|
|
Numerical Simulation and Analysis of Influence of Foundation Pit Excavation on Adjacent High-speed Railway in Soft Soil Area |
ZHUO Yi1, ZHANG Jun2, SONG Shun-chen3 |
The Third Railway Survey and Design Institute Group Corporation, Tianjin 300142, China |
|
|
Abstract Research purposes: As adjacent projects that cross over or going through under high-speed railway are gradually increasing, and lots of new highway foundation pit work located around high-speed railway subgrade or bridge protection sphere, the railway will inevitably be influenced by those engineering constructions. Based on a highway project adjacent to a high-speed railway, the 3d numerical analysis model has been built by using ABAQUS software, the construction process of different distance, different excavation depth and different u-shape groove segments is analyzed.
Research conclusions: (1) The additional differential settlement and track irregularity meets the code requirements. The subgrade and frame bridge will rebound induced by pit excavation, and the rebound deformation will decrease after u-shape groove pouring. (2)During the whole construction process,the pit excavation is the key risk stage,the residual u-shape groove segment construction will have no effect when the pit work 72m away from high-speed railway has finished. (3)In order to reduce the influence to the existed railway and ensure the safety and comfort of railway, the railway foundation deformation influenced by pit excavation should be fully considered and limited to a small range, decrease each step excavation volume. According to reasonable procedure, independent sequential pit excavation and pouring are performed. (4) This paper provides the theoretical evidence for the construction of the adjacent high-speed railway project and also provides the valuable reference to the study on the foundation pit excavation on adjacent high-speed railway in soft soi1 area.
|
Received: 31 July 2013
|
|
|
|
|
[1] 王菲, 祥一. 基坑开挖对既有铁路桥基础变位的影响分析 [J]. 铁道工程学报. 2012(8):28-33.
Wang Fei, Zhuo Yi. Analysis of Influence of Foundation Pit Excavation on Displacement of Existed Railway Bridge Foundation[S]. Journal of Railway Engineering Society, 2012(8): 28-33.
[2] TB 10621-2009, 高速铁路设计规范(试行) [S].
TB 10621-2009, Code for Design of High Speed Railway [S].
[3] 铁运[2012]83号, 高速铁路无昨轨道修理规则(试行) [S].
Railway Transportation [2012] No.83, Ballastless Track of High-speed Railway Repair Rule [S].
[4] 费康, 张建伟. ABAQUS在岩土工程中的应用 [M]. 北京:中国水利水电出版社, 2010.
Fei Kang, Zhang Jianwei. Applications of ABAQUS in Soil Engineering [M]. Beijing: China Water & Power Press,2010.
[5] 王菲,糕一. 盾构法施工对既有桥基础变位的影响分析 [J]. 铁道工程学报, 2011(6):14-20.
Wang Fei, Zhuo Yi. Analysis of Existed Bridge Foundation Deformation Influenced by Shield Tunnelling [J]. Journal of Railway Engineering Society,2011(6):14-20.
[6] 王菲. 地基土-高层建筑相互作用的动态子结构法 [D]. 天津:天津大学, 2010.
Wang Fei. Dynamic Substructure Method for Soil-Multistory Buildings Interaction System [D].Tianjin: Tianjin University, 2010.
[7] 龚晓南. 土塑性力学 [M]. 杭州: 浙江大学出版社,1999.
Gong Xiaonan. Soil Plasticity [M]. HangZhou: Zhejiang University Press,1999.
[8] 毕继红, 王晖. 工程弹塑性力学 [M]. 天津: 天津大学出版社,2003.
Bi Jihong, Wang Hui. Engineering Elastic-plastic Mechanics [M]. Tianjin: Tianjin University Press, 2003.
[9] 李林. 盾构施工地层形变及盾构穿越桩群的三维数值模拟及试验研究 [D]. 天津: 天津大学, 2008.
Li Lin. The 3D FEM Simulation and Experimental Research on Ground Deformation and Piles by Shield Driven [D]. Tianjin: Tianjin University, 2008.
|
|
|
|