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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Ground motion prediction of realistic earthquake sources using the ambient seismic field
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Ground motion prediction of realistic earthquake sources using the ambient seismic field

机译:利用环境地震场预测现实地震震源的地震动

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摘要

Predicting accurate ground motion is critical for earthquake hazard analysis, particularly in situations where sedimentary basins trap and amplify seismic waves. We exploit the information carried by the ambient seismic field to extract surface-wave Green's functions between seismic stations and to predict long-period ground motion from earthquakes. To do so, we modify the surface impulse response to correct for the source depth and for the double-couple focal mechanism. These corrections are derived under the assumption that material properties in the immediate vicinity of the source depend only on depth. Using this local 1-D assumption, we solve the surface-wave eigenproblem and compute the fundamental-mode displacement eigenfunctions to express the surface-wave excitation at the source. We validate this technique, which we call the virtual earthquake approach, by comparing computed seismograms with earthquake waveforms from four moderate earthquakes that occur near broadband stations in southern California. The depth and mechanism corrections show clear improvements of the predicted ground motion relative to the surface impulse response.
机译:预测准确的地面运动对于地震危险性分析至关重要,尤其是在沉积盆地陷获并放大地震波的情况下。我们利用周围地震场携带的信息来提取地震台站之间的表面波格林函数,并预测地震的长周期地震动。为此,我们修改了表面脉冲响应以校正源深度和双耦合焦点机制。这些修正是基于以下假设得出的:源头附近的材料属性仅取决于深度。使用这个局部一维假设,我们解决了表面波本征问题,并计算了基模位移本征函数来表示源处的表面波激励。我们通过将计算的地震图与来自加利福尼亚南部宽带站附近发生的四次中度地震的地震波形进行比较,来验证这种称为虚拟地震方法的技术。深度和机构校正显示相对于表面脉冲响应,预测的地面运动有了明显的改善。

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