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Within- and between-event variabilities of strong-velocity pulses of moderate earthquakes within dense seismic arrays

  • Ground motion with strong-velocity pulses can cause significant damage to buildings and structures at certain periods; hence, knowing the period and velocity amplitude of such pulses is critical for earthquake structural engineering. However, the physical factors relating the scaling of pulse periods with magnitude are poorly understood. In this study, we investigate moderate but damaging earthquakes (M-w 6-7) and characterize ground- motion pulses using the method of Shahi and Baker (2014) while considering the potential static-offset effects. We confirm that the within-event variability of the pulses is large. The identified pulses in this study are mostly from strike-slip-like earthquakes. We further perform simulations using the freq uency-wavenumber algorithm to investigate the causes of the variability of the pulse periods within and between events for moderate strike-slip earthquakes. We test the effect of fault dips, and the impact of the asperity locations and sizes. The simulations reveal that the asperity propertiesGround motion with strong-velocity pulses can cause significant damage to buildings and structures at certain periods; hence, knowing the period and velocity amplitude of such pulses is critical for earthquake structural engineering. However, the physical factors relating the scaling of pulse periods with magnitude are poorly understood. In this study, we investigate moderate but damaging earthquakes (M-w 6-7) and characterize ground- motion pulses using the method of Shahi and Baker (2014) while considering the potential static-offset effects. We confirm that the within-event variability of the pulses is large. The identified pulses in this study are mostly from strike-slip-like earthquakes. We further perform simulations using the freq uency-wavenumber algorithm to investigate the causes of the variability of the pulse periods within and between events for moderate strike-slip earthquakes. We test the effect of fault dips, and the impact of the asperity locations and sizes. The simulations reveal that the asperity properties have a high impact on the pulse periods and amplitudes at nearby stations. Our results emphasize the importance of asperity characteristics, in addition to earthquake magnitudes for the occurrence and properties of pulses produced by the forward directivity effect. We finally quantify and discuss within- and between-event variabilities of pulse properties at short distances.show moreshow less

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Metadaten
Author details:Ming-Hsuan YenORCiD, Sebastian von SpechtORCiDGND, Yen-Yu LinORCiD, Fabrice CottonORCiDGND, Kuo-Fong MaORCiD
DOI:https://doi.org/10.1785/0120200376
ISSN:0037-1106
ISSN:1943-3573
Title of parent work (English):Bulletin of the Seismological Society of America
Publisher:Seismological Society of America
Place of publishing:El Cerito, Calif.
Publication type:Article
Language:English
Date of first publication:2021/09/07
Publication year:2022
Release date:2024/05/23
Volume:112
Issue:1
Number of pages:20
First page:361
Last Page:380
Funding institution:European Union [813137]; Ministry of Science and Technology, Taiwan; [107-2116-M-008-018-MY3, 108-2116-M-008-025-MY2]; "Earthquake-Disaster &; Risk Evaluation and Management Center, E-DREaM" from The Featured Areas; Research Center Program
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Mathematik
Mathematisch-Naturwissenschaftliche Fakultät / Institut für Geowissenschaften
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
License (German):License LogoKeine öffentliche Lizenz: Unter Urheberrechtsschutz
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