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首页> 外文期刊>KSCE journal of civil engineering >Monitoring and Evaluation of Artificial Ground Freezing in Metro Tunnel Construction-A Case Study
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Monitoring and Evaluation of Artificial Ground Freezing in Metro Tunnel Construction-A Case Study

机译:地铁隧道施工中人为冻结的监测与评估-以案例研究为例

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摘要

The turn-back tunnel of Guangzhou Metro Line 3 Tianhe Station with a large span was excavated in sandy clay which may easily break and disintegrate. The artificial ground freezing (AGF) technique was used to stabilize the soil and to prevent its collapse during excavations. Most of the existing theoretical analysis and numerical simulation on the AGF technique are purely based on a couple of assumptions, which are not able to produce accurate predictions. It would be more accurate for the AGF analysis to include the field monitoring. In this study, the coupled method of the field monitoring, the analytical formula, and the numerical method is used to evaluate the thickness and average temperature of the frozen zone. Field monitoring was conducted to measure the temperature of the brine and the ground. Analytical formula was used to compute the thickness and the average temperature of the frozen zone. Numerical simulation is also carried out to predict the thickness and the temperature field of the frozen zone. According to the analytical and numerical analysis, the computed thickness and average temperature of the frozen zone meet the designed requirements of the project, which are further confirmed by the successful excavation of the tunnel. This indicates that the coupled method used in this paper is reliable and would be helpful for the AGF application in practical engineering.
机译:广州地铁三号线天河站转弯隧道大跨度是在砂土中开挖的,容易破碎和崩解。人工地面冻结(AGF)技术用于稳定土壤并防止其在开挖过程中倒塌。现有的大多数关于AGF技术的理论分析和数值模拟都纯粹基于两个假设,这些假设无法产生准确的预测。 AGF分析包括现场监测将更为准确。在这项研究中,现场监测,解析公式和数值方法的耦合方法用于评估冻结区的厚度和平均温度。进行现场监测以测量盐水和地面的温度。分析公式用于计算冻结区的厚度和平均温度。还进行了数值模拟,以预测冻结区的厚度和温度场。根据分析和数值分析,计算得出的冻结区厚度和平均温度符合项目的设计要求,隧道的成功开挖进一步证实了这一点。这表明本文所使用的耦合方法是可靠的,将有助于AGF在实际工程中的应用。

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