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Mapping of quick clay using geoelectrical imaging and CPTU-resistivity

机译:利用地电成像和CpTU电阻率绘制快速粘土

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摘要

Quick clay has a major impact on landslide risk and it is therefore of considerable interest to map its presence and extent. In Sweden, quick clay has been involved in most landslides in soft clay with serious consequences. The predominant method for detection of quick clay in Sweden has been to take undisturbed samples and to perform fall-cone tests on the clay in its undisturbed and remoulded state. Originally deposited in saltwater in a marine environment, the salt maintains the stability of the clay. When the salt is leached out, the clay can become quick. When salt is leached from clay of marine origin the resistivity increases. In this study the intention was to calibrate electrical imaging with cone penetration tests with resistivity measurements (CPTU-R) and measurement of the total penetration resistance, i.e. the total rod friction, together with both geotechnical and chemical analyses on specimens in the laboratory. The results show that electrical imaging can be used for separation of leached soil volumes in marine clays that may form quick clay, from those where the salt content remains too high for this. In the dry crust and thin weathered zone at the top, the resistivity is high but the clay is non-quick. Also soils with less clay content will have higher resistivity without being quick. The technique may thus be used as a screening tool in order to delimit areas where further investigations are needed from areas that do not require more attention. This has a potential of saving significant resources if used in a relatively early stage of the survey process. It can also increase the overall quality and reliability of the survey results. The induced polarization (IP) results are consistent and seem to be geologically realistic, and appear to contain additional information to the resistivity that is related to material or electrochemical properties, although it is not clear how due to lack of sufficiently detailed reference data. The electrical imaging gives a general picture of the variation in resistivity along soil sections. The CPTU-R gives variations at depth with very high vertical resolution in one specific location. There is generally good agreement between the models based on electrical imaging and the CPTU-R. The CPTU-R results may be used to calibrate the electrical imaging results with quick clay estimations based on rod friction.
机译:快速黏土对滑坡危险性有重大影响,因此,绘制黏土的存在和程度非常重要。在瑞典,快黏土涉及软黏土中的大多数滑坡,造成了严重后果。在瑞典,检测快速黏土的主要方法是采集未扰动的样品,并对未扰动和重塑状态的黏土进行落锥测试。盐最初沉积在海洋环境中的盐水中,可保持粘土的稳定性。滤出盐后,粘土会变快。从海洋粘土中浸出盐后,电阻率增加。在这项研究中,其目的是通过使用电阻率测量(CPTU-R)的圆锥体渗透测试和总渗透电阻(即总杆摩擦)的测量以及实验室中对标本的岩土和化学分析,来校准电成像。结果表明,电成像可用于分离可能形成速成粘土的海相粘土中的沥滤土壤体积,将其从盐含量仍然太高的那些中分离出来。在顶部的干地壳和薄薄的风化带中,电阻率很高,但粘土不是很快的。粘土含量少的土壤也将具有较高的电阻率,而不会很快。因此,该技术可以用作筛选工具,以便从不需要更多关注的区域中划出需要进一步研究的区域。如果在调查过程的相对早期阶段使用,则有可能节省大量资源。它还可以提高调查结果的整体质量和可靠性。感应极化(IP)结果是一致的,并且看起来在地质上是现实的,并且似乎包含与材料或电化学特性有关的电阻率的其他信息,尽管由于缺乏足够详细的参考数据而不清楚如何。电成像给出了沿土壤剖面电阻率变化的一般情况。 CPTU-R在一个特定位置以很高的垂直分辨率提供了深度上的变化。基于电子成像的模型与CPTU-R之间通常有很好的一致性。 CPTU-R结果可用于基于杆摩擦通过快速粘土估算来校准电成像结果。

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