基于不排水孔扩理论的黏性土孔压静力触探数据解译研究

    Interpretation of CPTU data in clay based on undrained cavity expansion theory

    • 摘要: 研究孔压静力触探(CPTU)数据解译方法对于提高岩土工程勘察和分析的准确性和可靠性具有重要意义。本文提出了一种基于不排水小孔扩张理论的黏性土CPTU数据解译方法,并通过与37组高岭黏土的标定罐试验结果进行对比验证。结果表明,该方法可较好地预测CPTU测试数据,理论计算得到的CPTU数据与标定罐试验结果基本吻合,黏性土的预测结果与传统土性分类图的分区一致。此外,探究了超固结比和初始状态参数对归一化锥尖阻力和孔压参数比的影响,获得了针对高岭黏土的拟合公式。基于理论模型推导了归一化有效贯入阻力与超固结比和初始状态参数的相关关系,并在土性分类图上绘制了高岭黏土的解译曲线,为岩土工程勘察原位测试的数据解译提供了理论依据。

       

      Abstract: Investigating the methods for interpreting piezocone penetration test (CPTU) data is of great significance in improving the accuracy and reliability of geotechnical investigation and analysis. In this study, an interpretation method for CPTU in cohesive soils based on undrained cavity expansion theory is proposed and verified by comparison with a group of 37 calibration chamber tests in kaolin clay. The results show that the proposed method can provide predictions of CPTU data. The calculated CPTU data is consistent with the calibration chamber tests, and the predicted results for cohesive soils are consistent with the traditional soil behaviour type (SBT) charts. Additionally, this study investigates the effects of overconsolidation ratio and initial state parameters on the normalized cone tip resistance and the pore pressure ratio, and obtains fitting formulae for kaolin clay. Finally, the relationships between the normalized effective cone resistance and overconsolidation ratio and initial state parameters are theoretically derived. A CPTU interpretation curve for kaolin clay is plotted on the SBT charts, providing a certain theoretical basis for interpreting in-situ testing data in geotechnical investigation.

       

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