光栅图形
地理
分水岭
地理信息系统
软件
支流
矢量地图
数字高程模型
地图学
数据集
空间分析
光栅数据
遥感
集合(抽象数据类型)
Fortran语言
计算机科学
数据挖掘
仰角(弹道)
地质学
地形
计算机图形学(图像)
人工智能
计算机视觉
数学
几何学
操作系统
程序设计语言
作者
Susan K. Jenson,Julia O. Domingue
摘要
Software tools have been developed at the U.S. Geological Survey's EROS Data Center to extract topographic structure and to delineate watersheds and overland flow paths from digital elevation models. The tools are special purpose FORTRAN programs interfaced with general-purpose raster and vector spatial analysis and relational data base management packages. The first phase of analysis is a conditioning phase that generates three data sets: the original DEM with depressions filled, a data set indicating the flow direction for each cell, and a flow accumulation data set in which each cell receives a value equal to the number of cells that drain to it. The original DEM and these three derivative data sets can then be processed in a variety of ways to optionally delineate drainage networks, overland paths, watersheds for user-specified locations, sub-watersheds for the major tributaries of a drainage network, or pour point linkages between watersheds. The computer-generated drainage lines and watershed polygons and the pour point linkage information can be transferred to vector-based geographic information systems for further analysis. Comparisons between these computer generated features and their manually delineated counterparts generally show close agreement, indicating that these software tools will save analyst time spent in manual interpretation and digitizing.
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