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GIS techniques for creating river terrain models for hydrodynamic modeling and flood inundation mapping

机译:GIS技术,用于创建河流地形模型以进行水动力建模和洪水淹没制图

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Two- and three-dimensional (2D/3D) hydrodynamic models require the geometric description of river bathymetry and its surrounding area as a continuous surface. These surface representations of river systems are also required in mapping flood inundation extents. Creating surface representations of river systems is a challenging task because of issues associated with interpolating river bathymetry, and then integrating this bathymetry with surrounding topography. The objectives of this paper are to highlight key issues associated with creating an integrated river terrain, and propose GIS techniques to overcome these issues. The following techniques are presented in this paper: mapping and analyzing river channel data in a channel fitted coordinate system; interpolation of river cross-sections to create a 3D mesh for main channel; and integration of interpolated 3D mesh with surrounding topography. These techniques are applied and cross-validated by using datasets from Brazos River in Texas, Kootenai River in Montana, and Strouds Creek in North Carolina. Creation of a 3D mesh for the main channel using a channel-fitted coordinate system and subsequent integration with surrounding topography produces a coherent river terrain model, which can be used for 2D/3D hydrodynamic modeling and flood inundation mapping. Although techniques presented in this paper produce better results compared to existing GIS methods, the linear approach has some limitations which can be overcome by accounting for channel meanders, sinuosity and thalweg location.
机译:二维(3D)和二维(2D / 3D)流体力学模型要求对河流测深及其周围区域作为连续表面进行几何描述。在绘制洪水泛滥程度的地图时,还需要使用河流系统的这些表面表示法。创建河流系统的表面表示是一项具有挑战性的任务,因为与插值河流测深法相关的问题然后将这种测深法与周围地形集成在一起。本文的目的是突出与创建综合河流地形相关的关键问题,并提出GIS技术来克服这些问题。本文介绍了以下技术:在河道拟合坐标系中绘制和分析河道数据;插值河流横截面以为主通道创建3D网格;以及内插3D网格与周围地形的集成。通过使用得克萨斯州的布拉索斯河,蒙大拿州的库特奈河和北卡罗来纳州的斯特劳兹河的数据集来应用和交叉验证这些技术。使用通道拟合坐标系为主通道创建3D网格,然后与周围地形集成,可以生成一致的河流地形模型,该模型可用于2D / 3D流体动力学建模和洪水淹没制图。尽管与现有的GIS方法相比,本文介绍的技术产生了更好的结果,但是线性方法仍存在一些局限性,可以通过考虑通道曲折,弯曲度和thalweg位置来克服。

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