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A Site Amplification Model for Crustal Earthquakes

机译:地壳地震的场地放大模型

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A global dataset which is composed of more than 20,000 records is used to develop an empirical nonlinear soil amplification model for crustal earthquakes. The model also includes the deep soil effect. The soil nonlinearity is formulated in terms of input rock motion and soil stiffness. The input rock motion is defined by the pseudo-spectral acceleration at rock site condition ( PSA rock ) which is also modified with between-event residual. Application of PSA rock simplifies the usage of the site model by diminishing the need of using the period-dependent correlation coefficients in hazard studies. The soil stiffness is expressed by a Gompertz sigmoid function which restricts the nonlinear effects at both of the very soft soil sites and very stiff soil sites. In order to surpass the effect of low magnitude and long-distant recordings on soil nonlinearity, the nonlinear site coefficients are constrained by using a limited dataset. The coefficients of linear site scaling and deep soil effect are obtained with the full database. The period average of site-variability is found to be 0.43. The sigma decreases with decreasing the soil stiffness or increasing input rock motion. After employing residual analysis, the region-dependent correction coefficients for linear site scaling are also obtained.
机译:一个由20,000多个记录组成的全球数据集被用于开发一个针对地壳地震的经验非线性土壤放大模型。该模型还包括深层土壤效应。土壤非线性是根据输入岩石运动和土壤刚度来表示的。输入岩石运动由岩石现场条件(PSA岩石)下的伪谱加速度定义,该伪谱加速度也用事件间残差进行了修改。 PSA岩石的应用通过减少在危害研究中使用周期相关系数的需要,简化了场地模型的使用。土壤刚度用Gompertz乙状结肠函数表示,该函数限制了非常软的土壤部位和非常坚硬的土壤部位的非线性影响。为了克服低幅值和远距离记录对土壤非线性的影响,通过使用有限的数据集来约束非线性站点系数。利用完整的数据库可以获得线性场地比例系数和深层土壤影响系数。站点变异的周期平均值为0.43。 σ随土壤刚度降低或输入岩石运动增加而减小。在使用残差分析之后,还获得了线性站点缩放的区域相关校正系数。

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