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THE COMPARISON OF DRAINAGE NETWORK EXTRACTION BETWEEN SQUARE AND HEXAGONAL GRID-BASED DEM

机译:方形网格和基于六角形网格的DEM排水网络提取的比较

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The automatic extraction of valleys or ridges from DEM is a long term topic in the GIS and hydrology fields and a number of algorithms have been developed. The quality of drainage networks extraction depends on many impacts such as data source, DEM resolution and extraction algorithms. However, little consideration has been paid to the influence of different tessellation of grid-based DEM construction in terrain surface representation. Actually, hexagonal grid has been proved to be advantageous over square grid due to its consistent connectivity, isotropy of local neighbourhoods, higher symmetry, visual advantage, and so on. This study tries to explore the impact of different tessellation scheme for grid-based DEM on the accuracy of terrain representation reflected by the results of drainage networks extraction. The contour line data model is applied to grid-based DEM generation. Then, by analogy with traditional D8 algorithm, the D6 algorithm is introduced to extract drainage networks by calculating flow direction of each gird with the steepest slope neighbour criteria. From the comparison between D8 algorithm and D6 algorithm, we conclude that hexagonal grid-based DEM has a superior capability in maintaining the detailed shape and the characteristics of extracted drainage networks in coarser resolution.
机译:从DEM自动提取山谷或山脊是GIS和水文学领域的长期话题,并且已经开发了许多算法。排水网络提取的质量取决于许多影响,例如数据源,DEM分辨率和提取算法。但是,很少考虑基于网格的DEM构造的不同细分对地形表面表示的影响。实际上,六角形网格由于其一致的连通性,局部邻域的各向同性,更高的对称性,视觉优势等,已被证明比方形网格更具优势。本研究试图探讨基于网格的DEM的不同细分方案对排水网络提取结果所反映的地形表示准确性的影响。等高线数据模型应用于基于网格的DEM生成。然后,与传统的D8算法类似,引入D6算法,通过计算坡度最大的邻域标准,计算各网格的流向,提取排水网络。通过D8算法和D6算法的比较,我们得出结论,基于六边形网格的DEM在以较粗的分辨率保持提取的排水网络的详细形状和特性方面具有出色的能力。

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