首页> 外文期刊>Earthquake spectra >Apparent Wave Velocity and Site Amplification at the California Strong Motion Instrumentation Program Carquinez Bridge Geotechnical Arrays During the 2014 M6.0 South Napa Earthquake
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Apparent Wave Velocity and Site Amplification at the California Strong Motion Instrumentation Program Carquinez Bridge Geotechnical Arrays During the 2014 M6.0 South Napa Earthquake

机译:在2014年M6.0南纳帕地震中,加利福尼亚强运动仪器计划Carquinez桥岩土力学阵列的视在波速和站点放大

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The Carquinez Bridge geotechnical arrays are operated by the California Strong Motion Instrumentation Program (CSMIP) and recorded a peak ground acceleration (PGA) of approximately 1.0g at ground surface during the 2014 South Napa earthquake. The recorded PGA was significantly larger than those at the nearby surface sites. This study considers surface and downhole recordings from the additional 28 earthquakes recorded at the same arrays to understand the effects of wave propagation and site response at these arrays. Several site response analyses are performed to understand soil nonlinearity using the observed ground accelerations during the 2014 South Napa sequence. Apparent shear wave velocities are calculated from downhole records, which show clear reduction as ground motion intensity increases. Empirical transfer functions (EFTs) are also calculated in which the resonance frequencies became lower during strong shaking during the 2014 South Napa main shock. The in-situ critical damping ratio appears to be frequency dependent in the soft clay deposits. Lower damping at frequencies greater than about 5 Hz may have contributed to the observed PGA at Array #1 during the main shock.
机译:Carquinez桥岩土阵列是由加利福尼亚强运动仪器计划(CSMIP)运营的,在2014年南纳帕地震中,记录到地面的峰值地面加速度(PGA)约为1.0g。记录的PGA明显大于附近地面站点的PGA。这项研究考虑了在相同阵列中记录的另外28次地震的地表和井下记录,以了解这些阵列处的波传播和场地响应的影响。进行了几次场地响应分析,以利用2014 South Napa序列中观测到的地面加速度来了解土壤非线性。根据井下记录计算表观剪切波速度,随着地面运动强度的增加,剪切波速度明显减小。还计算了经验传递函数(EFT),在该函数中,2014年南纳帕主震在强烈震动期间共振频率降低。在软黏土沉积物中,现场临界阻尼比似乎与频率有关。在主冲击期间,频率大于约5 Hz时较低的阻尼可能有助于在阵列#1处观察到的PGA。

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