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Microseismicity within a karstified rock mass due to cracks and collapses as a tool for risk management

机译:由于裂缝和塌陷而导致的在岩溶岩体中的微震作为风险管理的工具

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摘要

Seismometer arrays have been widely applied to record collapse by controlled explosion in mines and caves. However, most underground failures are natural events, and because they can occur abruptly, underground failures represent a serious geological hazard. An accelerometric array installed on 4 September 2008 has been used to manage the geological risk of the Peschiera Springs drainage plant of Rome’s aqueduct, which is located in the Central Apennines approximately 80 km from Rome, Italy. The plant occupies a karstified carbonatic slope that is extensively involved in gravitational deformations, which are responsible for underground failures such as cracks and collapses. To distinguish among different types of recorded events, an automated procedure was implemented based on the duration, peak of ground acceleration (PGA) and PGA variation in the recordings of the plant’s accelerometric stations. The frequencies of earthquakes and micro-earthquakes due to underground failures are, in general, well correlated. Nevertheless, many underground failure sequences can be directly associated with the continuous deformations that affect the slope. The cumulative Arias intensity trend derived for the underground failures combined with the failure and earthquake frequencies enabled the definition of a control index (CI) that identifies alarming or emergency conditions. The CI can be used as a tool for managing the geological risk associated with the deformational processes that affect the drainage plant.
机译:地震仪阵列已被广泛应用于记录矿山和洞穴中爆炸的受控塌陷。但是,大多数地下破坏都是自然事件,由于它们会突然发生,因此地下破坏代表了严重的地质灾害。 2008年9月4日安装的加速度计阵列已用于管理罗马渡槽Peschiera Springs排水厂的地质风险,该厂位于距意大利罗马约80公里的亚平宁山脉中部。该工厂占据了一个岩溶化的碳质斜坡,该斜坡广泛地参与了重力变形,而重力变形是导致地下破坏(例如裂缝和坍塌)的原因。为了区分记录的事件的不同类型,在工厂的加速度计记录中,根据持续时间,地面加速度峰值(PGA)和PGA变化实施了自动化程序。通常,由于地下破坏而引起的地震和微地震的发生频率具有很好的相关性。然而,许多地下破坏序列可以直接与影响斜坡的连续变形相关联。地下故障的累积Arias强度趋势与故障和地震频率相结合,可以定义识别警报或紧急情况的控制指标(CI)。 CI可以用作管理与影响排水设备的变形过程相关的地质风险的工具。

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