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Estimation of Drained Shear Strength of Granular Soil from Shear Wave Velocity and Confining Stress

机译:从剪切波速和围压估算颗粒土的排水抗剪强度

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Building upon a previously reported hypothesis suggesting a unique linear relationship between the small strain shear modulus and major principal effective stress at failure, this paper proposes a new empirical equation to estimate the drained shear strength from the measured shear wave velocity. A series of drained triaxial tests on clean sands and natural granular soils are performed to measure the shear strength of granular soils. Shear wave velocities are measured using bender elements installed at the top and bottom caps. Although a correlation between maximum shear modulus calculated from the shear wave velocity and effective stress at failure is observed, it is shown that the correlation can be further improved by including the confining stress. A unique relationship between maximum shear modulus, effective stress at failure, and confining stress is shown to exist for all granular soils tested. The predicted secant friction angles from the proposed empirical relationship exhibit good agreement with the measured values. The applicability of the equation is further validated through measured data on silty sand from a published study. Again, very favorable matches with the measured secant friction angles highlight the wide applicability of the proposed empirical relationship. A possible application of the proposed correlation is calculation of the shear strength from the shear wave velocity profile for strength correction in a seismic analysis. (C) 2018 American Society of Civil Engineers.
机译:基于先前报道的假设,该假设表明小应变剪切模量与破坏时的主要主要有效应力之间存在独特的线性关系,本文提出了一个新的经验方程式,可以根据测得的剪切波速度来估算排水的剪切强度。在干净的沙子和天然粒状土壤上进行了一系列排水三轴试验,以测量粒状土壤的剪切强度。剪切波速度是使用安装在顶盖和底盖上的弯曲元件测量的。尽管观察到由剪切波速度计算出的最大剪切模量与破坏时的有效应力之间的相关性,但显示出可以通过包含限制应力来进一步改善该相关性。对于所有测试的粒状土壤,最大剪切模量,破坏时的有效应力和约束应力之间存在唯一关系。根据建议的经验关系预测的割线摩擦角与测量值具有很好的一致性。通过已发表研究的粉砂测量数据进一步验证了该方程式的适用性。再次,与测量的割线摩擦角非常有利的匹配突出了所提出的经验关系的广泛适用性。所提出的相关性的可能应用是从剪切波速度剖面计算剪切强度,以进行地震分析中的强度校正。 (C)2018美国土木工程师学会。

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