Behavior of electrical resistivity against different soil properties

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
W. Sahito, Rabeea W Bazuhair
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引用次数: 0

Abstract

Any construction must be designed and built after the subsurface soil has been determined. The subsurface qualities of the soil are rendered by expensive, time-consuming, and risky operations, which on the other hand, raise the project's capital expenditure while also getting the engineering properties of distinct soil materials. Standard sampling techniques for boreholes are used for the assessment of the engineering properties of soil. But it is pretty costly, intrusive, and takes too much time. Therefore, a different method of determining the subsurface soil parameters is required. An alternate strategy for borehole sampling is to use geo-electrical techniques, such as electrical resistivity (ER). This research aims to ascertain the relationship between the electrical resistivity of various soils and their engineering characteristics. Without using the borehole sample method, appropriate correlations will aid in determining the subsurface soil parameters. Good correlations are obtained for the relationship of electrical resistivity against friction angle, cohesion and moisture content with an R2 value of 0.79, 0.41 and 0.66, respectively. The correlation of resistivity with unit weight showed a weak relationship due to typical soil behavior.
电阻率对不同土壤性质的影响
任何建筑都必须在确定地下土壤后进行设计和建造。土壤的地下质量是由昂贵、耗时和有风险的操作造成的,另一方面,这增加了项目的资本支出,同时也获得了不同土壤材料的工程特性。钻孔的标准取样技术用于评估土壤的工程性质。但它成本很高,侵入性很强,而且花费了太多时间。因此,需要一种不同的方法来确定地下土壤参数。钻孔取样的另一种策略是使用地电技术,如电阻率(ER)。本研究旨在确定各种土壤的电阻率与其工程特性之间的关系。在不使用钻孔取样方法的情况下,适当的相关性将有助于确定地下土壤参数。电阻率与摩擦角、内聚力和含水量的关系获得了良好的相关性,R2值分别为0.79、0.41和0.66。由于典型的土壤特性,电阻率与单位重量的相关性较弱。
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审稿时长
40 weeks
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