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首页> 外文期刊>Natural Hazards >Assessment of tectonic-controlled rock fall processes threatening the ancient Appia route at the Aurunci Mountain pass (central Italy)
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Assessment of tectonic-controlled rock fall processes threatening the ancient Appia route at the Aurunci Mountain pass (central Italy)

机译:Aurunci山通(意大利中部)古代安排威胁古代安排威胁的构造控制岩石流程评估

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This research addresses ongoing rock fall processes that affect the tract of the ancient Appia route crossing the Apennines at the Aurunci Mountain pass (central Italy). Elements of cultural heritage are endangered as calcareous blocks descending from the rock slope that delimits the route track were observed lying on the pavement. Based on cooperation between geologists and experts in remote sensing, a multi-disciplinary study was pursued to assess rock fall susceptibility. This study included aero-photogrammetric reconstruction of slope topography, field-based structural and kinematic analyses, terrestrial laser scanner and unmanned aerial system surveys and probabilistic rock fall modelling. This last was performed by simulating a large number of 3D trajectories and initially adopting a lumped mass approach, therefore tracking dimensionless rock blocks (kinematic modelling). The structural setting of the investigated rock slope shows evidence of four tectonic phases, including in chronological order folding, thrusting, strike-slip and normal faulting. Non-homogeneous joint sets distribution within the rock masses, due to the tectonic inheritance, was found to strongly condition rock failure mechanisms and sizes of detaching blocks. Different estimates of design rock block volumes and masses were integrated into kinematic modelling, finally achieving a dynamic 3D reconstruction of the rock fall process. Based on modelling results, a remediation plan has been drafted focused on positioning and sizing of elastic barriers.
机译:这项研究解决了持续的岩石秋季流程,这些过程会影响古老的Appia路线的道路,在Aurunci山通道(意大利中部)横穿亚平宁。文化遗产的元素濒临灭绝,因为岩石坡度下降的钙质块被观察到路面上观察到路线轨道。基于地质学家与遥感专家的合作,追求多学科研究来评估岩石易感性。本研究包括坡地地形,基于现场的结构和运动学分析,地面激光扫描器和无人机系统调查和概率岩石坠落模拟的航空摄影测量。最后是通过模拟大量3D轨迹并最初采用集总质量方法来执行的最后,因此跟踪无量纲岩块(运动学建模)。调查岩石坡的结构设置显示了四个构造阶段的证据,包括按时间顺序折叠,推力,防滑和正常断层。由于构造遗传,岩体内的非均匀关节集合分布,发现强烈的岩石破坏机构和拆卸块的尺寸。设计岩石块体积和质量的不同估计被整合到运动学建模中,最后实现了岩石落下过程的动态3D重建。根据建模结果,重点侧重于弹性屏障的定位和尺寸。

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