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Two-stage nonlinear site amplification modeling for Japan withV(S)(30)and fundamental frequency dependency

Authors
Kwak, Dong YoupSeyhan, Emel
Issue Date
Aug-2020
Publisher
Earthquake Engineering Research Institute
Keywords
Site amplification; K-NET; KiK-net; fundamental frequency; nonlinear; V-S(30)
Citation
Earthquake Spectra, v.36, no.3, pp 1359 - 1385
Pages
27
Indexed
SCIE
SCOPUS
Journal Title
Earthquake Spectra
Volume
36
Number
3
Start Page
1359
End Page
1385
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/966
DOI
10.1177/8755293020907920
ISSN
8755-2930
1944-8201
Abstract
We describe a two-stage nonlinear site amplification model that considers both the sediment depth and the fundamental frequency of the soil. Adopting a non-reference site approach, empirical site amplification ratios for 1591 Kyoshin and Kiban Kyoshin network sites are developed. This process involves analyzing 92,025 surface ground motion recordings from 305 earthquakes between 1997 and 2012. The model is developed in two stages: first, we regress the total empirical site effects in terms ofV(S)(30); second, we fit a functional form to the residuals from the first stage using the fundamental period of the site. We validate the model through residual analyses and statistical methods. This study shows that the peak soil period increases with the equivalent shear strain (I-gamma), while the peak amplitude decreases withI(gamma). The first-stage site term reduces the error at mid-to-long period ranges (>0.1 s) by 0.11 from the error of the initial site term without any constraints. The second-stage site term reduces the error further as 0.06. Finally, we discuss the model limitations and the applicability range of the predictor variables.
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Kwak, Dong Youp
ERICA 공학대학 (DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING)
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