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Pore-water pressure characteristics of two instrumented residual soil slopes

机译:两种仪表残留土坡的孔隙水压特性

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Responses of pore-water pressures in unsaturated soil slopes during rainfall have major influences in triggering slope failures. Two fully instrumented residual soil slopes located in two major geological formations in Singapore, that are Bukit Timah Granite and sedimentary Jurong Formation, were monitored for a period of several months. Real-time monitoring systems in the slopes were used to provide pore-water pressure, rainfall, and ground water level data. Characteristics of pore-water pressure distributions in both slopes during rainfalls were studied and compared. The monitoring results indicate that the Bukit Timah Granite residual soil slope has a deeper ground water table and a thicker unsaturated zone than the sedimentary Jurong Formation residual soil slope. A higher permeability of the Bukit Timah Granite residual soil results in a faster change in negative pore-water pressure due to rainwater infiltration as compared to those of the sedimentary Jurong Formation residual soil. Consequently, changes in shear strength and factor of safety of the Bukit Timah Granite residual soil slope during rainfall have different characteristics than those of the Jurong Formation residual soil. The differing characteristics of pore-water pressure responses during rainfall in these two residual soils are analyzed and highlighted in the paper.
机译:降雨期间不饱和土坡孔压力的响应在触发斜坡故障时具有重大影响。在新加坡的两个主要地质形成的两个完全仪表剩余的土壤斜坡,是Bukit Timah Granite和沉积裕廊形成,在几个月内监测。斜坡中的实时监测系统用于提供孔隙水压,降雨和地面水位数据。研究并比较了两次降雨期间坡度孔隙水压分布的特征。监测结果表明,Bukit Timah花岗岩残余土斜率具有更深的地面水位和比沉积裕廊形成残留土斜率更厚的不饱和区。与沉积裕廊形成残留土壤相比,富氏蒂瓦花岗岩剩余土壤的较高渗透性导致负面孔隙水压力的变化更快。因此,在降雨期间,在降雨期间剪切强度的变化和Bukit Timah花岗岩剩余土壤坡度的变化具有不同于裕廊形成残留土壤的特性。分析了这两个残留土壤中降雨期间孔隙水压应答的不同特征,并突出了纸张。

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