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Influence of infiltration on the periodic re-activation of slow movements in an overconsolidated clay slope

机译:渗透对超固结黏土边坡中周期性运动的周期性重新激活的影响

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In Orvieto (central Italy), overconsolidated clay slopes are affected by intermittent slow movements at the top of the clay formation and within the landslide debris cover. Monthly data from inclinometers, Casagrande piezometers, and rainfall gauges show that velocity, pore pressure, and rainfall are closely related. A relationship is suggested to predict slope re-activation using rainfall history alone, once a pore pressure threshold has been reached and response of pore pressures to rainfall is understood. Pore pressures have been continuously monitored through vibrating wire cells. The threshold for shallow movements, critical for infrastructures and buildings, was identified by comparing displacement histories of a shallow movement, representative of many other ones recognized over the slope, and pore pressure, both measured at the centre of the sliding mass. The impact of infiltrated rainfall on groundwater flow was investigated through transient seepage analyses. Seepage analyses performed using hydraulic properties from laboratory and in situ tests do not fully depict the observed pore pressures because field data miss some structural characters and lithologic variations. The hydraulic properties of the shallower model layers were refined, based on field observations and interpretation of monitoring data, to have a good match between computed and measured pore pressures. Once the model is tested at different locations along a slope, it could be used to predict movement re-activation using only rainfall data.
机译:在奥尔维耶托(意大利中部),过度固结的粘土坡度受到粘土地层顶部和滑坡碎屑覆盖层内间歇性缓慢运动的影响。来自倾角仪,Casagrande压强仪和降雨仪的月度数据表明,速度,孔隙压力和降雨密切相关。一旦达到孔隙压力阈值并且理解了孔隙压力对降雨的响应,建议建立一种关系来单独使用降雨历史来预测边坡重新活化。孔压已通过振动的线孔不断监测。浅层运动的阈值对于基础设施和建筑物至关重要,它是通过比较浅层运动的位移历史(代表在斜坡上识别的许多其他位移的历史)和孔隙压力(均在滑动质量的中心测得)来确定的。通过瞬态渗流分析研究了降雨入渗对地下水流量的影响。由于现场数据缺少某些结构特征和岩性变化,因此使用实验室和原位测试的水力特性进行的渗流分析不能完全描述观测到的孔隙压力。根据现场观察和监测数据的解释,对较浅模型层的水力特性进行了改进,以使计算出的孔隙压力与测量的孔隙压力具有良好的匹配性。一旦在沿斜坡的不同位置测试了模型,就可以仅使用降雨数据将其用于预测运动重新激活。

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