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首页> 外文期刊>Earthquake spectra >NGA-West2 Equations for Predicting Vertical-Component PGA, PGV, and 5%-Damped PSA from Shallow Crustal Earthquakes
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NGA-West2 Equations for Predicting Vertical-Component PGA, PGV, and 5%-Damped PSA from Shallow Crustal Earthquakes

机译:NGA-West2方程用于预测浅层地震的垂直分量PGA,PGV和5%阻尼PSA

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摘要

We present ground motion prediction equations (GMPEs) for computing natural log means and standard deviations of vertical-component intensity measures (IMs) for shallow crustal earthquakes in active tectonic regions. The equations were derived from a global database with M 3.0-7.9 events. The functions are similar to those for our horizontal GMPEs. We derive equations for the primary M- and distance-dependence of peak acceleration, peak velocity, and 5%-damped pseudo-spectral accelerations at oscillator periods between 0.01-10 s. We observe pronounced M-dependent geometric spreading and region-dependent anelastic attenuation for high-frequency IMs. We do not observe significant region-dependence in site amplification. Aleatory uncertainty is found to decrease with increasing magnitude; within-event variability is independent of distance. Compared to our horizontal-component GMPEs, attenuation rates are broadly comparable (somewhat slower geometric spreading, faster apparent anelastic attenuation), V-S30-scaling is reduced, nonlinear site response is much weaker, within-event variability is comparable, and between-event variability is greater.
机译:我们提出了地震动预测方程式(GMPEs),用于计算活动构造区域中浅层地壳地震的自然对数均值和垂直分量强度测度(IMs)的标准偏差。这些方程式是从具有M 3.0-7.9事件的全局数据库中得出的。功能类似于我们的水平GMPE的功能。我们推导了在0.01-10 s之间的振荡器周期内,峰值加速度,峰值速度和5%阻尼伪谱加速度的主要M和距离相关性的方程式。我们观察到高频IM的明显的M依赖几何扩展和区域依赖非弹性衰减。我们没有观察到站点扩增中明显的区域依赖性。发现随着大小的增加,不确定性会降低。事件内变异性与距离无关。与我们的水平分量GMPE相比,衰减率具有大致可比性(某种程度上几何扩展较慢,表观非弹性衰减较快),V-S30缩放比例减小,非线性部位响应弱得多,事件内变异性可比,并且-事件变异性更大。

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  • 来源
    《Earthquake spectra》 |2016年第2期|1005-1031|共27页
  • 作者单位

    Univ Calif Los Angeles, Los Angeles, CA USA;

    US Geol Survey, MS 977,345 Middlefield Rd, Menlo Pk, CA 94025 USA;

    Risk Management Solut, 7575 Gateway Blvd, Newark, CA 94560 USA;

    Univ Western Ontario, London, ON, Canada;

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  • 正文语种 eng
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