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Analysis of Factors Influencing Soil Classification Using Normalized Piezocone Tip Resistance and Pore Pressure Parameters

机译:归一化压电锥顶电阻和孔隙压力参数对土壤分类的影响因素分析

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This paper discusses the development of a framework for classifying soil using normalized piezocone test (CPTU) data from the corrected tip resistance (q_t) and penetration pore-water pressure at the shoulder (u_2). Parametric studies for normalized cone tip resistance (Q=q_(cnet)/σ'_(v0)) and normalized excess pressures (Δ_(u_2)/σ'_(v0)) as a function of overconsolidation ratio (OCR=σ'_(vy) /σ'_(v0)) during undrained penetration are combined with piezocone data from clay sites, as well as results from relatively uniform thick deposits of sands, silts, and varietal clays from around the globe. The study focuses on separating the influence of yield stress ratio from that of partial consolidation on normalized CPTU parameters, which both tend to increase Q and decrease the pore pressure parameter (B_q = Δ_(u_2_)/q_(cnet)). The resulting recommended classification chart is significantly different from existing charts, and implies that assessment of data in Q-Δ_(u_2)/σ'_(v0) space is superior to Q-B_q space when evaluating piezocone data for a range of soil types. Still, there are zones of overlap for silty soils and heavily overconsolidated clays, thus requiring that supplementary information to Q and Δ_(u_2)/σ'_(v0) be obtained in unfamiliar geologies, including variable rate penetration tests, dissipation tests, CPT friction ratio, or soil sampling.
机译:本文讨论了使用归一化压电锥测试(CPTU)数据根据校正后的端头阻力(q_t)和肩膀处的渗透孔隙水压力(u_2)对土壤进行分类的框架的开发。归一化锥头阻力(Q = q_(cnet)/σ'_(v0))和归一化超压(Δ_(u_2)/σ'_(v0))与超固结比(OCR =σ'的函数)的参数研究不排水渗透过程中的_(vy)/σ'_(v0))与来自粘土站点的压电锥数据以及来自全球各地相对均匀的较厚的沙子,粉砂和各种粘土沉积的结果相结合。这项研究的重点是将屈服应力比与部分固结对规范化CPTU参数的影响分开,后者既会增加Q值又会减小孔隙压力参数(B_q =Δ_(u_2 _)/ q_(cnet))。所得到的推荐分类图与现有图有很大不同,这意味着在评估一系列土壤类型的压电锥数据时,对Q-Δ_(u_2)/σ'_(v0)空间中数据的评估优于Q-B_q空间。 。尽管如此,粉质土壤和严重超固结的粘土仍存在重叠区域,因此要求在不熟悉的地质条件下获得Q和Δ_(u_2)/σ'_(v0)的补充信息,包括可变速率渗透试验,耗散试验,CPT摩擦比或土壤取样。

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