首页> 外文期刊>Bulletin of the Seismological Society of America >Ground-Motion Prediction Equations for Subduction Slab Earthquakes in Japan Using Site Class and Simple Geometric Attenuation Functions
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Ground-Motion Prediction Equations for Subduction Slab Earthquakes in Japan Using Site Class and Simple Geometric Attenuation Functions

机译:基于场地类和简单几何衰减函数的日本俯冲平板地震地震动预测方程

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The frequency content of strong ground motions from subduction slab earthquakes differs significantly from that of ground motions produced by other categories (tectonic locations: shallow crustal, upper mantle, and subduction interface) of earthquakes in subduction zones. In the last two decades, a large number of records from subduction slab events have been obtained in Japan. We present a ground-motion prediction equation (GMPE) for this category of earthquakes. We used a large dataset from reliably identified slab events up to the end of 2012. The GMPEs were based on a set of simple geometric attenuation functions, site classes were used as site terms, and nonlinear site amplification ratios were adopted. A bilinear magnitude-scaling function was adopted for large earthquakes with moment magnitude M-w >= 7.1, with the scaling rates for large events being much smaller than for the smaller events. A magnitude-squared term was used for events with M-w < 7.1 as well as the bilinear magnitude-scaling function. We also modeled the effect of volcanic zones using an anelastic attenuation coefficient applied to a horizontal portion of the seismic-wave travel distance within possible volcanic zones. We found that excluding the records from sites with inferred site classes improved the model goodness of fit. The within-event residuals were approximately separated into within-site and between-site residuals, and the corresponding standard deviations were calculated using a random effects model. The separation of within-event residuals into within-site and between-site components allows for the possibility of adopting different standard deviations for different site classes in a probabilistic seismic-hazard analysis if desired.
机译:俯冲平板地震产生的强烈地震动的频率含量与俯冲带中其他类别地震(构造位置:浅地壳,上地幔和俯冲界面)产生的地震动具有明显的频率差异。在过去的二十年中,日本获得了俯冲平板事件的大量记录。我们针对此类地震提出了地面运动预测方程(GMPE)。我们使用了从可靠识别的板块事件到2012年底的大型数据集。GMPE基于一组简单的几何衰减函数,将站点类别用作站点项,并采用了非线性站点放大率。对于矩震级M-w> = 7.1的大地震,采用了双线性震级标度函数,大型事件的标度率远小于较小事件的标度率。幅度平方项用于M-w <7.1的事件以及双线性幅度缩放函数。我们还使用非弹性衰减系数模拟了火山岩带的影响,该系数应用于可能的火山岩带内地震波传播距离的水平部分。我们发现,从具有推断的站点类别的站点中排除记录可以提高模型的拟合优度。事件内残差大致分为现场内残差和现场间残差,并使用随机效应模型计算相应的标准差。将事件内残差分离为现场内部和现场之间的组件,可以根据需要在概率地震灾害分析中针对不同的现场类别采用不同的标准偏差。

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