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Application of geotechnical and geophysical field measurements in an active alpine environment

机译:岩土和地球物理场测量在活性高寒环境中的应用

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Rainfall can trigger landslides, rockfalls and debris flow events. When rainfall infiltrates into the soil, the suction (if there is any) is reduced, until positive water pressure can be developed, decreasing the effective stresses and leading to a potential failure. A challenging site for the study of mass movement is the Meretschibach catchment, a location in the Swiss Alps in the vicinity of Agarn, Canton of Valais. To study the effect of rainfall on slope stabilities, the soil characterization provides valuable insight on soil properties, necessary to establish a realistic ground model. This model, together with an effective long term-field monitoring, deliver the essential information and boundary conditions for predicting and validating rainfall-induced slope instabilities using numerical and physical modelling. Geotechnical monitoring, including soil temperature and volumetric water content measurements, has been performed on the study site together with geophysical measurements (ERT) to study the effect of rainfall on the (potential) triggering of landslides on a scree slope composed of a surficial layer of gravelly soil. These techniques were combined to provide information on the soil characteristics and depth to the bedrock. Seasonal changes of precipitation and temperature were reflected in corresponding trends in all measurements. A comparison of volumetric water content records was obtained from decagons, time domain reflectometry (TDR) and electrical resistivity tomography (ERT) conducted throughout the spring and summer months of 2014, yielding a reasonable agreement.
机译:降雨可以触发滑坡,岩石和碎片流动事件。当降雨渗透到土壤中时,吸入(如果有的话)降低,直到可以开发正水压,降低有效应力并导致潜在的失败。群众运动研究的一个具有挑战性的场地是Meretschibach集水区,位于瓦拉斯州郡阿加尔的瑞士阿尔卑斯山的位置。为研究降雨对坡度稳定性的影响,土壤表征对建立现实地面模型的土壤性质提供了有价值的洞察力。该模型与有效的长期现场监控一起,提供了使用数值和物理建模预测和验证降雨诱导的斜坡不稳定性的基本信息和边界条件。在研究部位以及地球物理测量(ERT)上进行了地际监测,包括土壤温度和体积水含量测量,以研究降雨对(潜在)触发山体滑坡对由曲线坡面的影响砾石土。这些技术被组合为提供有关土壤特性和深度到基岩的信息。沉淀和温度的季节变化反映在所有测量的相应趋势中。从2014年春季和夏季,在整个春季和夏季进行的脱屑,时域反射区(TDR)和电阻率断层扫描(ERT)获得了体积含水量记录的比较,得到了合理的协议。

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