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Interpreting strength parameters of strain-softening clay from shallow to deep embedment using ball and T-bar penetrometers

机译:使用球和T杆PENETTOMERS解释浅层到深层嵌入的应变软化粘土的强度参数

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Full-flow penetrometers (ball and T-bar) are widely used for measurements of strength characteristics of clayey soils in offshore field investigations and laboratory tests. However, the accuracy of the estimated undrained shear strength is hampered by: (1) the drastic variation of the bearing factor for the penetrometer at shallow and transitional penetration depths where full-flow mechanisms are not achieved; and (2) the strain-softening of the soil, which results in a degradation of the estimated strength. This study conducted LDFE analyses to simulate the entire penetration process of full-flow penetrometers in strain-softening soils from shallow to deep embedment depths. Parametric studies were performed to investigate the effects of varied factors on the bearing factor and failure mechanism during the penetrometer penetration. Based on the LDFE analyses, empirical formulas are established to represent the critical penetration depths in the strain-softening soil, which are used to correct the bearing factor at shallow penetration depths. The discrepancies of the transitional failure mechanism and the trapped cavity bearing factor between ball and T-bar are emphasized. Finally, a back-analyses framework is proposed to estimate the strength parameters (including the original undrained shear strength prior to any strainsoftening, and the strain-softening parameters) based on the measurements of the penetrometer during the first penetration from shallow to deep embedment depths. Through a series of model tests, the reliability of the backanalyses framework is validated.
机译:全流动孔径(球和T型)广泛用于近海现场调查和实验室测试中粘土土壤强度特征的测量。然而,估计的未润湿剪切强度的准确性受到阻碍:(1)在浅层和过渡性渗透深度下,不达到全流动机构的轴承系数的轴承系数的累积变化; (2)土壤的应变软化,导致估计强度的降解。该研究进行了LDFE分析,以模拟从浅层到深度嵌入深度的应变软化土壤中全流动渗透度计的整体穿透过程。参数研究进行了参数研究,以研究变化仪渗透过程中不同因素对轴承因子和故障机制的影响。基于LDFE分析,建立经验公式,以表示应变软化土中的临界穿透深度,用于校正浅穿透深度处的轴承系数。强调了过渡失败机构和球和T杆之间的捕获腔承载系数的差异。最后,提出了一种基于从浅层到深度嵌入深度的第一次渗透率期间的测量值来估计强度参数(包括在任何沟槽外,包括原始未接受的剪切强度和应变软化参数)的强度参数(包括原始不驱动的剪切强度) 。通过一系列模型测试,验证了BackanAlyses框架的可靠性。

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