Cavity expansion-based interpretation of piezocone penetration test (CPTu) data in clays

Pin‐Qiang Mo, Guojun Cai, Kuan-Jun Wang, Abolfazl Eslami, Hai-Sui Yu
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Abstract

A cavity expansion-based method is proposed in this paper to correlate the relevant findings with the piezocone penetration test (CPTu) data in clays. The rigorous and explicit solution for both spherical and cylindrical undrained cavity expansion is adopted based on a unified critical state constitutive model for clays and sands. The developed analogous model is comprehensively validated against two series of advanced numerical simulations and calibration chamber tests of the CPTu in fine-grained soils, along with bias analyses. The effects of the over-consolidation ratio and initial state parameter are extensively investigated for various clay types. Both theoretical and empirical correlations are then proposed for back-calculations of cone factor, undrained shear strength, over-consolidation ratio and initial state parameter of clays. Two case studies of CPTu tests are additionally conducted to examine correlations and contours of in-situ state parameter, demonstrating the applicability of the proposed theoretical approach for interpretation of the CPTu data.
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基于空腔膨胀的粘土压陷渗透试验 (CPTu) 数据解释
本文提出了一种基于空腔膨胀的方法,以将相关结论与粘土中的压陷穿透试验(CPTu)数据联系起来。基于粘土和砂的统一临界状态构成模型,采用了球形和圆柱形不排水空腔膨胀的严格和显式解法。所开发的类比模型通过两个系列的先进数值模拟和细粒土中 CPTu 的校准室试验以及偏差分析进行了全面验证。针对各种粘土类型,广泛研究了过固结比和初始状态参数的影响。然后提出了回算粘土的锥系数、排水抗剪强度、过固结比和初始状态参数的理论和经验相关性。此外,还对两个 CPTu 试验案例进行了研究,以检验原位状态参数的相关性和等值线,从而证明所提出的理论方法适用于解释 CPTu 数据。
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