使用机载激光雷达评估美国东南部海岸侵蚀

IV David F. Richards, Adam M. Milewski, B. Gregory
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引用次数: 0

摘要

美国东南部沿海海平面的变化影响着沿海的动态响应。特别是,国家公园管理局(NPS)的东南沿海网络(SECN)显示了海平面波动导致海岸侵蚀的证据。研究人员分析了从NOAA获取的马坦萨斯堡国家纪念碑、普拉斯基堡国家纪念碑、查尔斯平克尼国家历史遗址和Lookout角国家海岸的机载激光雷达数据,以确定东南沿海地区海拔和未固结沉积物质的空间体积随时间的变化。从2006年到2018年,在整个研究区域绘制了高程增加(沉积物质)或减少(侵蚀物质)的区域。结果表明,松散泥沙分布和形态动力平衡随时间变化呈准循环过程。海岸带在侵蚀和沉积过程之间稳定地摇摆,影响着海岸带的地貌动态。由于这种环境现象,使用激光雷达来评估沿海的可持续性和弹性是显而易见的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Use of Airborne LiDAR in Assessing Coastal Erosion in the Southeastern USA
Changes in sea level along the coastal southeastern United States (U.S.) influence the dynamic coastal response. In particular, the Southeast Coastal Network (SECN) of the National Park Service (NPS) has exhibited evidence of fluctuations in sea level which caused coastal erosion. Airborne LiDAR acquired from NOAA for Fort Matanzas National Monument, Fort Pulaski National Monument, Charles Pinckney National Historic Site, and Cape Lookout National Seashore were analyzed to identify changes in both elevation and the spatial volume of unconsolidated sedimentary material in the coastal southeast over time. Areas that exhibited an increase (deposited material) or decrease (eroded material) in elevation were mapped across the study area from 2006 to 2018. Results indicate a quasi-cyclic process where unconsolidated sediment distribution and the morphodynamic equilibrium changes with time. The coastal zones are steadily oscillating between the process of erosion and deposition affecting the coastal geomorphological dynamic. The use of LiDAR for evaluating coastal sustainability and resiliency due to this environmental phenomenon is clear.
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