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Relationship between electrical resistivity and basic geotechnical parameters for marine clays

机译:海相粘土的电阻率与基本岩土参数之间的关系

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摘要

Recently, considerable efforts have been made in the attempt to map quick clay areas using electrical resistivity measurements. However there is a lack of understanding regarding which soil parameters control the measured resistivity values. To address this issue, inverted resistivity values from 15 marine clay sites in Norway have been compared with basic geotechnical index properties. It was found that the resistivity value is strongly controlled by the salt content of the pore fluid. Resistivity decreases rapidly with increasing salt content. There is also a relatively clear trend of decreasing resistivity with increasing clay content and plasticity index. Resistivity values become very low (≈5 UΩm) for high clay content (>50%), medium- to high-plasticity (I _p ≈ 20%) materials with salt content values greater than about 8 g/L (or corresponding remoulded shear strength values greater than 4 kPa). For the range of values studied, there is poor correlation between resistivity and bulk density and between resistivity and water content. The data studied suggest that the range of resistivity values corresponding to quick clay is 10 to 100 U·m, which is consistent with other published limits. A comparison is made between two-dimensional electrical resistivity tomography (ERT) and resistivity cone penetration test (RCPTU) data for two of the sites and the two sets of data show similar trends and values irrespective of scale effect.
机译:最近,在尝试使用电阻率测量来绘制快速粘土区域方面已经做出了相当大的努力。但是,对于哪种土壤参数控制测得的电阻率值缺乏了解。为了解决这个问题,将挪威15个海相粘土站点的反电阻率值与基本的岩土工程指标特性进行了比较。发现电阻率值受孔隙流体中盐分的强烈控制。电阻率随盐含量的增加而迅速降低。随着粘土含量和可塑性指数的增加,电阻率也有相对明显的下降趋势。对于高粘土含量(> 50%),中至高塑性(I _p≈20%),盐含量值大于约8 g / L(或相应的重塑剪切)的材料,电阻率值变得非常低(≈5UΩm)强度值大于4 kPa)。对于所研究的值的范围,电阻率与堆积密度之间以及电阻率与含水量之间的相关性较差。所研究的数据表明,与速成粘土相对应的电阻率值范围为10至100 U·m,这与其他已公开的限值一致。比较了两个位置的二维电阻率层析成像(ERT)和电阻率锥穿度测试(RCPTU)数据,两组数据显示了相似的趋势和值,而与尺度效应无关。

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