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Model of soft soils under cyclic loading

机译:循环荷载下的软土模型

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摘要

This paper presents a new constitutive model for cyclic loading of soil to predict the behavior of soft clays under undrained cyclic triaxial loading. It is inspired by the modified Cam-clay theory, and a new yield surface for elastic unloading is proposed to capture the soil behavior under cyclic loading. Only two additional parameters that characterize the cyclic behavior are used together with the traditional parameters associated with the modified Cam-clay constitutive model. The details of the relevant soil properties, initial states, and cyclic loading conditions are presented, and a computational procedure for determining the effective stresses and strains is demonstrated. The new model is used to simulate cyclic triaxial tests on kaolin, and the model predictions are generally found to be in agreement with the measured excess pore pressures and axial strains. Furthermore, numerous factors that influence the cyclic performance of soft soils can be considered in the new model, such as cyclic stress ratios, preshearing, and cyclic loading frequency. The critical cyclic stress ratio is also predictable using the proposed model in terms of excess pore pressures and axial strains.ud
机译:本文提出了一种新的土体循环荷载本构模型,用以预测软粘土在不排水的三轴荷载下的行为。它受到改进的凸轮粘土理论的启发,并提出了一种新的弹性卸载屈服面,以捕获循环载荷下的土壤行为。仅将表征循环行为的两个附加参数与与修改后的Cam-clay本构模型关联的传统参数一起使用。给出了有关土壤特性,初始状态和循环荷载条件的详细信息,并演示了确定有效应力和应变的计算程序。该新模型用于模拟高岭土上的循环三轴试验,并且该模型的预测通常与测得的过大孔隙压力和轴向应变一致。此外,在新模型中可以考虑许多影响软土循环性能的因素,例如循环应力比,预剪力和循环荷载频率。使用提议的模型,也可以通过过大的孔隙压力和轴向应变来预测临界循环应力比。 ud

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