Acknowledgement
본 연구는 교육부와 한국연구재단 3단계 산학연협력 선도대학 육성사업(LINC 3.0)의 지원으로 진행된 것입니다.
References
- Abrahamson, N. A., & Youngs, R. R. (1992). A stable algorithm for regression analyses using the random effects model, Bulletin of the Seismological Society of America, 82(1), 505-510. https://doi.org/10.1785/BSSA0820010505
- Akkar, S., Sandikkaya, M. A., & Bommer, J. J. (2014). Empirical ground-motion models for point- and extended-source crustal earthquake scenarios in Europe and the Middle East, Bulletin Of Earthquake Engineering, 12, 359-387. https://doi.org/10.1007/s10518-013-9461-4
- Ameri, G., Oth, A., Pilz, M., Bindi, D., Parolai, S., Luzi, L., Mucciarelli, M., & Cultrera, G. (2011). Separation of source and site effects by generalized inversion technique using the aftershock recordings of the 2009 L'Aquila earthquake, Bulletin of Earthquake Engineering, 9, 717-739. https://doi.org/10.1007/s10518-011-9248-4
- Atkinson, G. M., & Mereu, R. F. (1992). The Shape of Ground Motion Attenuation Curves in Southeastern Canada, Bulletin of the Seismological Society of America, 82(5), 2014-2031. https://doi.org/10.1785/BSSA0820052014
- Baker, J. W. (2015). Introduction to probabilistic seismic hazard analysis. White Paper Version 2.1.
- Boore, D. M. (2003). Prediction of Ground Motion Using the Stochastic Method. Pure and Applied Geophysics. 160, 635-676. https://doi.org/10.1007/PL00012553
- Boore, D. M., Joyner, W. B., & Fumal, T. E. (1997). Equations for Estimating Horizontal Response Spectra and Peak Acceleration from Western North American Earthquakes, A Summary of Recent Work. Seismological Research Letters, 68(1), 128-153. https://doi.org/10.1785/gssrl.68.1.128
- Calais, E., Camelbeeck, T., Stein, S., Liu, M., & Craig, T. J. (2016). A new paradigm for large earthquakes in stable continental plate interiors, Geophysical Research Letters, 43(20), 10,621-10,637.
- Campbell, K. W., & Bozorgnia, Y. (2014). NGA-West2 Ground Motion Model for the Average Horizontal Components of PGA, PGV, and 5% Damped Linear Acceleration Response Spectra, Earthquake Spectra, 30(3), 1087-1115. https://doi.org/10.1193/062913EQS175M
- Chiou, B. S. J., & Youngs, R. R. (2014). Update of the Chiou and Youngs NGA Model for the Average Horizontal Component of Peak Ground Motion and Response Spectra, Earthquake Spectra, 30(3), 1117-1153. https://doi.org/10.1193/072813EQS219M
- Cornell, C. A. (1968). ENGINEERING SEISMIC RISK ANALYSIS, Bulletin of the Seismological Society of America, 58(5), 1583-1606. https://doi.org/10.1785/BSSA0580051583
- Emolo, A., Sharma, N., Festa, G., Zollo, A., Convertito, V., Park, J. H., Chi, H. C., & Lim, I. S. (2015). Ground-motion prediction equations for South Korea Peninsula ground-motion prediction equations for South Korea Peninsula, Bulletin of the Seismological Society of America, 105(5), 2625-2640. https://doi.org/10.1785/0120140296
- Ha, S.J. & Han, S.W. (2016) A Method for Selecting Ground Motions that Considers Target Response Spectrum Mean and Variance as Well as Correlation Structure, Journal of Earthquake Engineering, 20(8), 1263-1277. https://doi.org/10.1080/13632469.2016.1138162
- Jee, H. W., & Han, S. W. (2020). Construction of a Site- and Period-Specific Seismic Hazard Map for the Korean Peninsula, Journal of the Korean Society of Hazard Mitigation, 20(2), 207-220. https://doi.org/10.9798/KOSHAM.2020.20.2.207
- Jee, H. W., & Han, S. W. (2022). Regional Ground Motion Prediction Equation Developed for the Korean Peninsula Using Recorded and Simulated Ground Motions, Journal of Earthquake Engineering, 26(10), 5384-5406. https://doi.org/10.1080/13632469.2021.1871682
- Jeong, K. H., & Lee, H. S. (2018). Ground-motion prediction equation for South Korea based on recent earthquake records, Earthquakes and Structures, 15(1), 29-44. https://doi.org/10.12989/EAS.2018.15.1.029
- Jo, N., & Baag, C. (2003). Estimation of spectrum decay parameter k and stochastic prediction of strong ground motions in southeastern Korea, Journal of the Earthquake Engineering Society of Korea, 7(6), 59-70. https://doi.org/10.5000/EESK.2003.7.6.059
- Johnston, A. C. (1996). Seismic moment assessment of earthquakes in stable continental regions-I. Instrumental seismicity, Geophysical Journal International, 124(2), 381-414. https://doi.org/10.1111/j.1365-246X.1996.tb07028.x
- Junn, J., Jo, N., & Baag, C. (2002). Stochastic prediction of ground motions in southern Korea, Geosciences Journal, 6(3), 203-214. https://doi.org/10.1007/BF02912691
- Kim, K., Seo, W., Han, J., Kwon, J., Kang, S. Y., Ree, J., Kim, S., & Liu K. (2020). The 2017 ML 5.4 Pohang earthquake sequence, Korea, recorded by a dense seismic network, Tectonophysics, 774, 228306.
