ISSN 2096-4498

   CN 44-1745/U

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Tunnel Construction ›› 2023, Vol. 43 ›› Issue (6): 948-958.DOI: 10.3973/j.issn.2096-4498.2023.06.005

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HydroThermoMechanical Coupling Study on Freezing Method for Metro Connecting Gallery in Saturated Silt Sand Strata in Nantong, China

WANG Changhong1, ZHANG Haidong1, *, DONG Jihan1, LI Fei1, HE Hongyuan2   

  1. (1. Department of Civil Engineering, School of Mechanics and Engineering Sciences, Shanghai University, Shanghai 200444, China; 2. The 3rd Engineering Co., Ltd. of China Railway Tunnel Group, Shenzhen 518000, Guangdong, China)
  • Online:2023-06-20 Published:2023-07-14

Abstract: In coastal saturated silt sand strata, the freezing effect of the connecting gallery is significantly affected by the interaction between seepage and salinity. To address this problem, a threedimensional thermohydromechanical multifield coupling method under the interaction of seepage and salinity is proposed based on a case study regarding the #4 connecting gallery between the Yongxing Avenue Station and Shennan Road Station of Nantong metro line 1 constructed using artificial freezing method. First, insitu monitoring results are analyzed. Then, a threedimensional numerical analysis model is established. Finally, the commercial software COMSOL Multiphysics is used to simulate the freezing process of saturated silt sand strata. The outcomes of the study show that: (1) The numerical simulation results are in good agreement with the field monitoring data and the established numerical calculation model is highly reliable. (2) The combined effects of seepage and salinity will delay the artificial freezing time, and the maximum delayed time is 7.52 days. (3) The difference in waterhead causes an asymmetrical frozen wall. Hence, the upstream freezing temperature drops very slowly, resulting in a thinner frozen wall and a thicker downstream frozen wall. (4) Furthermore, the salinity can only slow down the cooling rate of the artificial freezing method.

Key words: metro connecting gallery, freezing method, saturated silt sand strata, thermohydromechanical multifield coupling, numerical simulation