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Calibration of a generalized plasticity model for compacted silty sand under constant-suction shearing tests

机译:恒定抽吸剪切试验下压实粉煤的广义塑性模型的校准

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The stress-strain response of compacted silty sand with over-consolidated stress history often exhibit distinct peak stress before reaching the critical stress type of response when subjected to suction-controlled triaxial shearing. Such heavily consolidated soil also tends to simultaneously manifest initial compression which transitions into dilational type volumetric response. Modelling such strain-softening type response, especially emulating the smooth transition from peak to critical state is a challenge. In this paper a previously developed generalized plasticity constitutive model, called MPZ (Modified Pastor-Zienkiewicz) is fine-tuned and calibrated using a set of suction-controlled consolidated drained triaxial tests conducted on compacted silty sand specimens. Firstly, the saturated and unsaturated silty sand characteristics and the experimental test program are briefly introduced. Secondly, the calibration of each component of the constitutive model, namely critical state, dilatancy, peak state, loading direction, water retention curve and bounding function are briefly explained. Furthermore, the material parameters are estimated, model performance is displayed, and finally discussed. Preliminary simulations show that the MPZ model is able to mimic overall suction controlled triaxial test response of compacted silty sand decently well by taking into account the changes in density, pressure and suction. However, the peak states are not accurately modelled for low-high suction levels which needs further modifications in proposed model.
机译:具有过固结应力历史的压实粉状砂的应力 - 应变响应通常表现出不同的峰值应力,然后在进行吸入控制的三轴剪切时达到临界应力类型。这种重固结的土壤也倾向于同时表现出初始压缩,其转变为膨胀型体积反应。建模这种应变软化型响应,特别是从峰值到临界状态的平滑过渡是一个挑战。在本文中,先前开发的广义塑性本构模型,称为MPZ(改进的牧师 - ZienkiewicZ)进行微调和校准,使用在压实的粉状砂样本上进行的一组吸入控制的固结排水三轴试验。首先,简要介绍饱和和不饱和粉状砂特性和实验测试程序。其次,简要解释了本构模型的每个组分,即临界状态,膨胀,峰值状态,加载方向,水保持曲线和边界功能的校准。此外,估计材料参数,显示模型性能,最终讨论。初步模拟表明,MPZ模型能够通过考虑密度,压力和吸力的变化,使MPz模型非常好地模仿压实粉状沙子的整体抽吸控制三轴试验响应。然而,对于在所提出的模型中需要进一步修改的低高吸力水平,峰状态不准确地建模。

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