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Lidar Elevation Data for Surface Hydrologic Modeling: Resolution and Representation Issues

机译:用于表面水文建模的激光雷达高程数据:分辨率和表示问题

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This paper is concerned with the application of high spatial resolution elevation data derived from light detection and ranging technologies (lidar) to surface hydrologic modeling. In recent years, airborne lidar technology has been employed to develop high accuracy digital elevation models (DEMs) with horizontal resolution on the order of a few meters. As with any spatial data product there are limits to the lidar's practical use that vary with the intended application. This paper considers potential issues and challenges for the use of lidar-derived DEMs in surface hydrologic modeling applications, such as characterizing flow direction and power, identifying sub-basins in a watershed, and calculating upstream contributing area and other variables. We compare results using conventional 30m DEMs and 6m lidar for a high relief study area and a low relief study area. Results are more comparable between these data sources, regardless of hydrologic operation, for the high relief area, while the similarity of results in the low relief area is dependent upon the particular operation. Post-processing on the lidar data successfully removed such flow obstacles as bridges that might have artificially impeded surface flow. An exploration of the effect of spatial resolution on results suggests that cell size is a more significant factor than production method.
机译:本文涉及从光检测和测距技术(激光雷达)获得的高空间分辨率高程数据在地表水文建模中的应用。近年来,机载激光雷达技术已用于开发水平分辨率约为几米的高精度数字高程模型(DEM)。与任何空间数据产品一样,激光雷达的实际使用受到限制,具体取决于预期的应用。本文考虑了在地面水文建模应用中使用激光雷达衍生的DEM的潜在问题和挑战,例如表征流向和功率,识别流域中的子流域以及计算上游贡献面积和其他变量。我们比较了传统的30m DEM和6m激光雷达在高浮雕研究区域和低浮雕研究区域中的结果。不论水文运行如何,对于高起伏区域,这些数据源之间的结果更具可比性,而在低起伏区域中,结果的相似性取决于特定的运行情况。对激光雷达数据的后处理成功地消除了诸如桥梁的流动障碍,这些障碍可能人为地阻碍了地面流动。探索空间分辨率对结果的影响表明,细胞大小比生产方法更重要。

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