首页> 外文会议>International symposium on geomechanics and geotechnics: from micro to macro;IS-SHANGHAI 2010 >Micromechanical characterization and prediction of undrained response from drained triaxial shear tests in granular media under monotonic loading: Simulations using PFC3D
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Micromechanical characterization and prediction of undrained response from drained triaxial shear tests in granular media under monotonic loading: Simulations using PFC3D

机译:单调载荷下粒状介质中排水三轴剪切试验的不排水响应的微力学表征和预测:使用PFC3D的模拟

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When a stress increment is applied quickly to a saturated cohesionless soil, undrained conditions develop with an increase in pore pressure and no change in volume. Once steady state is reached, the soil continues to distort at a constant rate. Generally, to evaluate the steady state of undrained loading conditions, triaxial undrained tests with pore water pressure measurements are done. But the steady state is influenced by a number of parameters including the method of preparation of the sample, loading pattern, membrane penetration effects, type of triaxial equipment. Norris et al. (1997) proposed a technique to predict the undrained response of sands from drained triaxial tests carried out from isotropic rebound paths based on the effective stress concept. In this paper, the discrete element application for predicting undrained response from drained test results will be validated. Numerical simulations of triaxial tests considering 1000 spherical particles have been carried out using PFC3D. These results show an excellent correlation between the predicted undrained behaviour from drained triaxial tests and the observed response without explicitly incorporating pore water pressures. Further, micromechanical analyses are presented to understand the micro to macro behaviour.
机译:当将应力增量快速施加到饱和的无粘性土时,不排水的条件随着孔隙压力的增加而发生,并且体积没有变化。一旦达到稳定状态,土壤将继续以恒定速率变形。通常,为了评估不排水加载条件的稳态,需要进行三轴不排水测试以及孔隙水压力测量。但是稳态受许多参数的影响,包括样品的制备方法,上样方式,膜渗透效果,三轴设备的类型。诺里斯(Norris)等人。 (1997)提出了一种基于有效应力概念,通过各向同性回弹路径进行的排水三轴试验来预测砂土不排水响应的技术。在本文中,用于验证排水测试结果不排水响应的离散元素应用将得到验证。使用PFC3D对考虑了1000个球形颗粒的三轴试验进行了数值模拟。这些结果表明,在未明确考虑孔隙水压力的情况下,排水三轴试验预测的不排水行为与观测到的响应之间具有极好的相关性。此外,提出了微观力学分析以了解微观到宏观的行为。

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