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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >A pressuremeter-based evaluation of structure in London Clay using a kinematic hardening constitutive model
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A pressuremeter-based evaluation of structure in London Clay using a kinematic hardening constitutive model

机译:采用运动硬化构成模型的伦敦粘土结构基于压力表的结构评价

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The self-boring pressuremeter (SBP) test was designed to measure in situ engineering properties of the ground with a relatively small amount of disturbance. The properties that may be inferred from the test depend on the mechanical model used for its interpretation and on the significance given to other previously available information. In this paper, numerical modelling using the advanced kinematic hardening structure model (KHSM) for natural soils has been performed to investigate the influence of the initial structure and the degradation of structure on the SBP cavity pore pressures and expansion curves within London Clay. The validation of the KHSM against well-known analytical solutions and the calibration procedure used to identify the material parameters are presented. The numerical analyses reveal that the simulations of the SBP tests using the KHSM model provide a very close match of the expansion curves to the experimental data, but underestimate the pore pressures at the initial stage of the SBP expansion test. A parametric study has been carried out to determine the effects induced by the parameters of the destructuration model along with the disturbance experienced during the SBP installation, which is difficult to estimate in situ. Two disturbance scenarios were considered where the initial structure was assumed to vary linearly across an area close to the wall of the cavity. These simulations indicate that accounting for installation disturbance leads to a substantial improvement in pore pressure predictions for the SBP.
机译:设计自钻针挤出仪(SBP)测试旨在以相对少量的干扰为原位工程性能测量。可以从测试推断的属性取决于用于其解释的机械模型以及对其他以前可用信息的重要性。本文已经进行了使用高级运动硬化结构模型(KHSM)的数值建模,用于研究初始结构的影响及结构的偏差对伦敦粘土内的SBP腔孔压力和膨胀曲线的影响。呈现了khsm对众所周知的分析解决方案和用于识别材料参数的校准程序的验证。数值分析表明,使用KHSM模型的SBP测试的模拟提供了扩展曲线对实验数据的非常紧密的匹配,但低估了SBP膨胀试验的初始阶段的孔压力。已经进行了参数研究以确定破坏性模型参数诱导的效果以及SBP安装期间所经历的干扰,这难以估计原位。考虑了两个扰动场景,其中假设初始结构在靠近腔壁壁的区域上线性变化。这些模拟表明,安装干扰的核算导致SBP的孔隙压力预测的显着提高。

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