加有关。在渗流框架内使用连通性功能似乎是评估降雨过程中土壤异质性和流量尺度对径流组织影响的一种有价值的方法。

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