列车振动作用下沉管地基砂土液化可能性研究
详细信息 本馆镜像全文    |  推荐本文 | | 获取馆网全文
摘要
根据土动力学和轨道动力学的原理 ,利用列车 轨道系统动力分析模型和提出的隧道结构 地层动力分析模型 ,分析高速列车作用下沉管地基的动力响应 ,根据模型计算了京沪高速铁路南京上元门沉管隧道地基在高速列车作用下的动剪应力分布 ;通过对现场地质资料的回归分析得到了沉管隧道 3个典型断面的地基抗液化剪应力 ,据此分析了沉管地基在高速列车作用下的液化可能性 ,以便为沉管隧道的进一步设计施工提供参考
Based on the theory of soil dynamics and rail dynamics, the dynamic models of the train-rail system and the tunnel structure-stratum system are made use of to analyze the dynamic response of the immersed tube tunnel foundation under the action of the high-speed train. According to these models, the dynamic shear stress distribution of the foundation of the Shangyuanmen immersed tube tunnel on the Beijing-Shanghai High-Speed Railway Line is calculated when under the vibration of the high-speed train; by analyzing the geological information of the site, the liquefaction-resistant shear stress of the foundation of three typical sections of the immersed tube tunnel is acquired. Thus the possibility of foundation liquefaction of the immersed tube tunnel is analyzed so as to give reference to future design and construction of the immersed tube tunnel.
引文
[1]中铁大桥局勘测设计院.土的动力性质试验报告[R].武汉:中铁大桥局,1997.
    [2]普拉卡什S .土动力学[M].徐攸在,王志良,王余庆,等译.北京:水利电力出版社,1984.
    [3]SeedHB .Simplifiedprocedureforevaluatingsoilliquefactionpo tential[J].Jour.SoilMechFoundDiv.ASCE ,1971,97(9):1249—1273.
    [4]张弥,刘维宁,赵成刚,等.高速铁路长江沉管隧道技术前期研究[R].北京:北京交通大学,1998.
    [5]翟婉明.车辆轨道耦合动力学[M ].北京:中国铁道出版社,1997.
    [6]张弥,刘维宁,张鸿儒,等.京沪高速铁路南京长江水底隧道列车振动和地震作用下沉管地基整体稳定性研究[R].北京:北京交通大学,1999.

版权所有:© 2023 中国地质图书馆 中国地质调查局地学文献中心