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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >STUDY ON THE APPLICATION OF AIRBORNE LIDAR IN SEISMIC ACTIVE FAULTS IN THE NORTHERN RIM OF QINLING MOUNTAIN AND THE PIEDMONT OF HUASHAN IN CHINA
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STUDY ON THE APPLICATION OF AIRBORNE LIDAR IN SEISMIC ACTIVE FAULTS IN THE NORTHERN RIM OF QINLING MOUNTAIN AND THE PIEDMONT OF HUASHAN IN CHINA

机译:秦岭北边缘北边缘地震活性故障在中国北边缘的应用研究及华山的皮埃蒙特

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摘要

Seismic active faults are closely related to earthquake disasters. Active faults determine the location and magnitude of destructive earthquakes. Therefore, strengthening active fault investigation and research is one of the main ways to reduce earthquake disasters. Airborne LiDAR, as a measurement method that can quickly obtain large-area and high-precision DEM results, can not only obtain structural distribution features of large-scale study areas on a macro scale, and determine the location and trend of active faults, but also be used to identify microstructural landforms and take researches on fine geomorphic structural features. In this paper, based on the detailed introduction, analysis and summary of the technical schemes, data processing and application of the airborne LiDAR technique in the northern margin of the Qinling Mountains and the Huashan Piedmont Fault Zone, it was demonstrated on the basic methods and technical advantages in seismic active faults and geomorphological research work of the airborne LiDAR technology, and a new and efficient method for seismic fault study was provided.
机译:地震活性断裂与地震灾害密切相关。积极的故障确定破坏性地震的位置和大小。因此,加强积极的故障调查和研究是减少地震灾害的主要方法之一。空气传播的LIDAR是一种可以快速获得大面积和高精度DEM结果的测量方法,不仅可以获得大规模研究领域的结构分布特征,并确定积极故障的位置和趋势,但是还用于识别微观结构地貌并采取细地貌结构特征研究。本文根据详细的介绍,分析和摘要,在秦岭北边缘和华山皮蒙特断层区的空中激光雷达技术的技术方案,数据处理和应用,并在基本方法上证明了它提供了空中激光雷达技术地震积极故障和地貌研究工作的技术优势,并提供了一种新的有效的地震故障研究方法。

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