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Study of Freezing Scheme in Freeze-sealing Pipe Roof Method Based on Numerical Simulation of Temperature Field

机译:基于温度场数值模拟的冻封管顶法冻结方案研究

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Though application of pipe-roofing and artificial ground freezing are becoming increasingly common, there are few published papers or practical projects concerning combined application of Pipe-Roofing Method and Artificial Ground Freezing Method (AGF), which can be named as Freeze-Sealing Pipe Roof Method (FSPR). In this paper, Gongbei Tunnel project of Zhuhai Link Road, Hong Kong-Zhuhai-Macao Bridge, which is proposed to be constructed by FSPR, is taken as the study object. Taking the development of temperature field, the resisting ability of the frozen ground curtain to thermal disturbance resulted from excavation, and the control of frost heave as criteria, analysis of different freezing schemes by numerical simulation is carried out for active and maintaining freezing stages, so that some guidance could be given for the final selection of freezing scheme. The results show that FSPR is capable to form a sustainable and stable waterproof curtain, and has good construction maneuverability. With the arrangement of enhancing pipes and limiting pipes, the freezing scheme can effectively resist the impact of thermal disturbance of excavation and limit the development area of frozen soil curtain to control the frost heave amount. The recommended freezing scheme of FSPR is reasonably practicable.
机译:尽管管屋顶和人工地面冻结的应用变得越来越普遍,但有关管屋顶方法和人工地面冻结方法(AGF)的组合应用的出版物或实践项目很少,可以称为冻结密封管道屋顶方法(FSPR)。以FSPR拟建的港珠澳大桥珠海连接路拱北隧道工程为研究对象。以温度场的发展,开挖引起的冻结地幕对热扰动的抵抗能力以及霜冻的控制为准则,通过数值模拟对不同的冻结方案进行了分析,以求得主动和保持冻结阶段,因此可以为最终选择冷冻方案提供一些指导。结果表明,FSPR能够形成可持续,稳定的防水帘,并具有良好的施工机动性。通过设置加强管和限制管,冻结方案可以有效抵抗开挖热扰动的影响,并限制冻土幕的展开面积,控制冻胀量。推荐的FSPR冻结方案是合理可行的。

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