...
首页> 外文期刊>Engineering Geology >Site-specific ground motion modeling for a historical Cairo site as a step towards computation of seismic input at cultural heritage sites
【24h】

Site-specific ground motion modeling for a historical Cairo site as a step towards computation of seismic input at cultural heritage sites

机译:历史城市特定地面运动建模,作为文化遗产地震意见计算的一步

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Throughout time, the area of historical Cairo has been affected by several earthquakes from near and distant seismogenic zones. The maximum earthquake intensity reported in Cairo is VII, on the Modified Mercalli Intensity scale, due to the 1992 Cairo earthquake (Mw = 5.9). About 212 Coptic and Islamic monuments were damaged. The spatial distribution of damage, suggests the occurrence of strong local site effects in combination with high vulnerability of the cultural heritage buildings. This study presents the application of a novel seismic hazard analysis approach at a local scale based on physics-based ground motion simulations. A site-specific multi-scenario seismic input (ground motion time histories and response spectra) is computed at a heritage building in Cairo, considering the local site effect. The seismic input is calculated in three steps: a regional scale analysis followed by a site-specific analysis and the combinations of the computed scenarios ground motion. In the regional scale analysis synthetic accelerograms are computed at the site bedrock. Then, the site-specific analysis is performed to calculate the site surface ground motions or response spectra considering the local site effect. Three earthquake scenarios have been considered, characterized by different locations, magnitudes, and fault configurations. The last step consists in the combination of the computed scenario ground motion into one single multi-scenario seismic input specific for the site of interest. This input is represented by spectral ordinates and their variability. For the engineering purpose of time history analysis, the method allows also to extract the computed site specific physics-based accelerograms, requiring no amplitude scaling nor filtering by magnitudes, distances, or site classifications, as usually done with real ground motion records.
机译:历史悠久的开罗地区受到近距离和遥远的地震区的几个地震的影响。由于1992年的开罗地震(MW = 5.9),开罗报道的最大地震强度为VII,即改进的梅尔利强度规模。大约212家科普特和伊斯兰古迹损坏了。损害的空间分布表明,与文化遗产建筑的高脆弱性相结合的强大局部场地效应的发生。本研究介绍了一种基于基于物理基础运动模拟的本地规模的新型地震危害分析方法。考虑到当地现场效应,在开罗的遗产建筑中计算了特定于特定的多场景地震进口(地面行动时间历史和响应谱)。地震输入分三个步骤计算:区域规模分析,然后是特定于站点的分析和计算场景的组合。在区域规模分析中,综合加速器在站点基岩上计算。然后,考虑局部现场效应,执行特定于站点的分析来计算站点表面地面运动或响应光谱。已经考虑了三种地震场景,其特征在于不同的位置,大小和故障配置。最后一步包括计算的方案地面运动的组合,进入一个特定于感兴趣部位的单个多场景地震输入。该输入由光谱坐标及其可变性表示。为了进行时间历史分析的工程目的,该方法还允许提取基于特定的基于物理的AcceleroGrams,不需要幅度缩放,也不按大小,距离或站点分类过滤,通常用真实的地面运动记录完成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号