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Preliminary result from pore pressure monitoring on an unstable clay slope

机译:不稳定土质边坡孔隙压力监测的初步结果

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摘要

We monitored positive pore water pressure in a clay slope in the Apennines to investigate how rainfall influences the pore pressure distribution along the soil profile and, consequently, affects slope stability conditions. Data refers to the first season of monitoring activities (August 2001 June 2002). The study site is located at the head of a complex landslide, where incipient shallow failures are visible along the slope. The preliminary analysis of pressure data allowed to point out consistent trends, which manifested throughout 11 months. During the cold and wet season, saturation always extends close to the ground surface (<1 m) and pore water pressure measurements indicate a strong downward component of the flow, which is largely dominant over the downslope component, in any condition. Response to rainfalls at shallow depth (1 to 3 m) generally consists in a pressure pulse whose delay is relatively short if compared to low permeability of the soil and whose nature appears clearly transient. Although no failure occurred along the slope during the observation period, it is very likely such transient response would mimic the pore water pressure pattern capable to cause sliding. The presence of prefertial flow path in the sub-surface can only explain anomalous response of some sensors or substantial differences between buried at similar depths.
机译:我们监测了亚平宁山脉粘土坡中的正孔隙水压力,以调查降雨如何影响沿土壤剖面的孔隙压力分布,从而影响边坡稳定性条件。数据是指监测活动的第一个季节(2001年8月,2002年6月)。研究地点位于复杂滑坡的顶部,沿斜坡可见初期的浅层破坏。压力数据的初步分析可以指出一致的趋势,这种趋势在整个11个月中一直表现出来。在寒冷和潮湿的季节,饱和度总是在靠近地面(<1 m)的范围内延伸,孔隙水压力测量结果表明,在任何情况下,水流的下降分量很强,在下降分量中占主导地位。对浅深度(1至3 m)降雨的响应通常是一个压力脉冲,如果与土壤的低渗透性相比,其延迟相对较短,并且其性质显然是短暂的。尽管在观察期间沿斜坡没有发生破坏,但这种瞬态响应很可能会模仿能够引起滑动的孔隙水压力模式。地下存在优先流动路径只能解释某些传感器的异常响应或相似深度下埋藏物之间的实质差异。

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