RESEARCH ON HORIZONTAL VIBRATION PROPERTIES OF UNDERWATER VENTILATION SHAFT OF TUNNEL CONSIDERING EFFECT OF SELF-WEIGHT OF STRUCTURE
CHEN Xianghong1,ZHANG Hongru1,CHEN Xi2
(1. School of Civil Engineering and Architecture,Beijing Jiaotong University,Beijing 100044,China; 2. Tech. Traffic Engineering Group Co.,Ltd.,Beijing 100083,China)
Abstract:The seismic response of structure is a complex multi-field coupling issue considering the dynamic interaction effect of soil-water-tunnel shaft simultaneously. Based on the principle of Winkler foundation beam,and the hydrodynamic pressure is considered as the added pseudo mass,the deformation governing differential equation of the Euler beam is established according to the model in which the interface soil is simplified as spring modeling the soil-structure interaction,and the deformation and stress of structure are solved under the seismic loading using the transfer matrix method. Furthermore,a comparative analysis is employed by the usual software ANSYS,it is found that,the introduced foundation beam model and calculation method can reflect the actual vibration characteristics of tunnel shaft in soft soil effectively. Finally,the distribution of internal force along the shaft influenced by the connection joint and self-weight of structure is analyzed,through the discussion of parameters,it is concluded that,the internal force of structure can be decreased by reducing the connecting stiffness between tunnel and shaft,and the degree of structural security is increased;meanwhile,the factor of self-weight of structure is extremely important for the vibration properties of partially embedded tunnel shaft with large cross section,which can not be ignored by designers.
王梦恕. 水下交通隧道发展现状与技术难题——兼论“台湾海峡海底铁路隧道建设方案”[J]. 岩石力学与工程学报,2008,27(11):2 161-2 172.(WANGMengshu.Current developments and technical issues of underwater traffic tunnel—discussion on construction scheme of Taiwanstrait undersea railway tunnel[J]. Chinese Journal of Rock Mechanics and Engineering,2008,27(11):2 161-2 172.(in Chinese))
[2]
HASHASH YMA,HOOK JJ,SCHMIDT B,et al. Seismic design andanalysis of underground structures[J]. Tunnelling and Undergound Space Technology,2001,16(2):247-293.
[3]
赖 伟,郑铁华,雷 勇. Morison方程中动水阻力项对桥梁桩柱地震反应的影响[J]. 四川建筑科学研究,2007,33(4):163-168. (LAI Wei,ZHENG Tiehua,LEI Yong.The effect of hydrodynamic drag force in Morison equation on the seismic response of piles[J]. Sichuan Building Science,2007,33(4):163-168.(in Chinese))
[4]
刘振宇.深水桥梁的地震响应研究[博士学位论文][D]. 成都:西南交通大学,2008.(LIU Zhenyu.The earthquake response study of deep- water bridges[Ph. D. Thesis][D]. Chongqing:Southwest JiaotongUniversity,2008.(in Chinese))
[5]
陈熙之,解明雨,孙焕纯. 桩-土-结构-水体系相互作用的弹塑性地震反应分析[J]. 计算结构力学及其应用,1985,2(1):31-37.(CHEN Xizhi,XIE Mingyu,SUN Huanchun. The elastoplastic seismic response analysisof the interaction of the pile-structure-water system[J]. Journal of Computational Structural Mechanics and Applications,1985,2(1):31-37.(in Chinese))
[6]
冯玉涛,戎进章,曹 芳,等. 动水及桩-土-结构相互作用对跨江大桥稳定性的地震影响分析[J]. 岩石力学与工程学报,2006,25(增1):2 713-2 718.(FENG Yutao,RONG Jinzhang,CAO Fang,et al. Seismic response analysis of hydrodynamic and pile-soil- structure interaction for river-spanning bridge[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(Supp.1):2 713-2 718.(in Chinese))
PARK M S,KOO W,KAWANO K. Dynamic response analysis of an offshore platform due to seismic motions[J].Engineering Structures,2011,33(5):1607-1616.
[9]
居荣初.弹性结构与液体的耦联振动理论[M]. 北京:地震出版社,1983:223-252.(JU Rongchu.Theory of the coupledvibrationbetween liquid and elastic structures[M].Beijing:Earthquake Press,1983:223-252.(in Chinese))
张志强,何 川. 双线盾构隧道与联络通道复杂结构受力分析[J]. 铁道学报,2002,24(6):89-92.(ZHANG Zhiqiang,HE Chuan. Research on mechanical behaviorof construction of link line and shield tunnel on No.2 line of Guangzhou metro[J]. Journal of the China Railway Society,2002,24(6):89-92.(in Chinese))
[14]
IOANNISA,NIKOSG,VASILEIOSD,et al. Nonlinear Response of Deep Immersed Tunnel to Strong Seismic Shaking[J]. Journal of Geotechnical and Geoenvironmental Engineering,2007,133(9):1 067-1 089.