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GIS-based distributed model for simulating runoff and sediment load in the Malian River Basin

机译:基于GIS的马里河流域产流泥沙模拟模型。

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摘要

GIS-based modeling is an effective approach for reflecting spatially-varied complexities in watershed systems. In this study, a GIS-aided distributive hydrological model was developed to simulate runoff and sediment transport in a loess-plateau context with semi-arid climate, sparse vegetation, and serious soil erosion. The model was then applied to a case study in the Malian River Basin, which is one of the largest catchments in the middle reach of the Yellow River. Based on the GIS technique, the DEM of the study basin was successfully used to delineate the stream network and extract information of catchment characteristics. The results show satisfactory accuracy for runoff simulation. Especially, the integrated soil-erosion and hydrological models can be used for simulating both runoff and sediment loads, which provide a useful decision-support tool for water resources management and pollution control. This study is an attempt to develop a distributed rainfall-runoff model for river basins in the loess plateau region. The developed model can also be extended to larger basins. Further works of field survey and investigation would be helpful for better calibrating critical parameters and thus improving performance of the developed model.
机译:基于GIS的建模是一种反映流域系统中空间变化复杂性的有效方法。在这项研究中,开发了一个GIS辅助的分布式水文模型,以模拟半干旱气候,稀疏植被和严重土壤侵蚀的黄土高原地区的径流和泥沙输送。然后将该模型应用于马里河流域的案例研究中,该河流域是黄河中游最大的流域之一。基于GIS技术,该流域的DEM被成功地用于描述河流网络并提取流域特征信息。结果表明,径流模拟具有令人满意的精度。特别是,综合的土壤侵蚀和水文模型可用于模拟径流和泥沙负荷,这为水资源管理和污染控制提供了有用的决策支持工具。这项研究是为黄土高原地区流域建立分布式降雨-径流模型的尝试。开发的模型也可以扩展到更大的盆地。现场调查和调查的进一步工作将有助于更好地校准关键参数,从而改善开发模型的性能。

著录项

  • 来源
    《Hydrobiologia》 |2003年第3期|127-134|共8页
  • 作者单位

    Canada-China Center for Energy and Environment Research Hunan UniversityFaculty of Engineering University of Regina;

    Chinese Academy of Sciences Xinjiang Institute of Geography and Ecology;

    Canada-China Center for Energy and Environment Research Hunan UniversityFaculty of Engineering University of ReginaChinese Academy of Sciences Institute of Geographical Science Natural Resources;

    Canada-China Center for Energy and Environment Research Hunan UniversityFaculty of Engineering University of Regina;

    Canada-China Center for Energy and Environment Research Hunan UniversityFaculty of Engineering University of Regina;

    Canada-China Center for Energy and Environment Research Hunan UniversityFaculty of Engineering University of Regina;

    Chinese Academy of Sciences Institute of Geographical Science Natural Resources;

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

    distributed model; loess plateau; runoff; Sediment; watershed;

    机译:分布式模型黄土高原径流泥沙分水岭;

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