王志鑫, 胡俊, 曾东灵, 吴雨薇. 盾尾刷更换时环形冻结加固方法的最佳布管位置[J]. 油气储运, 2022, 41(1): 76-83. DOI: 10.6047/j.issn.1000-8241.2022.01.011
引用本文: 王志鑫, 胡俊, 曾东灵, 吴雨薇. 盾尾刷更换时环形冻结加固方法的最佳布管位置[J]. 油气储运, 2022, 41(1): 76-83. DOI: 10.6047/j.issn.1000-8241.2022.01.011
WANG Zhixin, HU Jun, CENG Dongling, WU Yuwei. Optimal pipeline position of annular freezing reinforcement during the replacement of shield tail brush[J]. Oil & Gas Storage and Transportation, 2022, 41(1): 76-83. DOI: 10.6047/j.issn.1000-8241.2022.01.011
Citation: WANG Zhixin, HU Jun, CENG Dongling, WU Yuwei. Optimal pipeline position of annular freezing reinforcement during the replacement of shield tail brush[J]. Oil & Gas Storage and Transportation, 2022, 41(1): 76-83. DOI: 10.6047/j.issn.1000-8241.2022.01.011

盾尾刷更换时环形冻结加固方法的最佳布管位置

Optimal pipeline position of annular freezing reinforcement during the replacement of shield tail brush

  • 摘要: 盾尾刷更换过程中,盾尾渗漏的防治与控制是盾构隧道施工中的关键。为此提出一种盾尾刷更换时环形冻结加固方法,通过数值建模方法分析采用一根环形冻结管时的最佳布管位置,并探究该环形冻土帷幕温度场的发展规律。结果表明:盾尾刷更换时环形冻结加固方法打孔形式灵活,对管片耐久性影响不大,施工实用性强、加固效果特别是止水效果好且安全可靠;最佳布管位置为盾尾正上方0.3m,此时冻结效果最佳,符合设计要求;环形冻结管半径每增大0.3m,盾尾间隙处的最终土体温度升高约9℃;在最佳布管位置下冻结6天时-1℃等温线刚好到达盾尾间隙处,冻土帷幕开始起到封水作用;冻结10天时-10℃等温线刚好到达盾尾间隙处,冻土帷幕冻结效果强度增加。在最佳布管位置布设环形冻结管能够极大提高封水性与安全性,可为今后相关工程的开展提供参考。

     

    Abstract: How to prevent and control the leakage at shield tail during the replacement of shield tail brush is critical for shield tunnel construction. Herein, an annular freezing reinforcement method during the replacement of shield tail brush was proposed, and the optimal position for one annular freezing pipeline, if adopted, was analysed through numerical modelling. In addition, the development law of the temperature field of the annular freezing soil curtain was also studied. The results show that the drilling method is flexible for annular freezing reinforcement during the replacement of the shield tail brush. Besides, it also has little effect on the durability of segments and strong construction practicability, as well as good, safe and reliable reinforcement effect, particularly good water-stop effect. Specifically, the best pipeline position is 0.3 m over the shield tail, where the best freezing effect can be provided, satisfying the design requirements. The final soil temperature at the gap between the shield tails will rise about 9 ℃ if the radius of the annular freezing pipeline increases by 0.3 m. Moreover, the -1 ℃ isotherm reaches the shield tail gap after 6-day freezing at the optimal pipeline position, with the water sealed initially by the freezing soil curtain, and the -10 ℃ isotherm reaches the shield tail gap after 10-day freezing, so that the freezing effect of the freezing soil curtain is strengthened. Therefore, arranging an annular freezing pipeline at the optimal position can greatly improve the water sealing performance and safety, which could provide some reference for the development of related projects in the future.

     

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