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溪洛渡地下洞室群地震响应的二维及三维数值模型比较分析研究
引用本文:吕涛,李海波,杨建宏,周青春,李俊如.溪洛渡地下洞室群地震响应的二维及三维数值模型比较分析研究[J].岩土力学,2009,30(3):721-728.
作者姓名:吕涛  李海波  杨建宏  周青春  李俊如
作者单位:1. 中国科学院,武汉岩土力学研究所,武汉,430071
2. 国家电力公司成都勘测设计研究院,成都,610072
基金项目:国家自然科学基金重点项目 
摘    要:验证了显示有限差分方法进行地震波衍射分析的可行性,并基于此方法分别建立了二维(2D)及三维(3D)数值模型,对溪洛渡地下洞室群的地震安全性进行了分析与讨论。研究表明,在唐山余震天津医院地震波作用下洞室群处于安全状态。对比2D及3D数值计算结果可以发现,2D数值模型计算效率远远高于3D数值计算模型;对于建造于完整性较好、强度较高的岩体介质中地下洞室群而言,可以采用2D数值模型粗略估算洞身部分的地震响应,而洞室端面的动力响应则必须通过建立3D模型来进行分析。

关 键 词:溪洛渡水电站  地下洞室  稳定性  地震反应  地震安全性  显示有限差分法
收稿时间:2007-10-13

Comparison between 2D and 3D numerical analysis for seismic response of Xiluodu underground caverns
L Tao,LI Hai-bo,YANG Jian-hong,ZHOU Qing-chun,LI Jun-ru.Comparison between 2D and 3D numerical analysis for seismic response of Xiluodu underground caverns[J].Rock and Soil Mechanics,2009,30(3):721-728.
Authors:L Tao  LI Hai-bo  YANG Jian-hong  ZHOU Qing-chun  LI Jun-ru
Institution:1. Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan 430071, China; 2. Chengdu Hydroelectric Investigation & Design Institute of SPC, Chengdu 610072, China
Abstract:Feasibility of explicit finite difference method(EFDM) to analyze the diffraction of seismic waves has been investigated. Based on EFDM, numerical models in 2D and 3D of Xiluodu underground cavern groups are generated; and detailed discussion of seismic response of underground cavern groups is carried out. Research shows that underground cavern groups are stable after the excavation; and the underground openings are safe under Tianjin hospital seismic waves arising from Tangshan aftershock. Comparison of numerical results between 2D and 3D of seismic response indicates that (1) 2D model is much more efficient than 3D one; (2) for underground caverns located in relatively intact and hard rock mass, 2D model can be used to predict the mechanical response of sections in the middle of caverns approximately; and 3D model has to be used to analyze the response of the sections near cavern portals.
Keywords:Xiluodu Hydropower Plant  underground cavern  stability  seismic response  seismic safety  explicit finite difference method
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