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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Utilizing DEMs derived from LIDAR data to analyze morphologic change in the North Carolina coastline
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Utilizing DEMs derived from LIDAR data to analyze morphologic change in the North Carolina coastline

机译:利用从LIDAR数据获得的DEM分析北卡罗莱纳州海岸线的形态变化

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摘要

By using digital elevation model (DEM) data derived from light detection and ranging (LIDAR) data, an approximately 70-km stretch of the southern North Carolina coastline was studied. The coastline consists of five barrier islands located between Masonboro, Island at the southern extent and Topsail Island at the northern extent. The high-resolution DEM data allowed for a comprehensive visual/quantitative investigation into the spatial patterns of morphologic change that occurred to the barrier islands' oceanfront beaches between 1997 and 2000. This study also demonstrated the usefulness of using laser altimetry to examine barrier islands' response to level of tropical activity, and showed that the coastal process of overwash was recognized as an integral component of barrier island landward migration. Means of net volumetric change per unit area (m(3)/m(2)) for study areas of different beach management practices, characterized as developed, undeveloped, and nourished beaches on a yearly basis for the period between 1997 and 2000 were derived. t-Test of the means has been conducted, and results showed that beaches differed statistically if different management practices were applied to them, and the differences were minimized or disappeared if sequential hurricanes or storms affected the beaches. (C) 2002 Elsevier Science Inc. All rights reserved. [References: 17]
机译:通过使用从光检测和测距(LIDAR)数据得出的数字高程模型(DEM)数据,研究了北卡罗来纳州南部海岸线约70公里的延伸段。海岸线由位于梅森伯勒,南部的岛屿和北部的托普赛尔岛之间的五个障碍岛组成。高分辨率的DEM数据可以对视觉范围和定量情况进行全面的视觉/定量研究,以调查1997年至2000年之间屏障岛海滨海滩发生的形态变化的空间格局。该研究还证明了使用激光测高仪检查屏障岛的形态的有用性。对热带活动水平的反应,并表明沿海过度冲洗过程被认为是屏障岛陆上迁徙的组成部分。推导了不同海滩管理实践的研究区域的单位面积净体积变化的平均值(m(3)/ m(2)),其特征是在1997年至2000年期间,每年以发达,未发达和营养丰富的海滩为特征。方法的t检验已经进行,结果表明,如果对海滩采用不同的管理方法,则海滩在统计上会有所不同;如果连续的飓风或暴风雨影响海滩,则差异会最小化或消失。 (C)2002 Elsevier Science Inc.保留所有权利。 [参考:17]

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