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Slope failures evaluation and landslides investigation using 2-D resistivity method

机译:用二维电阻率法评估边坡破坏和滑坡

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Slope failure is a complex phenomenon that may caused to landslides. Buildings and infrastructure such as transportation facilities and pipelines located within the boundaries of a landslide can be damaged or destroyed. Slope failure classification and various factors contributing to the instability using 2-D resistivity survey conducted in Selangor, Malaysia are described. Six 2-D resistivity survey lines with 5?m minimum electrode spacing using Pole-dipole array were performed. The data were processed using Res2Dinv and surfer10 software to evaluate the subsurface characteristics. The 2-D resistivity results show that the subsurface consist of two main zones. The first zone was alluvium or highly weathered with resistivity value of 100–1000???m and depth of >30?m. This zone consists of saturated area with resistivity value of 1–100???m and boulders with resistivity value of 1200–7000???m. The second zone with resistivity value of >7000???m was interpreted as granitic bedrock. The study area was characterized by saturated zones, highly weathered zone, highly contain of sand and boulders that will trigger slope failure in the survey area. This will cause to low strength of soil, debris flow and movement of earth. On the basis of the case examples described, 2-D resistivity method is categorized into desirable and useful method in determination of slope failure and future assessments.
机译:边坡破坏是一种可能导致滑坡的复杂现象。位于滑坡边界内的建筑物和基础设施(例如运输设施和管道)可能会受到损坏或破坏。描述了在马来西亚雪兰莪州进行的2-D电阻率调查中的边坡破坏分类和造成不稳定性的各种因素。使用极-偶极子阵列进行了6条2D电阻率测量线,最小电极间距为5?m。使用Res2Dinv和surfer10软件处理数据以评估地下特征。二维电阻率结果表明,地下包含两个主要区域。第一个区域是冲积层或高度风化的,其电阻率值为100-1000?m,深度大于30?m。该区域由电阻率值为1–100 ??? m的饱和区和电阻率值为1200–7000 ??? m的巨石组成。电阻率值大于7000?m的第二个带被解释为花岗岩基岩。研究区的特点是饱和区,高风化区,高含沙量和巨石含量,这将触发调查区的边坡破坏。这将导致土壤强度低,泥石流和泥土运动。根据所描述的案例,在确定边坡破坏和未来评估时,将二维电阻率方法分类为理想且有用的方法。

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