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首页> 外文期刊>Journal of Hydrology >A three-process-based distributed soil erosion model at catchment scale on the Loess Plateau of China
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A three-process-based distributed soil erosion model at catchment scale on the Loess Plateau of China

机译:基于三个过程的分布式土壤侵蚀模型在中国黄土高原的集水区

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摘要

The Loess Plateau of China suffers from severe soil erosion. In the gullied rolling loess region, approximately half of the sediment derives from gully areas, which are the most prominent topographical features of this region. No existing soil erosion models are appropriate in accuracy or applicability for the Loess Plateau because existing models only consider slope and river erosion processes at the catchment scale. The absence of the gully erosion process in these models significantly limits their application to the Loess Plateau. Taking this issue into account, a three-process-based distributed soil erosion model, denoted by WEP-SED, is proposed to investigate soil erosion in this region based on the Water and Energy transfer Processes in Large river basins (WEP-L) model. In WEP-SED, a sequential "slope-gully-river" structure is built for the physically-based simulation of soil erosion and sediment yield. In this structure, soil erosion is integrated from six parts with successive transport relationships. The proposed model is applied to the upstream region of the Wenjiachuan hydrological station in the Kuye River basin. The simulated monthly average sediment transport rates from 1956 to 2010 at the Wenjiachuan hydrological station agree well with the observations, with a correlation coefficient of 0.76, an NSE of 0.58, and a relative error of - 5.60%. Furthermore, the simulated average annual amount of gully erosion reaches 60.30% of the total soil erosion, reflecting the fact that the gully erosion is a serious problem and demonstrating that gully erosion must be considered separately in this area.
机译:黄土高原中国遭受严重的土壤侵蚀。在Gullied滚动黄土地区,大约一半的沉积物来自沟壑区域,这是该地区最突出的地形特征。由于现有型号仅考虑在集水区规模的坡度和河流侵蚀过程中,没有现有的土壤侵蚀模型是适合的。这些模型中没有沟壑的侵蚀过程将其应用限制在黄土高原上。考虑到这一问题,由WEP-SED表示的三个基于分布的土壤侵蚀模型,以研究基于大型河流盆地(WEP-L)模型的水和能量转移过程来研究该地区的土壤侵蚀。在WEP-SED中,建立了一种序贯的“坡沟”结构,用于物理基础的土壤侵蚀和沉积物产量。在这种结构中,土壤侵蚀从具有连续运输关系的六个部分集成在一起。该拟议模型应用于Kuye River盆地文家川水文站的上游地区。模拟月平均沉积物运输率从1956年至2010年在文家水文站点与观察结果吻合良好,相关系数为0.76,NSE为0.58,相对误差为5.60%。此外,沟壑侵蚀的模拟平均年度占土壤侵蚀的60.30%,反映了沟壑侵蚀是一个严重的问题,并且证明沟壑侵蚀必须在这方面进行分别考虑。

著录项

  • 来源
    《Journal of Hydrology》 |2019年第2019期|共12页
  • 作者单位

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    China Inst Water Resources &

    Hydropower Res State Key Lab Simulat &

    Regulat Water Cycle River Beijing 100038 Peoples R China;

    Univ Oslo Dept Geosci Hydrol Oslo Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

    Gullied rolling loess region; Physically-based; Slope-gully-river; Gully erosion; Gravitational erosion;

    机译:Gullied滚动黄土地区;基于物理的;坡沟 - 河流;沟壑侵蚀;引力侵蚀;

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