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Application of a distributed erosion model for the assessment of spatial erosion patterns in the Lushi catchment, China

机译:分布式侵蚀模型在中国卢氏流域空间侵蚀格局评估中的应用

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摘要

A grid-based erosion model is developed by integrating the distributed hydrological model, BTOPMC, with the modified USLE to estimate soil erosion and sediment outflow during single storms. The possible sheet, rill, channel erosion types, and sediment transport processes are considered within each grid under the model structure. Instead of representing the sheet erosion and rill erosion separately, the classic USLE method is modified to simulate the lumped sheet-rill erosion during storms. In the modification, the runoff ratio and a relevant correction coefficient are brought into the R-factor which improves the model's applicability in predicting erosion during single storms. Instead of representing a grid with a unique erosion type, a channel component is assumed to exist in each grid, and its width varies with the upstream contributing area of the grid. This assumption avoids the problems that are caused by the difference between the channel widths in the upstream area and the downstream area if therngrid is simply recognized as a channel grid. It also enables the model to be applicable in simulating soil erosion and sediment outflow from a large catchment. Through a case study in the Lushi catchment, China, the results show an overall satisfactory accuracy for the selected events. Moreover, by analyzing the spatial distribution of soil erosion or deposition, the erosion-prone areas are identified for the prioritization purpose.
机译:通过将分布式水文模型BTOPMC与修改后的USLE集成在一起,开发了基于网格的侵蚀模型,以估算单场暴风雨期间的土壤侵蚀和沉积物流出。在模型结构下的每个网格内,都考虑了可能的薄片,小河,河道侵蚀类型和泥沙输送过程。代替了分别表示薄层侵蚀和小溪侵蚀,经典的USLE方法经过修改以模拟暴风雨期间集总的薄层侵蚀。在修改中,径流比和相关的校正系数被纳入R因子,从而提高了模型在预测单个暴风雨期间的侵蚀的适用性。假定不是在每个网格中都存在通道分量,而是用一个单独的侵蚀类型来表示网格,并且其宽度随网格上游贡献区域的变化而变化。该假设避免了如果简单地将蛇纹石识别为通道网格的情况,则可以避免由上游区域和下游区域中的通道宽度之间的差异引起的问题。它还使该模型可用于模拟大型流域的土壤侵蚀和沉积物流出。通过对中国卢氏流域的案例研究,结果显示所选事件总体上令人满意的准确性。此外,通过分析土壤侵蚀或沉积的空间分布,确定了容易侵蚀的区域,以便进行优先排序。

著录项

  • 来源
    《Environmental Geology》 |2010年第4期|P.787-797|共11页
  • 作者单位

    College of Water Sciences, Beijing Normal University, Xinjiekouwai Street 19, 100875 Beijing, China;

    rnCollege of Water Sciences, Beijing Normal University, Xinjiekouwai Street 19, 100875 Beijing, China;

    rnWater Engineering and Management (WEM), School of Engineering and Technology (SET), Asian Institute of Technology (AIT), P.O. Box 4, Klong Luang, Pathumthani 12120, Thailand;

    rnDepartment of Civil and Environmental Engineering, University of Yamanashi, 4-3-11, Takeda, Kofu, Yamanashi 400-8511, Japan;

    rnInternational Centre for Water Hazard and Risk Management, Tsukuba, Ibaraki 305-8516, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    BTOPMC; infiltration; erosion; sediment concentration; USLE;

    机译:BTOPMC;浸润;侵蚀;沉积物浓度美国大学;

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