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首页> 外文期刊>Journal of Hydraulic Engineering >GIS Based Distributed Model for Soil Erosion and Rate of Sediment Outflow from Catchments
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GIS Based Distributed Model for Soil Erosion and Rate of Sediment Outflow from Catchments

机译:基于GIS的流域土壤侵蚀和泥沙流出速率分布式模型。

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摘要

A spatially distributed rainfall-runoff-soil erosion model capable of handling catchment heterogeneity in terms of landuse, soil, slope, and rainfall has been developed and applied to data from several catchments. The model operates on a cell basis and accepts distributed inputs from a raster geographic information system (GIS). The catchment digital elevation model is used in the model to generate drainage paths from each of the discretized cells to the catchment outlet in proper hydrologic order. Following the computational hydrological sequencing thus derived, the mechanics of overland flow are modeled using a finite volume based numerical solution of the diffusion wave approximation of the St. Venant equations and the process of soil erosion is modeled using a numerical solution of the sediment continuity equation with appropriate auxiliary equations. The spatial information for each cell of the catchment was generated using digital analysis of satellite data and published information by making use of commercially available image processing and raster GIS packages. Results of model application on several catchments indicate that the model can compute temporal distribution of the sediment outflow rate at the catchment outlet for storm events reasonably well. The cell-based structure of the model also allows for computation of the spatial distribution of computed variables such as the amount of soil erosion.
机译:已经开发了一种能够处理集水区土地利用,土壤,坡度和降雨异质性的空间分布降雨-径流-土壤侵蚀模型,并将其应用于多个集水区的数据。该模型在像元基础上运行,并接受来自栅格地理信息系统(GIS)的分布式输入。流域数字高程模型用于模型中,以按适当的水文顺序生成从每个离散单元到流域出口的排水路径。根据由此得出的计算水文序列,使用基于有限体积的St. Venant方程扩散波近似的数值解来对陆流力学进行建模,并使用沉积物连续性方程的数值解来对土壤侵蚀过程进行建模。与适当的辅助方程式。集水区每个单元的空间信息是通过对卫星数据和发布的信息进行数字分析,并利用商业上可获得的图像处理和GIS栅格数据包生成的。在多个流域的模型应用结果表明,该模型可以较好地计算出流域出口处的泥沙流出速率随时间的分布情况。该模型基于单元的结构还允许计算变量的空间分布,例如土壤侵蚀量。

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