PSI - Issue 78
Atilla Ansal et al. / Procedia Structural Integrity 78 (2026) 2133–2140
2140
PEER (2024) Pacific Earthquake Engineering Research Center Ground Motion Database, NGA-West2. Retrieved from https://ngawest2.berkeley.edu/. 126. 10.1016/j.soildyn.2018.03.030 Lanzo, G., Silvestri, F., Costanzo, A., d’Onofrio, A., Martelli, L, Pagliaroli, A., Sica, S., Simonelli, A. 2011. Site response studies and seismic microzoning in the Middle Aterno valley (L’Aquila, Central Italy), Bulletin of Earthquake Engineering, 9(10):1417 Mancini, M., Marini, M., Moscatelli, M., Pagliaroli, A., Stigliano, F., Di Salvo, C., Simionato, M., Cavinato, GP., Corazza, A. 2014. A physical stratigraphy model for seismic microzonation of the Central Archaeological Area of Rome (Italy). Bulletin of Earthquake Engineering 12(3): 1339 – 1363 Miyakoshi, J. & Hayashi, Y. 2000. Correlation of building damage with Indices of seismic ground motion intensity during the 1999 Chi-Chi, Taiwan earthquake. International Workshop on Annual Commemoration of Chi-Chi Earthquake, Taipei, Taiwan, R.O.C., September 18-20, 2000. Pagliaroli, A., Moscatelli, M., Raspa, G., & Naso, G. (2014). Seismic microzonation of the central archaeological area of Rome: results and uncertainties. Bulletin of Earthquake Engineering, 12(3), 1405-1428. Papadimitriou, A. G., Antoniou, A. A., Bouckovalas, G. D., & Marinos, P. G. (2008). Methodology for automated GIS-aided seismic microzonation studies. Computers and Geotechnics, 35(4), 505-523. Papaspiliou M. & Kontoe, S. (2013). Sensitivity of site response analysis on the number of ground motion records and implications for PSHA. Bulletin of Earthquake Engineering 11: 1287-1304 PEER (2024). Pacific Earthquake Engineering Research Center, Strong Motion Database, http://peer.berkeley.edu/ Pergalani, F., Pagliaroli, A., Bourdeau, C., Compagnoni, M., Lenti, L., Lualdi, M., Madiai, C., Martino, S., Razzano, R., Varone, C. (2020). Seismic microzoning map: approaches, results and applications after the 2016 – 2017 Central Italy seismic sequence. Bulletin of Earthquake Engineering, 18(12), 5595-5629. Perrault, M., & Gueguen, P. (2015). Correlation between ground motion and building response using California earthquake records. Earthquake spectra, 31(4), 2027-2046. Riddell, R. (2007). On ground motion intensity indices. Earthquake spectra, 23(1), 147-173. Sadeghzadeh, S., and A. Ansal,A. (2023) "A comparison study between 1D and 3D site response analyses based on observed earthquake acceleration records," ECCOMAS Proceedings COMPDYN, pp. 1 – 12. Shamekhi, S., Ansal, A. (2025) Assessing the impact of vertical acceleration on site response: a case study from Istanbul using the Kahramanmaras earthquake data, Compdyne 2025, 10th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, M. Papadrakakis, M. Fragiadakis (eds.) Shamekhi, S., Ansal, A. and Kurtuluş, A. (2023) "A comparison study between 1D and 2D site response analyses based on observe d earthquake acceleration records," Proceedings of 9th ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering. Schnabel, P.B., Lysmer, J. & Seed, H.B. (1972) SHAKE – A Computer Program for Earthquake Response Analysis of Horizontally Layered Sites, Report No. EERC 72-12, UC Berkeley Singh, S., Pimprikar, S., Bansal, B., Pacheco, J., Dattatrayam, R., & Suresh, G. (2007). An Analysis of the Mw 4.7 Jabalpur, India, Earthquake of 16 October 2000: Toward Ground-Motion Estimation in the Region from Future Events. Bulletin of the Seismological Society of America, 97(5), 1475-1485. Strollo, A., Parolai, S., Bindi, D., Chiauzzi, L., Pagliuca, R., Mucciarelli, M., & Zschau, J. (2012). Microzonation of Potenza (Southern Italy) in terms of spectral intensity ratio using joint analysis of earthquakes and ambient noise. Bulletin of Earthquake Engineering, 10(2), 493-516. Studer, J., & Ansal, A. (2004). Seismic Microzonation for Municipalities - Manual, Research Report for Republic of Turkey, Ministry of Public Works and Settlement, General Directorate. Sugito, M., H. Goda, and T. Masuda (1994). Frequency Dependent Equi-linearized Technique for Seismic Response Analysis of Multi-Layered Ground, Journal of Geotechnical Engineering, Proceedings of of JSCE 493 49-58 Tönük, G., Ansal, A. (2023). Probabilistic seismic microzonation for ground shaking intensity, A case study in Turkey, J Seismology (2023) 27:863 – 874 Tönük, G., Ansal, A. (2022). Factors Affecting Site-Specific Response Analysis. Journal of Earthquake Engineering, 26(16), 8629-8646. Tönük, G., A. Ansal, A. Kurtuluş, and B. Çetiner (2013). Site Specific Response Analysis for Performance Based Design Earthqu ake Characteristics, Bulletin of Earthquake Engineering 12 1091-1105. Tönük, G., and A. Ansal A (2010). Selection and Scaling of Ground Motion Records for Site Response Analysis, 14th European Conference of Earthquake Engineering, Ohrid, paper no.1386. Wu, H., Masaki, K., Irikura, K., Saguchi, K., Kurahashi, S., Wang, X. (2012). Relationship between Building Damage Ratios and Ground Motion Characteristics during the 2011 Tohoku Earthquake, Journal of Natural Disaster Science 34(1): pp59-78
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