饱和及非饱和土壤-结构界面的热力学模型

Sheqiang Cui, Chao Zhou
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引用次数: 0

摘要

土体-结构界面的剪切行为在很大程度上影响着岩土结构的性能。地热结构(如能源桩和能源墙)中的土壤-结构界面通常会受到不同温度和吸力条件的影响。然而,目前还没有构造模型可以模拟吸力和温度对土体-结构界面剪切行为的耦合影响。本研究基于边界面塑性框架新开发了一个热机械模型,用于预测饱和与非饱和界面的热机械行为。该模型使用幂函数计算界面的饱和度,并改进了对界面剪切强度吸力效应的评估。提出了温度与界面临界状态摩擦角之间的线性关系,以纳入热效应。此外,还提出了新的方程来描述空隙率与应力平面(e-lnσ_n^*)上的临界状态线(CSLs),并对不同温度和吸力下剪切引起的变形进行建模。文献中不同界面的实验数据被用来评估模型的能力。测量结果与计算结果的比较表明,该模型能够很好地捕捉温度、吸力和净法向应力对界面剪切行为的耦合效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A thermo-mechanical model for saturated and unsaturated soil-structure interfaces
Shear behaviour of soil-structure interfaces greatly affects the performance of geotechnical structures. The soil-structure interfaces in geothermal structures (e.g., energy pile and energy wall) are often subjected to varying temperature and suction conditions. However, there is no constitutive model to simulate the coupled effects of suction and temperature on the shear behaviour of soil-structure interfaces. In this study, a thermo-mechanical model was newly developed based on the bounding surface plasticity framework to predict the thermo-mechanical behaviour of saturated and unsaturated interfaces. A power function was used to calculate the degree of saturation at the interface and improve the evaluation of suction effects on interface shear strength. A linear relationship between temperature and interface critical state friction angle was proposed to incorporate thermal effects. New equations were also proposed to describe the critical state lines (CSLs) in the void ratio versus stress plane (e-ln⁡σ_n^* ) and to model the shearing-induced deformation at various temperatures and suctions. The experimental data from different interfaces in the literature were used to evaluate the model capability. Comparisons between measured and computed results suggest that this model can well capture the coupled effects of temperature, suction and net normal stress on the shear behaviour of interfaces.
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