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Rockfall hazard assessment along a road in the Sorrento Peninsula, Campania, southern Italy

机译:意大利南部坎帕尼亚索伦托半岛沿道路的崩塌危害评估

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Rockfalls are common in the steep and vertical slopes of the Campania carbonate massifs and ridges, and frequently represent the main threat to the anthropogenic environment, potentially damaging urban areas, scattered houses, roads, etc. Despite the generally limited volumes involved, the high velocity of movement (from few to tens of metres per second) poses rockfalls among the most dangerous natural hazards to man. Evaluating the rockfall hazard is not an easy task, due to the high number of involved factors, and particularly to the difficulty in determining the properties of the rock mass. In this paper, we illustrate the assessment of the rockfall hazard along a small area of the Sorrento Peninsula (Campania region, southern Italy). Choice of the site was determined by the presence of a road heavily frequented by vehicles. In the area, we have carried out detailed field surveys and software simulations that allow generating simple rockfall hazard maps. Over twenty measurement stations for geo-mechanical characterization of the rock mass have been distributed along a 400-m-long slope of Mount Vico Alvano. Following the internationally established standards for the acquisition of rock mass parameters, the main kinematics have been recognized, and the discontinuity families leading to the different failures identified. After carrying out field experiments by artificially releasing a number of unstable blocks on the rock cliff, the rockfall trajectories along the slope were modelled using 2-D and 3-D programs for rockfall analysis. The results were exploited to evaluate the rockfall hazard along the threatened element at risk.
机译:岩屑常见于坎帕尼亚碳酸盐岩地块和山脊的陡峭和垂直斜坡上,常常是对人为环境的主要威胁,可能破坏城市地区,分散的房屋,道路等。运动(每秒几米到几十米)对人类而言是最危险的自然灾害之一。由于涉及的因素很多,特别是由于难以确定岩体的性质,因此评估岩崩危险并非易事。在本文中,我们说明了在索伦托半岛(意大利南部坎帕尼亚地区)的一小部分地区对崩塌危害的评估。站点的选择取决于车辆频繁出行的道路的存在。在该地区,我们进行了详细的现场调查和软件模拟,可生成简单的落石灾害图。沿岩壁的400米长的山坡分布了20多个岩土力学特征的测量站。遵循国际上建立的采集岩体参数的标准,主要的运动学已经得到认可,并且确定了导致不同破坏的不连续性族。在人为地释放岩石峭壁上的不稳定块进行野外实验后,使用2-D和3-D程序对斜坡上的落石轨迹进行建模,以进行落石分析。利用结果评估沿受威胁元素的崩塌危害。

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