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Undrained Shear Strength of Normally Consolidated and Overconsolidated Clays from Pressuremeter Tests: A Case Study

机译:压力计测试的正常固结和超固结粘土的不排水剪切强度:一个案例研究

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Undrained shear strength (s_u) of foundation soil of Marquette interchange near Milwaukee, Wisconsin was evaluated from the results of a number of pressuremeter tests conducted on normally consolidated (NC) organic silts and overconsolidated (OC) silty clay. The s_u-values were interpreted from traditional closed-form methods. The pressuremeter geometry and test sequence as well as response of the soil profiles were also simulated using axisymmetric finite element (FE) method with Cam-Clay soil model. The Cam-Clay model parameters were estimated from laboratory tests on undisturbed soil samples. Results show that the s_u estimated from the rate of cavity pressure change with volumetric strain (referred to as direct traditional method) is almost twice the s_u estimated from an indirect traditional method that estimates s_u from shear modulus, in situ horizontal stress, and ultimate cavity pressure obtained from the cavity pressure curves. The s_u-values predicted from the FE models are lower than those estimated from the traditional methods and shows that the assumption of infinite pressuremeter length in traditional methods results in overprediction of undrained shear strength by a factor of 1.5 for NC clay and 2.2 for OC clay. The results of finite element analysis considering Cam-Clay soil model and finite length for pressuremeters suggest the undrained shear strength of 63 ± 7 kPa for NC organic silt and 259 ± 68 kPa for OC silty clay.
机译:威斯康星州密尔沃基市附近的Marquette互换地基土壤的不排水剪切强度(s_u)是根据对正常固结(NC)有机粉土和超固结(OC)粉质粘土进行的许多压力计测试结果进行评估的。 s_u值是通过传统的封闭形式方法解释的。压力计的几何形状和测试顺序,以及土壤剖面的响应,还通过采用Cam-Clay土模型的轴对称有限元(FE)方法进行了模拟。 Cam-Clay模型参数是通过对未扰动土壤样品进行的实验室测试估算得出的。结果表明,根据腔体压力随体积应变的变化率估算的s_u(称为直接传统方法)几乎是根据通过剪切模量,原位水平应力和最终模腔估算s_u的间接传统方法估算的s_u的两倍。从型腔压力曲线获得的压力。有限元模型预测的s_u值低于传统方法估计的s_u值,表明传统方法中无穷大压力计长度的假设导致不排水抗剪强度的高估是NC粘土为1.5,OC粘土为2.2 。考虑Cam-Clay土模型和压力计有限长度的有限元分析结果表明,NC有机粉砂的不排水剪切强度为63±7 kPa,OC粉质粘土的不排水剪切强度为259±68 kPa。

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