Three-dimensional path-effect model to simulate ground motion attenuation on the Korean Peninsula

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초록

In low-to-moderately active seismic regions such as the Korean Peninsula, it is difficult to analyze seismic hazards because only a limited number of strong ground motions have been recorded. To address this shortcoming in the data, ground motion simulation can be used to generate the strong ground motions associated with potentially large earthquakes, taking into account the attenuation that occurs as the distance from the source increases. To simulate this attenuation, the path effect, which is a component of the Fourier amplitude spectrum (FAS), needs to be defined, along with the source and site effects. The path effect represents the propagation of seismic rays through a tectonic medium. In this study, a three-dimensional (3D) path effect model is developed for the Korean Peninsula, consisting of a 3D geometrical spreading factor, quality factor, and shear-wave velocity. The accuracy of the proposed model is verified by comparing the path-effect values obtained from the FAS of individual ground motions recorded on the Korean Peninsula and those calculated from the model. Examples that demonstrate the procedure to calculate the 3D path effect for the Korean Peninsula are also provided.

키워드

Fourier amplitude spectrumgeometrical spreading factorground motionPath effectquality factorray propagationshear-wave velocityAcoustic wave velocityEarthquake effectsSeismic responseShear flowShear waves
제목
Three-dimensional path-effect model to simulate ground motion attenuation on the Korean Peninsula
저자
Jee, Hyun WooHan, Sang WhanLee, Kihak
DOI
10.1177/87552930241258271
발행일
2024-11
유형
Article
저널명
Earthquake Spectra
40
4
페이지
2651 ~ 2668