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大型地下洞室群地震水平加速度传播特征研究
引用本文:张玉敏,孙丽梅,朱泽奇.大型地下洞室群地震水平加速度传播特征研究[J].世界地震工程,2012,28(1):44-49.
作者姓名:张玉敏  孙丽梅  朱泽奇
作者单位:1. 华北水利水电学院,河南郑州45001
2. 中国科学院武汉岩土力学研究所,岩土力学与工程国家重点实验,湖北武汉430071
基金项目:国家自然科学基金重大研究计划资助项目(No.90715042);华北水利水电学院高层次人才科研启动项目资助
摘    要:考虑了高山峡谷基岩场地的深度衰减效应,假设地震危险性分析提供的水平峰值加速度的所在位置,选用攀枝花—会理地震波,通过基线校正和高频滤波作为实际地震动输入,利用FLAC3D软件对某水电站大型地下洞室群进行了地震水平加速度传播特性的研究。数值分析结果表明,厂房周围监测点水平加速度时程和输入地震水平加速度时程相似,但存在0.08~0.12s的滞后时差,输入地震动水平峰值加速度向上传播时具有放大效应,在洞室群附近放大两倍左右。所得结果对大型地下洞室群地震动传播特征问题研究具有一定的参考意义。

关 键 词:大型地下洞室群  深度衰减  地震加速度  传播特征  放大效应

Horizontal seismic acceleration propagation characteristics of large-scale underground cavern group
ZHANG Yumin , SUN Limei , ZHU Zeqi.Horizontal seismic acceleration propagation characteristics of large-scale underground cavern group[J].World Information On Earthquake Engineering,2012,28(1):44-49.
Authors:ZHANG Yumin  SUN Limei  ZHU Zeqi
Institution:1.North China Institute of Water Conservancy and Hydroelectric Power,Zhengzhou 450011,China;2.State Key Laboratory of Geo-mechanics and Geo-technical Engineering,Institute of Rock and Soil Mechanics Chinese Academy of Sciences,Wuhan 430071,China)
Abstract:The depth attenuation effect in gorge bedrock site was considered,and the location of horizontal peak acceleration provided in the seismic hazard analysis report was assumed.One of the Panzhihua-Huili earthquake records,by baseline correction and high frequency filtering,was selected as the actual seismic input for numerical simulation on horizontal seismic acceleration propagation of large underground cavern group in some hydraulic power station by software FLAC3D.The results show that the time history of horizontal accelerations around caverns are similar to that of input seismic acceleratioo but legs behind about 0.08~0.12s with the input record.The input peak acceleration can be amplified during vertical propagation,with about twice amplification around caverns.This research results can give a reference to the study on the horizontal seismic propagation of large-scale underground cavern group.
Keywords:large-scale underground cavern group  depth attenuation  seismic acceleration  propagation feature  amplification effect
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