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Comparison of CPT charts for soil classification using PCPT data: Example from clay deposits in Jiangsu Province, China

机译:使用PCPT数据对CPT图进行土壤分类的比较:以中国江苏省的黏土矿床为例

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摘要

Geotechnical engineers worldwide practice a variety of in-situ techniques to classify soils in order to obtain their physical and engineering properties. An electric piezocone, which is an advanced version of the cone penetrometer, is capable of measuring cone resistance, sleeve friction and pore pressure. The piezocone testing data not only provide valuable information on soil types but are also useful in deriving correlations with the engineering properties of soil for the purposes of analysis and design of foundations. In a view to establish a region-specific correlation between piezocone penetration resistance and soil properties, piezocone penetration tests (PCPT or CPTu), borings, and other in situ tests were carried out at seven locations in Jiangsu Province, China. PCPT data were first used for classifying soil; thus the data were fully analyzed and validated for providing a reasonable soil classification. Several available CPT based classification charts are used to determine soil types; these results are further validated with the soil classification determined from the field samples and basic soil test results. This paper summarizes these analysis results, including description of the available charts and their performance in soil classification.
机译:世界各地的岩土工程师采用各种现场技术对土壤进行分类,以获得其物理和工程特性。锥形压电渗透仪的高级版本的电动压电锥能够测量锥形电阻,套筒摩擦力和孔隙压力。压电测试数据不仅提供了有关土壤类型的有价值的信息,而且在推导与土壤工程特性的相关性方面也很有用,以用于基础的分析和设计。为了建立压电渗透阻力与土壤特性之间的特定区域相关性,在中国江苏省的七个地点进行了压电渗透试验(PCPT或CPTu),钻孔和其他原位测试。首先将PCPT数据用于土壤分类。因此,对数据进行了全面分析和验证,以提供合理的土壤分类。几种基于CPT的可用分类图用于确定土壤类型。根据田间采样和基本土壤测试结果确定的土壤分类进一步验证了这些结果。本文总结了这些分析结果,包括可用图表的说明及其在土壤分类中的性能。

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