将 GK17 地动模型应用于初步处理过的土耳其地动记录数据集,以及通过开发部分非啮合模型对 GK 模型进行调整以适应土耳其环境

V. Graizer
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引用次数: 0

摘要

利用下一代衰减-West2数据库(Ancheta等人,2014年)为活动地壳区域(ACRs)开发的全球遍历GK17(Graizer,2018年)地动模型被应用于图尔基耶两次最大矩级Mw 7.8和7.5地震的记录数据集(Buckreis等人,2023年a)。GK17 模型的性能是可以接受的,但在 T < 1 秒的情况下,它对 100 km 以下近断层和 400 km 以上远场破裂距离的频谱加速度(SAs)预测不足。在改变 SAs QSA 的无弹性衰减后,得出的结论是 QSA=120 的 ACRs 平均值产生了最佳结果。对模型位点放大函数(SAFs)的比较表明,GK_T 的 SAFs 比 GK17 模型低。图尔基耶特有的 GK_T 部分非啮合模型比啮合 GK17 模型显示出与记录数据更好的一致性,尤其是在短周期和短破裂距离时。正如预期的那样,应用图尔基耶特定模型的结果是较低的西格玛。除了 1.5 < T < 3 s 的周期范围外,它也低于 GK17 模型的事件内西格玛。随着当前数据集和该地区其他地震的深层沉积(盆地深度)信息的增加,GK_T 模型有望得到改进。
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Application of GK17 Ground-Motion Model to Preliminary Processed Turkish Ground-Motion Recordings Dataset and GK Model Adjustment to the Turkish Environment by Developing Partially Nonergodic Model
The global ergodic GK17 (Graizer, 2018) ground-motion model developed using the Next Generation Attenuation-West2 database (Ancheta et al., 2014) for the active crustal regions (ACRs) was applied to the dataset of recordings from the two largest moment magnitude Mw 7.8 and 7.5 earthquakes in Türkiye (Buckreis et al., 2023a). The GK17 model demonstrates acceptable performance while mostly underpredicting spectral accelerations (SAs) at near-fault up to ∼100 km and far-field more than ∼400 km rupture distances for periods T < 1 s. The GK17 model was modified by applying additional Rrup distance and VS30 residuals corrections, creating an updated GK nonergodic model tuned for Türkiye called the GK_T model. After varying anelastic attenuation of SAs QSA, it was concluded that the average for the ACRs value of QSA=120 produces the best results. Comparisons of the model site amplification functions (SAFs) show that the GK_T SAFs are lower compared to the GK17 model. The Türkiye-specific GK_T partially nonergodic model shows better agreement with the recorded data than the ergodic GK17 model, especially at short periods and short rupture distances. As expected, application of the Türkiye-specific model results in a lower sigma. It is also lower than the within-event sigma of the GK17 model, except for the period range of 1.5 < T < 3 s. Improvements to the GK_T model can be expected with an addition of deep sediment (basin depth) information to the current dataset and other earthquakes in the region.
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