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Application of Artificial Ground Freezing Technology in Modern Urban Underground Engineering

机译:人工冻结技术在现代城市地下工程中的应用

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Based on typical water-rich sandy gravel strata in Beijing, in order to explore the application of the artificial ground freezing method (AGF) in urban large-scale underground engineering, the formation and development of freezing body were analyzed when multirow freezing pipes were working together, and the group effect exhibited during the freezing process was also revealed in this paper. On this basis, the basin-shaped freezing method (BFM) is put forward as an application of AGF used in underground engineering. BFM structure consists of two parts: the frozen curtain (basin wall) around the excavation scope and the horizontal frozen body (basin bottom) at the bottom of the station. Physical model test and numerical simulation were conducted to study temperature field expansion of BFM under two different conditions. The results show the following: (1) The group effect refers to the cooling effect of different freezing pipes influencing each other during freezing process. Under the condition of still water, the group effect expands the freezing area, and it shows the gradual development of freezing from back water surface to front water surface under seepage condition. (2) BFM can effectively play the role of water proofing, and although different parts of basin structure show different frozen order under different conditions, both basin wall and basin bottom can form an effective thickness during the freezing process.
机译:基于北京典型的水丰沙砾地层,为了探讨人工冻结方法(AGF)在城市大规模地下工程中的应用,分析了多向冻结管工作时冻结体的形成和开发在本文中也揭示了在冷冻过程中展出的群体效应。在此基础上,作为地下工程中使用的AGF的应用提出了盆形冷冻方法(BFM)。 BFM结构由两部分组成:渗漏范围周围的冷冻窗帘(盆壁)和车站底部的水平冷冻体(盆底)。进行物理模型试验和数值模拟,以在两个不同条件下研究BFM的温度场膨胀。结果表明以下:(1)组效应是指在冷冻过程中影响彼此的不同冷冻管的冷却效果。在静水的条件下,群体效果扩大了冰冻区域,并显示出在渗流条件下从后水表面冻结到前水面的逐渐发展。 (2)BFM可以有效地发挥防水的作用,尽管盆地结构的不同部分在不同的条件下显示出不同的冷冻顺序,但盆地壁和盆底部都可以在冷冻过程中形成有效厚度。

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