首页> 外文期刊>Bulletin of the Seismological Society of America >Site-Effects Investigation in the City of Chlef (Formerly El-Asnam), Algeria, Using Earthquake and Ambient Vibration Data
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Site-Effects Investigation in the City of Chlef (Formerly El-Asnam), Algeria, Using Earthquake and Ambient Vibration Data

机译:使用地震和环境振动数据在阿尔及利亚切尔夫市(以前为El-Asnam)进行现场效果调查

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Weak-motion recordings of local earthquakes and ambient vibration data in the 0.2-15 Hz frequency range were used to quantify site effects in downtown Chlef city, Algeria. Nine short-period stations were installed in the city. A total of 15 local events with 3: 1 <= M-L <= 4: 9 were selected. Three experimental techniques were applied: standard spectral ratios, receiver functions, and horizontal-to-vertical spectral ratios using ambient vibrations (HVSRN). Theoretical HVSRN curves were also calculated from suggested soil models for each site. Fundamental frequencies obtained from all techniques showed good agreement. Two groups of fundamental frequencies were distinguished in the city. In the northern part of the study area, the frequency peaks varied from 0.3 to 0.4 Hz; in the southern part they varied from 0.6 to 1.6 Hz. The amplification factors of these frequency peaks were 4-8. Earthquake and ambient vibration data were able to identify fundamental frequency peaks successfully; however, the amplitudes of the peaks were slightly lower for ambient vibrations. Moreover, the fundamental frequency peak progressively increased from northwest to southeast, which is consistent with the direction of decreasing thickness of a Miocene layer overlying the basement. We infer, as expected, that the large impedance contrast between Miocene deposits and Mesozoic basement, which can be interpreted as seismic bedrock, is the cause of the fundamental frequency. Furthermore, earthquake data were more appropriate for identifying peaks at frequencies higher than the fundamental one. Indeed, a clear peak was observed at all northwestern sites in the 3-4 Hz range, with an amplification factor of 3-5. At the other sites, particularly in the center of the city, the peak was less evident.
机译:局部地震的弱运动记录和0.2-15 Hz频率范围内的环境振动数据用于量化阿尔及利亚Chlef市区的场地影响。该市安装了9个短期站。总共选择了15个局部事件,其中3:1 <= M-L <= 4:9。应用了三种实验技术:标准频谱比,接收器功能以及使用环境振动(HVSRN)的水平/垂直频谱比。还从每个站点的建议土壤模型中计算了理论HVSRN曲线。从所有技术获得的基本频率显示出良好的一致性。该城市区分了两组基本频率。在研究区域的北部,频率峰值从0.3到0.4 Hz不等。在南部,它们从0.6到1.6 Hz不等。这些频率峰值的放大因子为4-8。地震和环境振动数据能够成功识别基本频率峰值。但是,对于环境振动,峰的振幅略低。此外,基频峰从西北向东南逐渐增大,这与基底上中新世层厚度减小的方向一致。正如我们所预期的,我们推断,中新世沉积与中生代基底之间的大阻抗差异可以解释为地震基岩,这是基频的原因。此外,地震数据更适合于识别高于基本频率的峰值。实际上,在西北所有站点的3-4 Hz范围内均观察到一个清晰的峰值,放大系数为3-5。在其他地点,特别是在市中心,高峰不那么明显。

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