ISSN 2096-4498

   CN 44-1745/U

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Tunnel Construction ›› 2023, Vol. 43 ›› Issue (S1): 344-355.DOI: 10.3973/j.issn.2096-4498.2023.S1.040

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CrossSection Shape Optimization Design of Railway Tunnel in Squeezing Rock Based on Deformation Classification

YANG Bin1, LIU Tianci2, LIU Zhichun3, *, LI Ning4, 5, DUO Shengjun5   

  1. (1.Gansu Tian Long Railway Co., Ltd., Lanzhou 730030, Gansu, China;2. Hengshui Railway Electrification School, Hengshui 053000, Hebei, China;3. School of Civil Engineering, Shijiazhuang Tiedao University, Shijiazhuang 050043, Hebei, China;4. Engineering Research Center of Railway Industry of Construction Technology for Long Tunnel in Special and Complex Environment, Xi′ an 710043, Shaanxi, China;5.China Railway First Survey and Design Institute Group Co., Ltd., Xi′an 710043, Shaanxi, China)

  • Online:2023-07-31 Published:2023-08-28

Abstract:  To optimize the crosssection shape of squeezed surrounding rock tunnels under large deformation pressure, the crosssection shapes of single-and doubletrack railway tunnels are determined based on the construction clearance of passenger and freight railway tunnel with a speed of 200 km/h. Economic and safe crosssection types of single-and doubletrack railway tunnels under various deformation levels are proposed through structural safety evaluation. The conclusions are drawn as follows: (1) With an increase in deformation level, the structural load increases and the structural safety coefficient decreases evidently. The most economical tunnel crosssection proposed based on the construction clearance cannot meet the structural safety requirements. (2) The arch and wall feet are the weak parts of the tunnel structure. By optimizing the curvature of tunnel crosssection, the smooth connection between arch and sidewall and that between sidewall and inverted arch can be realized, thus effectively improving the stress state of the structure and the structural safety. (3) For single track tunnel: singletrack A crosssection type (connected with the normal singletrack tunnel section) is recommended for grade I deformation, singletrack B crosssection type (optimized crosssection curvature based on singletrack A crosssection) is recommended for grade II deformation, and singletrack E crosssection (circular) is recommended for grades III and IV deformation. (4) For doubletrack tunnel: doubletrack C crosssection type (crosssection curvature optimized on the basis of conventional doubletrack tunnel) is recommended for grades I and II deformation, and doubletrack E crosssection (circular) is recommended for grades III and IV deformation. (5) In engineering practice, the crosssection type should be comprehensively optimized considering structural safety, zone connection, and construction convenience. Under grade IV deformation condition, strengthened grouting reinforcement, multilayer support, and stress release should be conducted to ensure the safety of the tunnel structure.

Key words: squeezing rock, railway tunnel, tunnel crosssection shape, deformation classification, safety factor, optimization design