Stability Analysis of Slope and Diversion Water Tunnel of Hydropower Station under Strong Earthquake

被引:0
作者
Zhongchang Wang
Bo Li
机构
[1] Dalian Jiaotong University,School of Traffic and Transportation Engineering
来源
Geotechnical and Geological Engineering | 2021年 / 39卷
关键词
Slope; Diversion water tunnel; Lining structure; Dynamic analysis; Dynamic response;
D O I
暂无
中图分类号
学科分类号
摘要
According to the slippage of the slope under the action of strong earthquakes and the deformation of the lining structure of the diversion water tunnel, the hydropower station under the seismic load with a 100-year probability of exceeding 2% was simulated, and the three-dimensional dynamic finite element method was used to analyze the slope of the powerhouse and the diversion water tunnel, and obtained the stress and displacement laws of the slope and the water diversion tunnel lining structure and the dynamic response characteristics of the tunnel. The results showed that under the influence of ground motions, the slope and the lining structure of the diversion water tunnel would produce similar forced vibrations, and the damage effect at the top of the slope was more obvious than that at the empty face. The dynamic displacement, tensile stress and compressive stress increased with the increase of the peak ground motion. The maximum values of tensile and compressive stress of the tunnel lining structure appeared at the entrance of the upper flat section of the diversion water tunnel, and there would be local tensile stress concentrations at the top, bottom and the middle of the tunnel. Due to the existence of adjacent tunnels, the tensile stress generated by the tunnel lining was asymmetric in the horizontal direction, and the mutual influence between the two tunnels increased the maximum tensile stress accordingly.
引用
收藏
页码:2041 / 2049
页数:8
相关论文
共 37 条
[1]  
Cui JH(2013)Seismic analysis of auxiliary powerhouse of Mitsong hydropower station Hydropower Energy Sci 31 106-108
[2]  
Chen YQ(2013)The effect of dynamic elastic modulus changes on the dynamic response of arch dams J China Inst Water Resour Hydropower Res 11 125-129
[3]  
Gong YQ(2009)Dynamical time-history analysis of Xiaowan Arch Dam and its safety assessment Hydropower 35 56-59
[4]  
Qi YF(2010)Study on substructure pseudo-dynamic test China CivEng J 43 119-123
[5]  
Guo SS(2007)Prospects for the development in theoretical analysis and experimental study of seismic response of underground structures EarthqEngEngVib 27 38-45
[6]  
Li DY(2010)Influence of seismic input mechanism and foundation models on response of gravity dams Chin J GeotechEng 32 82-87
[7]  
Jiang YZ(2011)A numerical simulation comparison between response spectrum analysis and time history analysis Northwest Seismol J 33 275-304
[8]  
Xu WY(2017)Comparison analysis between response displacement method and seismic coefficient method used in calculation of seismic response of metro tunnels Railw Constr 6 68-72
[9]  
Wang RB(2001)Seismic design and analysis of underground structures TunnUndergr Space Technol 16 247-293
[10]  
Shi C(2014)Dynamic stability analyses of Baihetan hydropower-station left slope EngMech 31 149-153