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Improving Low-Relief Coastal LiDAR DEMs with Hydro-Conditioning of Fine-Scale and Artificial Drainages

机译:通过微尺度和人工排水的加氢来改善低浮起的沿海LiDAR DEM

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摘要

Improvements in Light Detection and Ranging (LiDAR) technology and spatial analysis of high-resolution digital elevation models (DEMs) have advanced the accuracy and diversity of applications for coastal hazards and natural resources management. This article presents a concise synthesis of LiDAR analysis for coastal flooding and management applications in low-relief coastal plains and a case study demonstration of a new, efficient drainage mapping algorithm. The impetus for these LiDAR applications follows historic flooding from Hurricane Floyd in 1999, after which the State of North Carolina and the Federal Emergency Management Agency (FEMA) undertook extensive LiDAR data acquisition and technological developments for high-resolution floodplain mapping. An efficient algorithm is outlined for hydro-conditioning bare earth (BE) LiDAR DEMs using available US Geological Survey1 National Hydrography Dataset (NHD) canal and ditch vectors. The methodology is illustrated in Moyock, North Carolina, for refinement of hydro-conditioning by combining pre-existing BE DEMs with spatial analysis of LiDAR point clouds in segmented and buffered ditch and canal networks. The methodology produces improved maps of fine-scale drainage, reduced omission of areal flood inundation, and subwatershed delineations that typify heavily ditched and canalled drainage areas. These preliminary results illustrate the capability of the technique to improve the representation of ditches in DEMs as well as subsequent flow and inundation modeling that could spur further research on low-relief coastal LiDAR applications.
机译:光检测和测距(LiDAR)技术的改进以及高分辨率数字高程模型(DEM)的空间分析提高了海岸灾害和自然资源管理应用程序的准确性和多样性。本文简要介绍了LiDAR分析在低起伏沿海平原的沿海洪水和管理应用中的简要综合,并以一种新型高效排水映射算法为例进行了演示。这些LiDAR应用的推动力是在1999年飓风Floyd发生历史性洪水之后,北卡罗来纳州和联邦紧急事务管理局(FEMA)为高分辨率洪泛区制图进行了广泛的LiDAR数据采集和技术开发。使用可用的美国地质调查局1国家水文数据集(NHD)渠道和沟渠矢量,概述了一种有效的算法,可用于对LiDAR(Dar LiDAR)进行水处理。该方法在北卡罗来纳州的莫约克(Moyock)进行了说明,该方法通过将现有的BE DEM与分段和缓冲的沟渠和运河网络中的LiDAR点云的空间分析相结合来优化水处理。该方法产生了改进的细规模排水图,减少了区域洪水泛滥的遗漏,并且以分水岭和沟渠为代表的小流域划定了轮廓。这些初步结果说明了该技术改善DEM中的沟渠表示以及随后的流量和淹没模型的能力,这可能会刺激对低浮力沿海LiDAR应用的进一步研究。

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