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Near-Fault Broadband Ground Motion Simulations Using Empirical Green's Functions: Application to the Upper Rhine Graben (France-Germany) Case Study

机译:近故障宽带地面运动模拟使用经验绿色的功能:应用于上莱茵莱甲板(法国德国)案例研究

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摘要

Seismic hazard estimation relies classically on data-based ground motion prediction equations (GMPEs) giving the expected motion level as a function of several parameters characterizing the source and the sites of interest. However, records of moderate to large earthquakes at short distances from the faults are still rare. For this reason, it is difficult to obtain a reliable ground motion prediction for such a class of events and distances where also the largest amount of damage is usually observed. A possible strategy to fill this lack of information is to generate synthetic accelerograms based on an accurate modeling of both extended fault rupture and wave propagation process. The development of such modeling strategies is essential for estimating seismic hazard close to faults in moderate seismic activity zones, where data are even scarcer. For that reason, we selected a target site in Upper Rhine Graben (URG), at the French-German border. URG is a region where faults producing micro-seismic activity are very close to the sites of interest (e.g., critical infrastructures like supply lines, nuclear power plants, etc.) needing a careful investigation of seismic hazard. In this work, we demonstrate the feasibility of performing near-fault broadband ground motion numerical simulations in a moderate seismic activity region such as URG and discuss some of the challenges related to such an application. The modeling strategy is to couple the multi-empirical Green's function technique (multi-EGFt) with a k (-2) kinematic source model. One of the advantages of the multi-EGFt is that it does not require a detailed knowledge of the propagation medium since the records of small events are used as the medium transfer function, if, at the target site, records of small earthquakes located on the target fault are available. The selection of suitable events to be used as multi-EGF is detailed and discussed in our specific situation where less number of events are available. We then showed the impact that each source parameter characterizing the k(-2) model has on ground motion amplitude. Finally we performed ground motion simulations showing results for different probable earthquake scenarios in the URG. Dependency of ground motions and of their variability are analyzed at different frequencies in respect of rupture velocity, roughness degree of slip distribution (stress drop), and hypocenter location. In near-source conditions, ground motion variability is shown to be mostly governed by the uncertainty on source parameters. In our specific configuration (magnitude, distance), the directivity effect is only observed in a limited frequency range. Rather, broadband ground motions are shown to be sensitive to both average rupture velocity and its possible variability, and to slip roughness. Ending up with a comparison of simulation results and GMPEs, we conclude that source parameters and their variability should be set up carefully to obtain reliable broadband ground motion estimations. In particular, our study shows that slip roughness should be set up in respect of the target stress drop. This entails the need for a better understanding of the physics of earthquake source and its incorporation in the ground motion modeling.
机译:地震危险估计在基于数据的地面运动预测方程(GMPE)上依赖于基于数据的地面运动预测方程(GMPE),其作为特征源和感兴趣部位的若干参数的函数。然而,与故障的短距离中温和到大地震的记录仍然很少见。因此,难以获得对这种类别的事件和距离的可靠地运动预测,其中通常观察到最大的损坏量。填补此缺乏信息的可能策略是基于对延长故障破裂和波传播过程的准确建模来生成合成换乘器。这种建模策略的发展对于估计接近中度地震活动区的断层的地震危害至关重要,其中数据甚至稀少。出于这个原因,我们在法国 - 德国边境中选择了上莱茵河上莱茵河(URG)的目标网站。 URG是产生微地震活动的故障的区域非常接近感兴趣的位置(例如,电源线,核电站等关键基础设施,需要仔细调查地震危害。在这项工作中,我们展示了在适度地震活动区域中执行近故障宽带地面运动数值模拟的可行性,例如URG,并讨论与此类应用有关的一些挑战。建模策略是将多经验绿色的功能技术(多功率)与K(2)运动源模型耦合。多功精的优点之一是,它不需要对传播介质的详细知识,因为小事件的记录被用作媒体传递函数,如果在目标网站,则位于的小地震的记录目标故障可用。在我们的具体情况下,详细讨论了用作多EGF的合适事件的选择,其中较少的事件可用。然后,我们展示了表征K(-2)模型的每个源参数在地面运动幅度上的影响。最后,我们进行了地面运动模拟,显示了URG中不同可能地震场景的结果。在发生破裂速度的不同频率下分析地面运动和变形性的依赖性,滑动分布粗糙度(应力下降)和低速度位置。在近源条件下,地面运动变异性被认为主要受到源参数上的不确定性的限制。在我们的特定配置(幅度,距离)中,仅在有限频率范围内观察到方向性效果。相反,宽带地面运动被证明对平均破裂速度和其可能的可变性以及滑动粗糙度敏感。结束了模拟结果和GMPE的比较,我们得出结论,应仔细设置源参数及其可变性,以获得可靠的宽带地面运动估计。特别是,我们的研究表明,应在目标压力下降方面建立滑动粗糙度。这需要更好地了解地震来源的物理学及其在地面运动建模中的融合。

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  • 来源
    《Pure and Applied Geophysics》 |2017年第9期|共23页
  • 作者单位

    IRSN IRSN PRP DGE SCAN BERSSIN 31 Ave Div Leclerc Bat FAHRENHEIT Piece 721 F-92262 Fontenay Aux Roses France;

    IRSN IRSN PRP DGE SCAN BERSSIN 31 Ave Div Leclerc Bat FAHRENHEIT Piece 721 F-92262 Fontenay Aux Roses France;

    Univ Napoli Federico II Dept Phys Naples Italy;

    Univ Grenoble Alpes CNRS IFSTTAR ISTerre F-38000 Grenoble France;

    IRSN IRSN PRP DGE SCAN BERSSIN 31 Ave Div Leclerc Bat FAHRENHEIT Piece 721 F-92262 Fontenay Aux Roses France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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