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Analysis of microseismic signals and temperature recordings for rock slope stability investigations in high mountain areas

机译:分析微地震信号和温度记录,以进行高山岩质边坡稳定性研究

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The permafrost degradation is a probable cause for the increase of rock instabilities and rock falls observed in recent years in high mountain areas, particularly in the Alpine region. The phenomenon causes the thaw of the ice filling rock discontinuities; the water deriving from it subsequently freezes again inducing stresses in the rock mass that may lead, in the long term, to rock falls. To investigate these processes, a monitoring system composed by geophones and thermometers was installed in 2007 at the Carrel hut (3829 m a.s.l., Matterhorn, NW Alps). In 2010, in the framework of the Interreg 2007-2013 Alcotra project no. 56 MASSA, the monitoring system has been empowered and renovated in order to meet project needs. In this paper, the data recorded by this renewed system between 6 October 2010 and 5 October 2011 are presented and 329 selected microseismic events are analysed. The data processing has concerned the classification of the recorded signals, the analysis of their distribution in time and the identification of the most important trace characteristics in time and frequency domain. The interpretation of the results has evidenced a possible correlation between the temperature trend and the event occurrence. The research is still in progress and the data recording and interpretation are planned for a longer period to better investigate the spatial-temporal distribution of microseismic activity in the rock mass, with specific attention to the relation of microseismic activity with temperatures. The overall goal is to verify the possibility to set up an effective monitoring system for investigating the stability of a rock mass under permafrost conditions, in order to supply the researchers with useful data to better understand the relationship between temperature and rock mass stability and, possibly, the technicians with a valid tool for decision-making.
机译:近年来,在高山地区,特别是在高山地区,多年冻土退化可能是导致岩石不稳定性和落石增加的原因。该现象导致充冰岩石间断的融化;从水中衍生的水随后再次冻结,从而在岩体中产生应力,从长远来看,这可能会导致岩石坠落。为了调查这些过程,2007年在Carrel小屋(3829 m a.s.l.,Matterhorn,NW Alps)安装了由检波器和温度计组成的监视系统。 2010年,在Interreg 2007-2013年Alcotra项目No. 56 MASSA已对监控系统进行了授权和改造,以满足项目需求。本文介绍了此更新系统在2010年10月6日至2011年10月5日之间记录的数据,并分析了329个选定的微地震事件。数据处理涉及记录信号的分类,时间分布分析以及在时域和频域中最重要的迹线特征的识别。结果的解释已证明温度趋势与事件发生之间可能存在相关性。这项研究仍在进行中,计划对数据记录和解释进行较长的时间,以更好地研究岩体中微地震活动的时空分布,特别注意微地震活动与温度的关系。总体目标是验证建立有效的监测系统以研究多年冻土条件下岩体稳定性的可能性,以便为研究人员提供有用的数据,以更好地了解温度与岩体稳定性之间的关系,并可能,为技术人员提供有效的决策工具。

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