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Application of airborne LiDAR to mapping seismogenic faults in forested mountainous terrain, southeastern Alps, Slovenia

机译:机载LiDAR在测绘斯洛文尼亚东南阿尔卑斯山林地带的地震断层中的应用

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摘要

Results are presented of the first airborne LiDAR survey ever flown in Europe for the purpose of mapping the surface expression of earthquake-prone faults. Detailed topographic images derived from LiDAR data of the Idrija and Ravne strike-slip faults in NW Slovenia reveal geomorphological and structural features that shed light on the overall architecture and kinematic history of both fault systems. The 1998 M-W = 5.6, and 2004 M-W = 5.2 Ravne Fault earthquakes and the historically devastating 1511 M = 6.8 Idrija earthquake indicate that both systems pose a serious seismic hazard in the region. Because both fault systems occur within forested terrain, a tree removal algorithm was applied to the data; the resulting images reveal surface scarps and tectonic landforms in unprecedented detail. Importantly, two sites were discovered to be potentially suitable for fault trenching and palaeo-seismological analysis. This study highlights the potential contribution of LiDAR surveying in both low-relief valley terrain and high-relief mountainous terrain to a regional seismic hazard assessment programme. Geoscientists working in other tectonically active regions of the world where earthquake-prone faults are obscured by forest cover would also benefit from LiDAR maps that have been processed to remove the canopy return and reveal the forest floor topography.
机译:介绍了欧洲有史以来第一次机载LiDAR测量的结果,目的是绘制地震易发断层的表面表现图。斯洛文尼亚西北部Idrija和Ravne走滑断层的LiDAR数据得出的详细地形图揭示了地貌和结构特征,为这两个断层系统的整体构造和运动史提供了启示。 1998年的M-W = 5.6,2004年的M-W = 5.2 Ravne断层地震和历史上具有破坏性的1511 M = 6.8伊德里贾地震表明,这两个系统在该地区都构成了严重的地震危险。由于这两个断层系统都发生在森林地形内,因此对数据应用了树消除算法。所得到的图像以前所未有的细节揭示了表面的陡坡和构造地貌。重要的是,发现了两个地点可能适合断层开挖和古地震分析。这项研究强调了LiDAR在低起伏谷地和高起伏山地中的测量对区域地震危险性评估计划的潜在贡献。在世界其他构造活跃的地区工作的地球科学家,在这些容易发生地震的断层被森林覆盖物遮盖的地方,他们也将受益于LiDAR地图,该地图已经过处理,可以去除冠层回波并显示林底地形。

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