- Kim, M., & Kyung, J. (2015). An Analysis of the Sensitivity of Input Parameters for the Seismic Hazard Analysis in the Korean Peninsula, Journal of the Korean Earth Science Society, 37(1), 52-61. https://doi.org/10.5467/JKESS.2016.37.1.52
- Korea Meteorological Administration [KMA]. (2015). A basic study on building ShakeMap database of scenario earthquakes in the Korean Peninsula, Korea Meteorological Administration, 2015;202 pp.
- Lee, J., Park, D., & Baag, C. (2000). Stochastic prediction of strong ground motions and attenuation equations in the southeastern Korean Peninsula, Proceedings of EESK Conference, Seoul, 70-77.
- Moon, K.-H., Han, S.W., & Lee, T.S. (2012) Approximate MPA-based method for performing incremental dynamic analysis, Nonlinear Dynamics, 2012, 67(4), 2865-2888 https://doi.org/10.1007/s11071-011-0195-z
- Nakamura, Y. (1989). A method for dynamic characteristics estimation of subsurface using microtremor on the ground surface, Quarterly Report of Railway Technical Research Institute, 30(1), 25-33.
- Park, D., Lee, J., Baag, C., & Kim, J. (2001). Stochastic prediction of strong ground motions and attenuation equations in the southeastern Korean peninsula, Journal of the Geological Society of Korea, 37(1), 21-30.
- Park, H., Lee, H., & Kim, B. (2021). Correction factors for GMMs considering site and topographic effects in South Korea, Bulletin of Earthquake Engineering.
- Seyhan, E., & Stewart, J. P. (2014). Semi-Empirical Nonlinear Site Amplification from NGA-West2 Data and Simulations, Earthquake Spectra, 30(3), 1241-1256. https://doi.org/10.1193/063013EQS181M
- Vanneste, K., Stein, S., Thierry, C., & Vleminckx, B. (2018). Insights into earthquake hazard map performance from shaking history simulations, Scientific Reports, 8, 1855.
- Walling, M., Silva, W., & Abrahamson, N. (2008). Nonlinear Site Amplification Factors for Constraining the NGA Models, Earthquake Spectra, 24(1), 243-255. https://doi.org/10.1193/1.2934350
- Wen, Y.K., Collins, K.R., Han, S.W., & Elwood, K.J. (2006). Dual-level designs of buildings under seismic loads, Structural Safety, 18, 195-224. https://doi.org/10.1016/0167-4730(96)00011-2
- Woo, J., Rhie, J., Kim, S., Kang, T., Kim, K., & Kim, Y. (2019). The 2016 Gyeongju earthquake sequence revisited, aftershock interactions within a complex fault system, Geophysical Journal International, 217, 58-74. https://doi.org/10.1093/gji/ggz009
- Worden, C. B., Wald, D. J., Sanborn, J., & Thompson, E. M. (2015). Development of an open-source hybrid global Vs30 model, Seismological Society of America Annual Meeting, Pasadena, CA, USA.
- Zafarani, H., & Soghrat, M. R. (2017). Single-Station Sigma for the Iranian Strong Motion Stations, Pure and Applied Geophysics, 174, 4077-4099. https://doi.org/10.1007/s00024-017-1613-z
- Zandieh, A., & Pezeshk, S. (2010). Investigation of Geometrical Spreading and Quality Factor Functions in the New Madrid Seismic Zone, Bulletin of the Seismological Society of America, 100, 2185-2195. https://doi.org/10.1785/0120090209