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Thermo-Hydro-Mechanical Modeling of Artificial Ground Freezing: Application in Mining Engineering

机译:人工地面冻结热水机械建模:在采矿工程中的应用

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摘要

For decades, artificial ground freezing (AGF) has been used as a temporary soil stabilization and waterproofing technique in multiple geotechnical engineering applications. Experience gained from AGF experiments indicates that the pore water expansion during freezing and the resulting pressure have the potential to induce ground movements in adjacent nonfrozen areas. This process was investigated in this paper using a comprehensive set of in situ temperature and displacement monitoring data collected in the Cigar Lake underground mine, Canada. The data set allowed to investigate the mechanical impact of freezing on a mine tunnel and prompted the need to derive a fully coupled thermo-hydro-mechanical model to predict ground temperature and displacements. Thermodynamically consistent, the model developed for this study is based on a macroscopic continuum approach and uses simplifying assumptions to overcome the computational difficulties associated with the modeling of complex mining environments over a long period of time. This model was used to perform three-dimensional finite-element simulations of the ground freezing and excavation activities in the Cigar Lake mine, showing good agreement with field measurements.
机译:几十年来,人工地面冻结(AGF)已被用作多种岩土工程应用中的临时土壤稳定和防水技术。从AGF实验中获得的经验表明冻结期间的孔隙水膨胀和所得压力有可能在相邻的非氟化区域诱导地面运动。在加拿大雪茄湖地下矿井中收集的全面的原位温度和位移监测数据,在本文中研究了该过程。数据集允许研究冻结在矿隧道上的机械冲击,并提示需要推导出完全耦合的热压机械模型以预测地面温度和位移。热力学始终如一,为该研究开发的模型基于宏观的连续体方法,并使用简化假设来克服与长时间内复杂采矿环境的建模相关的计算困难。该模型用于在雪茄湖矿区进行地面冻结和挖掘活动的三维有限元模拟,显示出与现场测量的良好一致。

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