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A method for locating rockfall impacts using signals recorded by a microseismic network

机译:一种利用微地震网络记录的信号确定落石冲击的方法

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Background Rockfall events are one of the most dangerous phenomena that often cause several damages both to people and facilities. During recent years, the scientific community focused the attention at evaluating the effectiveness of seismological methods in monitoring these phenomena. In this work, we present a quick and practical method to locate the rebounds of some man-induced boulders falls from a landslides crown located in the Northern Apennines (Central Italy). The reconstruction of the trajectories was obtained by means of back analysis performed through a Matlab code that takes into account both the DEM (Digital Elevation Model) of the ground, the geotechnical-geophysical characteristics of the slope and the arrival times of the seismic signals generated by the rock impacts on the ground. Results The localization results have been compared with GPS coordinates of the points and videos footage acquired during the simulations, in order to assess the reliability of the method. In most cases, the retrieved impact points match with the real trajectories, showing a high reliability. Furthermore, four different cases have been identified as a function of the geomechanical, geophysical and morphological conditions. Due to the latter ones, in some case it was necessary to assume different values for the propagation velocity of the elastic waves in the ground, here assumed to be isotropic and homogeneous. Conclusions This work aims at evaluating the effectiveness of a quick and practical method to locate rockfall events using a small-aperture seismic network. The obtained results indicate that the technique can provide quantitative information about the area most prone to impact of detached blocks. The method still presents some uncertainty, but reducing some of the approximations (e.g. by better constraining the velocity model), it could lead to prompt and more accurate results, easily applicable to hazard estimates.
机译:背景落石事件是最危险的现象之一,通常会给人员和设施造成几处破坏。近年来,科学界将注意力集中在评估地震方法监测这些现象的有效性上。在这项工作中,我们提出了一种快速实用的方法来定位位于亚平宁山脉北部(意大利中部)的山体滑坡冠上一些人为引起的巨石的回弹。轨迹的重建是通过使用Matlab代码进行反分析获得的,该代码同时考虑了地面的DEM(数字高程模型),斜坡的岩土地球物理特征和所生成地震信号的到达时间受岩石撞击地面的影响。结果将定位结果与模拟过程中获取的点和视频镜头的GPS坐标进行了比较,以评估该方法的可靠性。在大多数情况下,检索到的冲击点与真实轨迹匹配,显示出很高的可靠性。此外,已根据地质力学,地球物理和形态条件确定了四种不同的情况。由于后者,在某些情况下,有必要对弹性波在地下的传播速度取不同的值,这里假定为各向同性和均质的。结论这项工作旨在评估使用小孔径地震网络确定落石事件的快速实用方法的有效性。所获得的结果表明,该技术可以提供有关最容易发生脱块影响的区域的定量信息。该方法仍然存在一些不确定性,但是减少一些近似值(例如通过更好地约束速度模型),可能会导致迅速而准确的结果,很容易适用于危害评估。

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