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Numerical simulation of coupled liquid water, stress and heat for frozen soil in the thawing process

机译:冻土解冻过程中液态水、应力和热耦合的数值模拟

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Purpose The purpose of this paper is to perform the thermo-hydro-mechanical (THM) numerical analysis in order to study the thawing process for frozen soil and to predict the thawing settlement. Design/methodology/approach A new one-dimensional multi-field physical coupled model was proposed here to describe the thawing process of saturated frozen soil, whereby the void ratio varied linearly with effective stress (Eq. 10) and hydraulic conductivity (Eq. 27b). The thawing process was simulated with different initial and boundary conditions in an open system with temperature variations. The mechanical behavior and water migration of the representative cases were also investigated. Findings The comparisons of representative cases with experimental data demonstrated that the model predicts thawing settlement well. It was found that the larger temperature gradient, higher overburden pressure and higher water content could lead to larger thawing settlement. The temperature was observed that to distribute height linearly in both frozen zone and unfrozen zone of the sample. Water migration forced to a decrease in the water content of the unfrozen zone and an increase in water content at the thawing front. Research limitations/implications In this study, only the one-directional thawing processes along the frozen soil samples were investigated numerically and compared with test results, which can be extended to two-dimensional analysis of thawing process in frozen soil. Originality/value This study helps to understand the thawing process of frozen soil by coupled thermo-hydro-mechanical numerical simulation.
机译:目的 通过热流体力学(THM)数值分析,研究冻土的解冻过程,预测冻土的解沉情况。设计/方法/途径 本文提出了一种新的一维多场物理耦合模型来描述饱和冻土的解冻过程,其中孔隙率随有效应力(方程10)和导水系数(方程27b)线性变化。在温度变化的开放系统中,在不同的初始和边界条件下模拟了解冻过程。还研究了代表性案例的力学行为和水迁移。结果 将代表性案例与实验数据进行比较,表明该模型能较好地预测解冻沉降。结果表明,较大的温度梯度、较高的覆岩压力和较高的含水率会导致较大的融沉。观察到温度在样品的冻结区和未冻结区均呈线性分布。水迁移迫使未冻结区的含水量降低,而解冻前沿的含水量增加。研究的局限性/启示 本研究仅对冻土样品的单向解冻过程进行了数值研究,并与试验结果进行了比较,可推广到冻土解冻过程的二维分析。原创性/价值 本研究有助于通过热-水-力耦合数值模拟来理解冻土的融化过程。

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