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AUTOMATIC EXTRACTION OF VALLEY BOUNDARY FROM DEMS IN THE HILLY LOESS PLATEAU

机译:黄土高原丘陵区谷底边界的自动提取

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摘要

As an important geomorphological divide in the hilly Loess Plateau, valley boundary plays a pivotal role in the construction of distributed models for studying the processes and mechanism of soil erosion, sediment transfer and runoffs within a watershed. In the past, this boundary manually interpreted from large scale maps and aerial photographs. In this paper, the authors first present a simple and practical definition for topographic structures unique to the highly dissected topography in the hilly Loess Plateau in DEMs; then define the valley boundary cells in a DEM with the following features: 1) they are most like- ly located on a concave slope, 2) these cells have the sharpest transition in slope, 3) those cells on the downward side of the valley boundary should have a slope gradient larger than 20°,4) these cells have the sharpest transition in slope, 3) those cells on the downward side of the must be continuous; then devise an algorithm to automatically delineate valley boundary from DEMs and implement it in a com- puter.
机译:作为黄土高原丘陵区一个重要的地貌分界,山谷边界在分布模型的构建中起着关键作用,该模型用于研究流域内土壤侵蚀,沉积物转移和径流的过程和机理。过去,该边界是根据大型地图和航空照片手动解释的。在本文中,作者首先提出了一种简单实用的定义,用于DEMs黄土高原丘陵区高度解剖的地形所独有的地形结构。然后在DEM中定义具有以下特征的山谷边界单元:1)它们最有可能位于凹形斜坡上; 2)这些单元在坡度上具有最陡峭的过渡; 3)那些位于山谷向下侧的单元边界的坡度应大于20°,4)这些像元的斜率最陡峭,3)下方的像元必须是连续的;然后设计一种算法,自动从DEM划定山谷边界,并在计算机中实现。

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