首页> 外文期刊>Landslides >Formulation of landslide risk scenarios using underground monitoring data and numerical models: conceptual approach, analysis, and evolution of a case study in Southern Italy
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Formulation of landslide risk scenarios using underground monitoring data and numerical models: conceptual approach, analysis, and evolution of a case study in Southern Italy

机译:地下监测数据和数值模型的山体滑坡风险场景:意大利南部案例研究的概念方法,分析和演化

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摘要

Understanding the mechanism of a landslide and its evolution is of fundamental importance in the risk management process. This work introduces an articulated approach to the problem, applying it to a specific case in the south of Italy where a gravitational movement insists on a section of an important highway. In recent years, the site has been investigated from a geomorphological and a lithological point of view, and a comprehensive geomechanical characterization has been carried out by means of on-site and laboratory tests. The area has been instrumented with a monitoring system composed of automatic inclinometers, piezometers, a rainfall station, and time domain reflectometry (TDR) cables. These sensors have monitored the deformation processes and their correlation with groundwater fluctuation. A 2D finite differences model (FDM) of the slope has been created, calibrated, and validated through back analysis, carried out using the monitoring data available. A secondary creep phenomenon, barely influenced by the water level rise due to occasional rainfall, has been identified and modeled using the Burgers viscoelastic constitutive model. Variations in the piezometric level were introduced and their effect accounted for the numerical model refinement. Once the improvements had been completed together with the reproduction of past events, a predictive analysis was carried out in order to forecast the most probable slope behavior relative to the incoming year. At the end of this phase, the infrastructure supervisor should have information about possible deformations to be compared with the near real-time monitoring outcomes and design assumptions. This procedure allows real-time monitoring of the compatibility of slope deformations with highway safety.
机译:了解滑坡的机制及其进化在风险管理过程中具有重要意义。这项工作介绍了一个铰接式的问题,将其应用于意大利南部的特定情况,其中引力运动被坚持在一个重要的公路的一部分上。近年来,该网站已从地貌和岩性角度调查,并且通过现场和实验室测试进行了综合的地质力学表征。该地区已经用自动倾角仪,压力计,降雨站和时域反射仪(TDR)电缆组成的监测系统。这些传感器监测了变形过程及其与地下水波动的相关性。通过可用的监控数据进行斜坡的2D有限差异模型(FDM),校准和验证并通过后部进行验证。已经使用汉堡粘弹性本构模型识别和建模了次要蠕变现象,几乎受水位上升的水位上升的影响。引入了压力水平的变化,其效果占数值模型细化。一旦改进与过去事件的繁殖一起完成,就开展了预测分析,以预测相对于收入年份最可能的坡度行为。在此阶段结束时,基础设施主管应具有有关可能的变形的信息,与近实时监测结果和设计假设进行比较。该过程允许实时监控与公路安全的斜率变形的兼容性。

著录项

  • 来源
    《Landslides》 |2019年第5期|共11页
  • 作者单位

    Univ Parma DIA Dept Engn &

    Architecture Parco Area Sci 181-A I-43124 Parma Italy;

    Univ Parma DIA Dept Engn &

    Architecture Parco Area Sci 181-A I-43124 Parma Italy;

    Univ Parma DIA Dept Engn &

    Architecture Parco Area Sci 181-A I-43124 Parma Italy;

    Univ Calabria DIMES Via P Bucci Edificio 42C Piano 5 Arcavacata I-87036 Arcavacata Di Rende CS Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 崩塌;
  • 关键词

    Landslide; Monitoring; Numerical modeling; Real time; EWS; Creep;

    机译:滑坡;监测;数值建模;实时;EWS;蠕动;

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