首页> 外文期刊>Landslides >Landslide detection and monitoring capability of boat-based mobile laser scanning along Dieppe coastal cliffs, Normandy
【24h】

Landslide detection and monitoring capability of boat-based mobile laser scanning along Dieppe coastal cliffs, Normandy

机译:船用移动激光扫描在诺曼底迪耶普沿海悬崖上的滑坡检测和监测能力

获取原文
获取原文并翻译 | 示例
           

摘要

Integrated in a wide research assessing destabilizing and triggering factors to model cliff dynamic along the Dieppe's shoreline in High Normandy, this study aims at testing boat-based mobile LiDAR capabilities by scanning 3D point clouds of the unstable coastal cliffs. Two acquisition campaigns were performed in September 2012 and September 2013, scanning (1) a 30-km-long shoreline and (2) the same test cliffs in different environmental conditions and device settings. The potentials of collected data for 3D modelling, change detection and landslide monitoring were afterward assessed. By scanning during favourable meteorological and marine conditions and close to the coast, mobile LiDAR devices are able to quickly scan a long shoreline with median point spacing up to 10cm. The acquired data are then sufficiently detailed to map geomorphological features smaller than 0.5m(2). Furthermore, our capability to detect rockfalls and erosion deposits (>m(3)) is confirmed, since using the classical approach of computing differences between sequential acquisitions reveals many cliff collapses between Pourville and Quiberville and only sparse changes between Dieppe and Belleville-sur-Mer. These different change rates result from different rockfall susceptibilities. Finally, we also confirmed the capability of the boat-based mobile LiDAR technique to monitor single large changes, characterizing the Dieppe landslide geometry with two main active scarps, retrogression up to 40m and about 100,000m(3) of eroded materials.
机译:这项广泛的研究评估了不稳定因素和触发因素,从而对高诺曼底地区迪耶普海岸线上的悬崖动力学进行了建模,该研究旨在通过扫描不稳定的沿海悬崖的3D点云来测试船载移动LiDAR功能。在2012年9月和2013年9月进行了两次采集活动,扫描(1)30公里长的海岸线和(2)在不同环境条件和设备设置下的相同测试悬崖。随后评估了收集的数据用于3D建模,变化检测和滑坡监测的潜力。通过在有利的气象和海洋条件下以及靠近海岸的地方进行扫描,移动式LiDAR设备能够快速扫描长海岸线,中点间距最大为10cm。然后足够详细地采集数据,以映射小于0.5m(2)的地貌特征。此外,我们的探测岩崩和侵蚀沉积物(> m(3))的能力得到了确认,因为使用计算连续采集之间差异的经典方法揭示了Pourville和Quiberville之间的许多悬崖坍塌,而Dieppe和Belleville-sur-之间只有很少的变化。 Mer。这些不同的变化率是由不同的落石敏感性引起的。最后,我们还证实了船载移动式LiDAR技术能够监测单个大变化的能力,该方法具有两种主要活动陡坡,即回退至40m和大约100,000m(3)的侵蚀材料,从而表征了Dieppe滑坡的几何形状。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号