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首页> 外文期刊>Journal of hydrologic engineering >Comparative Analysis of Geomorphologic Characteristics of DEM-Based Drainage Networks
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Comparative Analysis of Geomorphologic Characteristics of DEM-Based Drainage Networks

机译:基于DEM的排水管网地貌特征比较分析

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Identifying the optimal drainage network based on digital elevation models (DEMs) is a fundamental task in rainfall-runoff modeling. Rapidly improving geographic information system technology enables hydrologists to use a variety of DEM-based hydrologic models that yield spatially concrete outputs. However, reliable drainage networks are still difficult to represent due to insufficient information about the dynamic behavior of water movement on catchment hillslopes. This study proposes an efficient method for drainage network identification through a comparative analysis of geomorphologic characteristics, such as drainage density, length of hillslope flow path, source area, etc., using area threshold and slope-area threshold criteria that incorporate scaling properties between the local slope and the contributing area. The results demonstrate that both criteria yield different drainage networks from "blue lines" based on topographic map from the Korean National Geographic Information Institute. Although the drainage networks obtained from the two criteria are visually similar, the area threshold yields an incorrect drainage structure due to excessive constraint of the draining source area size. In contrast, use of the slope-area threshold produces a relatively acceptable drainage structure in terms of preserving constant geomorphologic similarity to the study catchment. The proposed drainage network identification procedure may be used to describe landscape evolution for channel initiation in catchment hydrology. In addition, the comparative analysis of geomorphologic characteristics is found to provide important preprocess information for selecting a threshold value to generate reliable drainage networks based on DEMs before the application of hydrologic models.
机译:基于数字高程模型(DEM)识别最佳排水网络是降雨径流建模的基本任务。快速改进的地理信息系统技术使水文学家能够使用各种基于DEM的水文模型,这些模型可产生空间具体的输出。但是,由于关于集水区山坡上水运动动态行为的信息不足,仍然难以表示可靠的排水网络。这项研究提出了一种有效的方法,通过比较地貌特征,如排水密度,山坡流径的长度,源区等,使用面积阈值和坡面积阈值标准,并结合了水土流失之间的比例特性,从而确定了排水网络。当地坡度和影响区域。结果表明,根据韩国国家地理信息研究所的地形图,这两个标准的“蓝线”产生了不同的排水网络。尽管从这两个标准获得的排水网络在视觉上是相似的,但是由于排水源面积大小的过度约束,面积阈值会产生不正确的排水结构。相反,就坡度阈值的使用而言,就保持与研究集水区的恒定地貌相似性而言,可以产生相对可接受的排水结构。提出的排水网络识别程序可用于描述流域水文学中河道启动的景观演变。此外,在对水文模型应用之前,发现对地貌特征的比较分析可提供重要的预处理信息,以供选择阈值以基于DEM生成可靠的排水网络。

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