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Empirical Models of Shear-Wave Radiation Pattern Derived from Large Datasets of Ground-Shaking Observations

机译:从地震动观测的大数据集得到的横波辐射方向图的经验模型

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Shear-waves are the most energetic body-waves radiated from an earthquake, and are responsible for the destruction of engineered structures. In both short-term emergency response and long-term risk forecasting of disaster-resilient built environment, it is critical to predict spatially accurate distribution of shear-wave amplitudes. Although decades' old theory proposes a deterministic, highly anisotropic, four-lobed shear-wave radiation pattern, from lack of convincing evidence, most empirical ground-shaking prediction models settled for an oversimplified stochastic radiation pattern that is isotropic on average. Today, using the large datasets of uniformly processed seismograms from several strike, normal, reverse, and oblique-slip earthquakes across the globe, compiled specifically for engineering applications, we could reveal, quantify, and calibrate the frequency-, distance-, and style-of-faulting dependent transition of shear-wave radiation between a stochastic-isotropic and a deterministic-anisotropic phenomenon. Consequent recalibration of empirical ground-shaking models dramatically improved their predictions: with isodistant anisotropic variations of ±40%, and 8% reduction in uncertainty. The outcomes presented here can potentially trigger a reappraisal of several practical issues in engineering seismology, particularly in seismic ground-shaking studies and seismic hazard and risk assessment.
机译:剪切波是从地震中辐射出的最有力的体波,负责破坏工程结构。在防灾建筑环境的短期应急响应和长期风险预测中,预测剪切波振幅的空间精确分布至关重要。尽管几十年的古老理论提出了确定性,高度各向异性的四瓣横波辐射模式,但由于缺乏令人信服的证据,大多数经验性的撼动性预测模型都采用了过于简化的平均各向同性的随机辐射模式。如今,使用专门针对工程应用而编译的,来自全球几次地震,正,反向和斜滑地震的统一处理地震图的大型数据集,我们可以揭示,量化和校准频率,距离和样式随机各向同性和确定性各向异性现象之间剪切波辐射的断层相关过渡。随之而来的对经验性地震动模型的重新校准极大地改善了他们的预测:等距各向异性变化为±40%,不确定性降低了8%。本文介绍的结果可能会引发对工程地震学中若干实际问题的重新评估,尤其是在地震地面震动研究以及地震灾害和风险评估中。

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