首页> 外文期刊>Bulletin of earthquake engineering >Physics-based seismic input for engineering applications: a case study in the Aterno river valley, Central Italy
【24h】

Physics-based seismic input for engineering applications: a case study in the Aterno river valley, Central Italy

机译:工程应用的物理抗震投入 - 以意大利河口河流河谷为例

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, we present 3D physics-based numerical simulations, in the near-source region at the regional scale, of the 2009, April 6, L'Aquila earthquake (central Italy), based on improved models of the Aterno river basin geology and source kinematics. The simulations were carried out by an open-source code, SPEED, based on a discontinuous Galerkin spectral element method. The numerical mesh of the Aterno basin was built on a detailed subsurface geological model and on the evaluation of the dynamic properties of the soils. The source model was selected among the kinematic solutions available in the literature as the one that fits best the near-source observations. Broadband ground motions were then generated through a hybrid method, combining 3D low frequency waveforms with high-frequency stochastic synthetics. To provide an example of application as seismic input to earthquake engineering analyses in the time domain, results of this approach were used for 2D site response analyses at Castelnuovo, a village severely damaged by the earthquake, and in the neighborhood of which no seismic record was available. SPEED simulation satisfactorily reproduces the recorded accelerograms in the frequency range 0.1-0.7 Hz. The site response analysis at the local scale shows that the amplification of the hill is more significant at its natural frequency, due to topographic and stratigraphic factors, than at the peak of the seismic input simulated by SPEED, that is at about 3 s along the fault-normal component. The presented application supports the conclusion that 3D physics-based numerical simulations do have the potential to become an alternative for determination of input ground motion for earthquake engineering analyses, especially for those scenarios for which real records are not available.
机译:在本文中,我们基于Aterno River盆地地质学的改进模型和来源运动学。通过基于不连续的Galerkin谱元素方法,通过开源码,速度进行模拟。 ATERNO盆地的数值网是基于详细的地下地质模型和土壤动态性质的评价。作为适合最佳近源观测的文献中可用的运动解决方案中选择了源模型。然后通过混合方法生成宽带地运动,将3D低频波形与高频随机合成器相结合。为了提供作为地震工程分析的地震输入的应用示例,该方法的结果用于Castelnuovo的2D站点响应分析,该村庄受到地震严重损坏的村庄,并且在没有地震记录的附近可用的。速度模拟令人满意地再现频率范围0.1-0.7 Hz的记录的加速局。本地规模的站点响应分析表明,由于地形和地层因素,山的放大比其自然频率更为显着,而不是通过速度模拟的地震输入的峰值,即沿着故障正常组件。所呈现的应用程序支持结论,基于3D物理的数值模拟确实有可能成为确定地震工程分析的输入地面运动的替代方案,特别是对于那些实际记录不可用的这些场景。

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