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首页> 外文期刊>Journal of Cold Regions Engineering >Thermal Behavior in Cross-Passage Construction during Artificial Ground Freezing: Case of Harbin Metro Line
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Thermal Behavior in Cross-Passage Construction during Artificial Ground Freezing: Case of Harbin Metro Line

机译:人工地面冻结期间交叉通道施工的热行为:哈尔滨地铁线的情况

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摘要

The successful construction of cross passages in water-rich sand strata requires the ground reinforcement of soil in passage zones. To address these conditions, artificial ground freezing was introduced, which is an innovative presupport technique that has been extensively applied in tunnel engineering. However, insufficient temperature monitoring data and complex numerical models have hindered accurate predictions of complete freezing curtains in engineering applications. In light of this, this paper proposes a heat-moisture coupling model to predict the dynamic formation of the freezing curtain. This was achieved by combining the heat transfer, Richards's equation, and the Darcy equation for porous media. As a result, the hydraulic parameters could be obtained through nuclear magnetic resonance. The proposed numerical model was further validated through laboratory testing by applying various seepage flow conditions. Finally, a three-dimensional numerical model was established for the construction of cross passage during artificial freezing. To confirm the feasibility of the model, data from 53 points were continuously collected from the case study for more than 50 days. The proposed model delivers temperature results that are consistent with the field data.
机译:在水性富含砂层中的交叉通道的成功建设需要通过地区的土壤中加固。为了解决这些条件,介绍了人工冻结,这是一种创新的PREUPPORT技术,已广泛应用于隧道工程。然而,温度监测数据不足和复杂的数值模型阻碍了工程应用中完全冻结窗帘的准确预测。鉴于此,本文提出了一种热湿度耦合模型,以预测冷冻窗帘的动态形成。这是通过将传热,理查兹的等式和多孔介质的达西方程组合来实现的。结果,通过核磁共振可以获得液压参数。通过应用各种渗流流动条件,通过实验室测试进一步验证了所提出的数值模型。最后,建立了一个三维数值模型,用于在人为冻结期间建造交叉通道。为了确认模型的可行性,从案例研究中连续收集53点的数据超过50天。所提出的模型提供了与现场数据一致的温度结果。

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