首页> 外文期刊>Bulletin of the Seismological Society of America >Deterministic ground-motion scenarios for engineering applications: The case of Thessaloniki, Greece
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Deterministic ground-motion scenarios for engineering applications: The case of Thessaloniki, Greece

机译:工程应用的确定性地面运动场景:希腊萨洛尼卡案例

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In this article we present a deterministic study to estimate seismic ground motions expected in urban areas located near active faults. The purpose was to generate bedrock synthetic time series to be used as seismic input into site effects evaluation analysis and loss estimates for the urban area and infrastructures of Thessaloniki (Northern Greece). Two simulation techniques (a full wave method to generate low-frequency seismograms, similar to 1 Hz) were used to compute time series associated with four different reference earthquakes having magnitudes from 5.9 to 6.5 and located within 30 km of Thessaloniki. The propagation medium and different source parameters were tested through the modeling of the 1978 Thessaloniki earthquake (M 6.5). Moreover two different nucleation points were considered for each fault in order to introduce additional variability in the ground-motion estimates. Between the two cases, the quasi-unilateral rupture propagation toward the city produces both higher median peak ground acceleration (PGA) and peak ground velocity (PGV) values and higher variability than bilateral ones. Conversely, the low-frequency ground motion, that is, peak ground displacement (PGD), is slightly influenced by the position of the nucleation point, and its variability is related to the final slip distribution on the faults of the reference earthquakes and to the location of the sites with respect to the nodal planes of the radiation pattern. To validate our deterministic shaking scenarios, we verified that the synthetic peak ground motions (PGA and PGV) and spectral ordinates are within one standard deviation of several ground-motion prediction equations valid for the region. At specific sites we combined the low- and high-frequency synthetics to obtain broadband time series that cover the entire frequency band of engineering interest (0-25 Hz). The use of synthetic seismograms instead of empirical equations in the hazard estimates provides a complete evaluation of the expected ground motions both in frequency and time domains, including predictions at short distances from the fault (0-10 km) and at periods larger than 2-3 sec.
机译:在本文中,我们将进行确定性研究,以估计活动断裂附近城市地区的地震地面运动。目的是生成基岩合成时间序列,以用作地震输入,用于塞萨洛尼基(希腊北部)市区和基础设施的场地效果评估分析和损失估计。两种模拟技术(用于生成小于1 Hz的低频地震图的全波方法,和用于模拟大于1 Hz的高频地震图的混合确定性随机技术)用于计算与四个相关的时间序列位于塞萨洛尼基30公里以内的不同参考地震,震级范围为5.9至6.5。通过1978年的塞萨洛尼基地震(M 6.5)建模,测试了传播介质和不同的震源参数。此外,为每个断层考虑了两个不同的成核点,以便在地震动估算中引入额外的可变性。在这两种情况之间,向城市的准单侧破裂传播产生的中值峰值地面加速度(PGA)和峰值地面速度(PGV)值均高于双边值。相反,低频地面运动,即峰值地面位移(PGD),受成核点位置的影响很小,其变化性与参考地震断层上的最终滑动分布以及与地震活动有关。位置相对于辐射图的节点平面的位置。为了验证我们的确定性振动方案,我们验证了合成峰值地面运动(PGA和PGV)和频谱纵坐标在对该区域有效的几个地面运动预测方程的一个标准偏差内。在特定站点,我们结合了低频合成器和高频合成器,以获得涵盖了工程感兴趣的整个频带(0-25 Hz)的宽带时间序列。在危险性评估中使用合成地震图代替经验方程式可以对频域和时域中的预期地面运动提供完整的评估,包括距断层短距离(0-10 km)和大于2的周期的预测3秒

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