:Seismic performance assessment of high CFRDs based on fragility analysis论文

:Seismic performance assessment of high CFRDs based on fragility analysis论文

本文主要研究内容

作者(2019)在《Seismic performance assessment of high CFRDs based on fragility analysis》一文中研究指出:Due to a large number of high concrete face rockfill dams(CFRDs) being constructed, the seismic safety is crucially important and seismic performance assessment must be performed for such dams. Fragility analysis is a method of great vitality for seismic performance assessment; it can intuitively forecast the structural effects of different ground motion intensities and provide an effective path for structure safety assessment. However, this method is rarely applied in the field of high earth dam risk analysis.This paper introduces fragility analysis into the field of high CFRD safety assessment and establishes seismic performance assessment methods. PGA, Sa(T1, 5%), PGV and PGD are exploited as the earthquake intensity measure(IMs). Relative settlement ratio of dam crest, cumulative sliding displacement of dam slope stability and a new face-slab destroying index(based on DCR and COD) are regarded as the dam damage measures(DMs). The dividing standards of failure grades of high CFRDs are suggested based on each DM. Fragility function is estimated according to incremental dynamic analysis(IDA) and multiple stripes analysis(MSA) methods respectively from a large number of finite element calculations of a certain CFRD, and seismic fragility curves are determined for each DM. Finally, this study analyzes the failure probabilities of the dam under different earthquake intensities and can provide references and bases for the seismic performance design and safety risk assessment of high CFRDs.

Abstract

Due to a large number of high concrete face rockfill dams(CFRDs) being constructed, the seismic safety is crucially important and seismic performance assessment must be performed for such dams. Fragility analysis is a method of great vitality for seismic performance assessment; it can intuitively forecast the structural effects of different ground motion intensities and provide an effective path for structure safety assessment. However, this method is rarely applied in the field of high earth dam risk analysis.This paper introduces fragility analysis into the field of high CFRD safety assessment and establishes seismic performance assessment methods. PGA, Sa(T1, 5%), PGV and PGD are exploited as the earthquake intensity measure(IMs). Relative settlement ratio of dam crest, cumulative sliding displacement of dam slope stability and a new face-slab destroying index(based on DCR and COD) are regarded as the dam damage measures(DMs). The dividing standards of failure grades of high CFRDs are suggested based on each DM. Fragility function is estimated according to incremental dynamic analysis(IDA) and multiple stripes analysis(MSA) methods respectively from a large number of finite element calculations of a certain CFRD, and seismic fragility curves are determined for each DM. Finally, this study analyzes the failure probabilities of the dam under different earthquake intensities and can provide references and bases for the seismic performance design and safety risk assessment of high CFRDs.

论文参考文献

  • [1].Hybrid method of limit equilibrium and finite element internal force for analysis of arch dam stability against sliding[J]. BAO TengFei1,2,3,XU BaoSong1,2,3 & ZHENG XueQing1,2,3 1State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering,Hohai University,Nanjing 210098,China;2National Engineering Research Center of Water Resources Efficient Utilization and Engineering Safety,Nanjing 210098,China;3College of Water Conservancy and Hydropower Engineering,Hohai University,Nanjing 210098,China.  Science China(Technological Sciences).2011(04)
  • [2].Expected Sliding Distance of Vertical Slit Caisson Breakwater[J]. Dong Hyawn KIM.  China Ocean Engineering.2017(03)
  • [3].Interface stress element method and its application in analysis of anti-sliding stability of gravity dam[J]. ZHANG Qing 1,2* , WANG ZhiQiang 1,2 & XIA XiaoZhou 1,2 1 State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Hohai University, Nanjing 210098, China; 2 Department of Engineering Mechanics, Hohai University, Nanjing 210098, China.  Science China(Technological Sciences).2012(12)
  • [4].Application of strength reduction method to dynamic anti-sliding stability analysis of high gravity dam with complex dam foundation[J]. Deng-hong CHEN,Cheng-bin DU Department of Engineering Mechanics,College of Mechanics and Materials,Hohai University,Nanjing 210098,P.R.China.  Water Science and Engineering.2011(02)
  • [5].A dissolution-diffusion sliding model for soft rock grains with hydro-mechanical effect[J]. Z.Liu,C.Y.Zhou,B.T.Li,Y.Q.Lu,X.Yang.  Journal of Rock Mechanics and Geotechnical Engineering.2018(03)
  • [6].Analysis of a Failed Port Slope and Stabilization[J]. 闫澍旺,舒阳,楚剑.  Transactions of Tianjin University.2005(05)
  • [7].Analysis Model of Dynamic Response on the Circular Caisson Breakwater Under Random Wave[J]. 严驰,钟晓红,周锡礽,肖仕宝.  Transactions of Tianjin University.2006(02)
  • [8].MUD BANK SLIDING IN A DAM RESERVOIR[J]. A. ALEXIS, D. MAROT and P. THOMAS Doctor-Engineer, Laboratoire Genie Vivil Nantes Saint-Nazaire, BP420,44606 Saint-Nazaire, France. Doctor, Laboratoire Genie Vivil Nantes Saint-Nazaire, BP420,44606 Saint-Nazaire, France. Professor, Laboratoire Genie Vivil.  International Journal of Sediment Research.2001(03)
  • [9].Seismic stability assessment of an arch dam-foundation system[J]. Pan Jianwen,Xu Yanjie,Jin Feng,Wang Jinting.  Earthquake Engineering and Engineering Vibration.2015(03)
  • [10].Incremental dynamic analysis of concrete gravity dams including base and lift joints[J]. Mohammad Alembagheri,Mohsen Ghaemian.  Earthquake Engineering and Engineering Vibration.2013(01)
  • 论文详细介绍

    论文作者分别是来自Science China(Technological Sciences)的,发表于刊物Science China(Technological Sciences)2019年04期论文,是一篇关于,Science China(Technological Sciences)2019年04期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Science China(Technological Sciences)2019年04期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

    标签:;  

    :Seismic performance assessment of high CFRDs based on fragility analysis论文
    下载Doc文档

    猜你喜欢