首页> 外文期刊>Bulletin of the Seismological Society of America >Empirical Equations for the Prediction of the Significant, Bracketed, and Uniform Duration of Earthquake Ground Motion
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Empirical Equations for the Prediction of the Significant, Bracketed, and Uniform Duration of Earthquake Ground Motion

机译:预测地震地震动的显着,包围和均匀持续时间的经验方程式

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摘要

The complete characterization of earthquake ground motion includes the length of the interval of strong shaking as well as the amplitude and frequency content of the time series. There are relatively few published equations available for the prediction of strong-motion duration from earthquakes, which may in part be a consequence of the fact that the duration of shaking has generally not been considered in structural engineering. Recognizing that there are many applications for which an estimate of the duration of ground motion is needed, this study presents new empirical predictive equations for a number of definitions of strong-motion duration using the records from the Next Generation of Attenuation (NGA) global database of accelerograms from shallow crustal earthquakes. The equations can be used to estimate ground-motion durations from shallow crustal earthquakes of magnitude between M-w 4.8 and 7.9 at distances up to 100 km from the source.
机译:地震地震动的完整表征包括强震间隔的长度以及时间序列的幅度和频率含量。很少有公开的方程可用于预测地震的强烈运动持续时间,这可能部分是由于结构工程中通常没有考虑振动持续时间这一事实造成的。认识到有许多应用需要估计地面运动的持续时间,本研究使用下一代衰减(NGA)全球数据库中的记录,针对强运动持续时间的许多定义提出了新的经验预测方程浅层地壳地震的加速度图。该方程可用于估计距震源最远100 km处M-w 4.8至7.9之间的浅层地壳地震的地震动持续时间。

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