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首页> 外文期刊>Computers & geosciences >A Plot Drainage Network As A Conceptual Tool For The Spatial Representation Of Surface Flow Pathways In Agricultural Catchments
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A Plot Drainage Network As A Conceptual Tool For The Spatial Representation Of Surface Flow Pathways In Agricultural Catchments

机译:地块排水网络作为农业流域地表径流路径空间表示的概念工具

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The drainage network must take the farming systems and the landscape structure into consideration to describe flow pathways in the agricultural catchment. A new approach is proposed to build the drainage network which is based on the identification of the inlets and outlets for surface water flow on each farmers' field (or plot), estimating the relative areas contributing to the surface yield. The delineation of these areas and their links in terms of surface flow pathways provides us with a pattern of relationships between individual plots, i.e. going from each plot to the other plots over the entire catchment. In this approach, flow directions are firstly calculated in the usual way by taking account of slope direction. Plot outlets are defined from the digital elevation model (DEM) and then linked together using a tree structure. If present, linear networks such as hedges modify both the flow directions and the location of plot outlets, hence modify this tree structure. In a final step, the plots are themselves linked together using a graph structure illustrated by an arrow diagram. This drainage network based on plot outlets is applied to a 15-km~2 catchment area represented by 38,300 pixels and 2000 plots. This new drainage network takes into consideration 5300 plot outlets, which greatly reduces the number of objects in comparison with a drainage network made up of pixels or DEM cells. This method leads to a simple and functional representation of surface flow pathways in an agricultural catchment. It allows us to identify the key plots controlling stream water pollution where converging flow pathways are coming from numerous or large-sized plots. Finally, it produces a functional representation for decision support.
机译:排水网络必须考虑耕作系统和景观结构,以描述农业流域的水流路径。提出了一种建立排水网络的新方法,该方法基于对每个农民田地(或田地)上地表水流的入口和出口的识别,并估算有助于地表产量的相对面积。这些区域及其在地表径流路径方面的联系为我们提供了一个样地之间的关系模式,即在整个集水区从每个样地转到其他样地。在这种方法中,首先以通常的方式通过考虑坡度方向来计算流向。从数字高程模型(DEM)定义地块出口,然后使用树结构将其链接在一起。如果存在,诸如树篱的线性网络会修改流向和情节出口的位置,因此会修改此树形结构。在最后一步中,使用箭头图所示的图形结构将图本身链接在一起。这种基于地块出口的排水网络被应用于一个15 km〜2的集水区,该区域由38,300个像素和2000个地块表示。这个新的排水网络考虑了5300个绘图出口,与由像素或DEM单元组成的排水网络相比,大大减少了对象的数量。这种方法可以简单,功能地表示农业流域的地表径流路径。它使我们能够确定控制河流水污染的关键区域,其中汇聚的水流路径来自大量或大型区域。最后,它为决策支持提供功能表示。

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