Journal of South China University of Technology(Natural Science Edition) ›› 2024, Vol. 52 ›› Issue (4): 95-103.doi: 10.12141/j.issn.1000-565X.230062

• Traffic Safety • Previous Articles     Next Articles

Safety of Existing Intersection High-Speed Railway Trains Under the Condition of Sheild Tunnel Penetration Construction Considering the Stochastic Field

TANG Qianlong1,2 PENG Limin1 DENG E3 LEI Mingfeng1 WU Bo4 SHI Chenghua1   

  1. 1.School of Civil Engineering,Central South University,Changsha 410075,Hunan,China
    2.Jiangxi Vocational and Technical College of Communications,Nanchang 330013,Jiangxi,China
    3.National Rail Transit Electrification and Automation Engineering Technology Research Center (Hong Kong Branch)/ Department of Civil and Environmental Engineering,The Hong Kong Polytechnic University,Hong Kong 999077,China
    4.School of Civil and Architectural Engineering,East China University of Technology,Nanchang 330013,Jiangxi,China
  • Received:2023-02-22 Online:2024-04-25 Published:2023-07-14
  • Contact: 邓锷(1991-),男,博士,主要从事高铁隧道空气动力学研究。 E-mail:deng@polyu.edu.hk
  • About author:唐钱龙(1980-),男,博士生,副教授,主要从事隧道与地下空间研究。E-mail:174801039@csu.edu.cn
  • Supported by:
    the National Natural Science Foundation of China(52308419);the Science and Technology Research Program of Education Department of Jiangxi Province(GJJ204611)

Abstract:

In view of the problem that the subgrade soil is often regarded as a medium with deterministic parameters in the traffic safety analysis of high-speed railway in subgrade section. In this paper, based on the stochastic field theory, subgrade soil was regarded as a three-dimensional medium with longitudinal uniformity, and a numerical model was established for a shield tunnel penetrating below an existing high-speed railway line. The parameter randomness of the subgrade soil cross section was simulated based on the number theory point selection method. In order to further explore the impact of a penetration shield tunnel on the safety of the existing high-speed railway, a 31-DOF vehicle model was established in this paper. Combined with the Fluent 3D fluid simulation software and dynamic grid technology, the aerodynamic load time history curve of high-speed train was obtained, and the derailment coefficient and probability density evolution information of trains at speeds of 300, 350 and 400 km/h were analyzed based on the probability density evolution theory. The results show that the existence of stochastic field makes the wheel weight reduction rate and derailment coefficient present a certain probability distribution range. The vertical wheel-rail force curve fluctuates obviously under the influence of the aerodynamic load and the subgrade deformation caused by the tunnel penetration. The maximum load reduction rate of wheel weight appears in the descending section on both sides of the maximum surface settlement. The vertical aerodynamic load is greater than the transverse aerodynamic load. With the increase of vehicle speed, the upper limits of wheel weight reduction rate and derailment coefficient are gradually increasing. In order to ensure the safety of intersecting trains, it is recommended that the running speed of high-speed trains under the shield tunneling should not exceed 300 km/h.

Key words: running safety, probability density evolution theory, stochastic field, foundation soil, tunnel

CLC Number: