结合机载和地面激光扫描监测海岸进程

K. Julge, M. Eelsalu, E. Grunthal, S. Talvik, A. Ellmann, T. Soomere, H. Tõnisson
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引用次数: 15

摘要

本研究探讨了联合使用地面(TLS)和机载激光扫描(ALS)的潜力,以量化陆上海滩的快速和空间不均匀变化,并表征海岸过程的强度。这种利用扫描激光脉冲获取被测物体高分辨率三维表面的遥感技术应用于波罗的海塔林湾皮里塔海滩的海滩段。利用不同季节获得的扫描点云,建立了两个数字地形模型,并进行了对比,分析了侵蚀积积点的范围和分布。在消除了系统误差后,ALS/TLS组合可获得亚分米精度的海滩高度测定。分析不仅揭示了研究区域相应的体积变化,而且揭示了经典监测方法所忽略的跨越和沿水线的海滩内部动力学的几个特征。本文还讨论了两种激光扫描方法联合监测海岸过程的优点和缺点,以及监测结果的准确性。
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Combining airborne and terrestrial laser scanning to monitor coastal processes
This study explores the potential of joint use of terrestrial (TLS) and airborne laser scanning (ALS) to quantify rapid and spatially inhomogeneous changes to the subaerial beach and to characterize the intensity of coastal processes. This remote sensing technology that uses scanning laser pulses for acquiring high-resolution three-dimensional surface of the measured object is applied to beach segment of the Pirita Beach (Tallinn Bay, the Baltic Sea). The extent and distribution of erosion and accumulation spots are analyzed by means of creating and comparing two digital terrain models of these areas from scanning point clouds obtained in different seasons. After elimination of systematic errors the ALS/TLS combination yields sub-decimeter accuracy for height determination of the beach. The analysis reveals not only the corresponding volume changes in the study area but also several features of internal dynamics of the beach across and along the waterline that are overlooked by classical monitoring methods. The benefits and shortcomings of combining the two laser scanning methods for monitoring coastal processes and the accuracy of the results are also discussed.
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