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Theoretical and Numerical Analyses on Hydro-Thermal-Salt-Mechanical Interaction of Unsaturated Salinized Soil Subjected to Typical Unidirectional Freezing Process

机译:不饱和碳化土壤水热盐 - 机械相互作用对典型单向冷冻工艺的理论及数值分析

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摘要

The freezing process of salinized soil is a complex, dynamic, and interactive hydro-thermal-salt-mechanical (HTSM) coupled physical phenomenon. In many recent studies, soil was assumed to be saturated, and the theoretical models established were based on the framework of saturated soil, in which the influence of the vapor phase in freezing soil was neglected. In this paper, by considering the effect of vapor flow on heat movement and the relation between saturation and void ratio, an improved mathematical model will be established based on previous research. This improved hydro-thermal-salt-mechanical (IHTSM) model simulates the dynamic process of water migration, heat transfer, vapor flow, solute transport, and deformation. The numerical simulation implemented by the IHTSM model under the typical conditions of unidirectional freezing will be compared with previous research to verify the model's validity, and the various characteristics of the curves and their physical meaning will be analyzed by comparing them with the previous research. The dynamics of temperature, mass moisture content, displacement, salt content, volumetric vapor content and saturation degree in soil column will be discussed for the salinized soil during the freezing process. The results indicated that this improved model could provide a reference for the destruction process analysis of the harsh geological environment in cold, arid, and saline areas.
机译:盐化土的冷冻过程是复杂,动态和交互式的水热盐(HTSM)耦合物理现象。在最近的许多研究中,假设土壤被饱和,所建立的理论模型基于饱和土的框架,其中气相在冷冻土壤中的影响被忽略了。本文通过考虑蒸汽流量对热运动的影响以及饱和度和空隙率之间的关系,将基于先前的研究建立改进的数学模型。这种改进的水热盐 - 机械(IHTSM)模型模拟​​了水迁移,传热,蒸汽流动,溶质传递和变形的动态过程。将通过先前的研究将由IHTSM模型实现的数值模拟,以验证模型的有效性,并将通过将其与以前的研究进行比较来分析曲线的各种特征及其物理意义。在冷冻过程中,将讨论水柱温度,质量水分含量,位移,盐含量,体积蒸汽含​​量和饱和度的动力学。结果表明,这种改进的模型可以为寒冷,干旱和盐水区的苛刻地质环境的破坏过程分析提供参考。

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