首页> 外文期刊>Bulletin of the Seismological Society of America >Nonlinear Analysis on Seismic Site Response of Fuzhou Basin, China
【24h】

Nonlinear Analysis on Seismic Site Response of Fuzhou Basin, China

机译:福州盆地地震场地响应的非线性分析

获取原文
获取原文并翻译 | 示例
       

摘要

Based on the parallel computing cluster platform of the ABAQUS software, a large-scale 2D finite-element refined nonlinear modeling approach was used to study seismic site effects in the Fuzhou basin, such as peak ground acceleration (PGA), spectral acceleration, duration, and acceleration transfer functions. A 1D equivalent linear wave propagation analysis was conducted also, with Proshake for supplementation and calibration. The simulation results demonstrated the following. (1) PGA amplification factors exhibited spatial variation characteristics that varied both laterally and with depth and exhibited a nonmonotonic decreasing characteristic with soil depth. From the 2D results, a greater motion amplification and focusing effect for some shallow soil layers was observed where there was significant fluctuation of the underlying bedrock interface. The moderate-and long-period ground-motion components were obviously amplified, but were was less pronounced in the 1D result. (2) For low-, moderate-, and high-level earthquakes, the surface PGA amplification factors were 1.4-2.5, 1.3-2.0, and 1.1-2.0, respectively, and the predominant periods of the basin were 0.35-0.65 s, 0.40-0.75 s, and 0.50-1.05 s, respectively. (3) Ground-motion durations were prolonged to different degrees, which were closely related to the characteristics of seismic bedrock motions. (4) The sensitive frequency band of the seismic site response was from 0.5 to 2 Hz. (5) Ground-motion amplification in the downtown section of the city of Fuzhou was generally larger. To a certain extent, the 2D results reflect the influences of the surface topography relief, the fluctuation of the underlying bedrock interface, and lateral heterogeneity of soils on seismic-wave propagation.
机译:基于ABAQUS软件的并行计算集群平台,采用大规模二维有限元精细化非线性建模方法来研究福州盆地的地震场地效应,例如峰值地面加速度(PGA),频谱加速度,持续时间,和加速度传递函数。还使用Proshake进行了一维等效线性波传播分析,以进行补充和校准。仿真结果证明了以下几点。 (1)PGA放大因子表现出随横向和深度变化的空间变化特征,并随土壤深度呈现非单调递减的特征。从二维结果来看,在下面的基岩界面存在明显波动的情况下,观察到了一些浅层土壤的更大的运动放大和聚焦效果。中等和长期地面运动分量明显放大,但在一维结果中不太明显。 (2)对于低,中和高级别地震,地表PGA放大因子分别为1.4-2.5、1.3-2.0和1.1-2.0,盆地的主要周期为0.35-0.65 s, 0.40-0.75 s和0.50-1.05 s。 (3)地震动持续时间不同程度地延长,这与地震基岩运动的特征密切相关。 (4)地震现场响应的敏感频段为0.5至2 Hz。 (5)福州市市区的地震动放大率一般较大。二维结果在一定程度上反映了地表地形起伏,下伏基岩界面的波动以及土壤横向异质性对地震波传播的影响。

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