참고문헌
- Agrawal, R. and Hora, M.S. (2012), "Nonlinear interaction behaviour of plane Frame-layered Soil system subjected to seismic loading", Structural Engineering and Mechanics, 41(6), 711-734. https://doi.org/10.12989/sem.2012.41.6.711
- AS1170 (2007), Structural Design Actions, Standards Australia, NSW, Australia.
- AS3600 (2001), Concrete Structures, Standards Australia, NSW, Australia.
- ATC-40 (1996), Seismic Evaluation and Retrofit of Concrete Buildings, Applied Technology Council, Seismic Safety Commission, State of California.
- Beaty, M.H. and Byrne, P.M. (2001), "Observations on the San Fernando Dams", Proceedings of the 4th International Conference on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics, San Diego, California, March .
- Byrne, P.M., Naesgaard, E. and Seid-Karbasi, M. (2006), "Analysis and Design of Earth Structures to Resist Seismic Soil Liquefaction, in Sea to Sky Geotechnique", Proceedings of the 59th Canadian Geotechnical Conference & 7th Joint CGS/IAH-CNC Groundwater Specialty Conference, Vancouver, Canada, October.
- FEMA 440, NEHRP Recommended Provisions for Improvement of Nonlinear Static Seismic Analysis Procedures (2005), ATC-55 Project, Emergency Management Agency, Washington, D.C.
- Galal, K. and Naimi, M. (2008), "Effect of conditions on the response of reinforced concrete tall structures to near fault earthquakes", Struct. Design tall Spec. Build., 17(3), 541-562. https://doi.org/10.1002/tal.365
- Gazetas, G. and Mylonakis, G. (1998), Seismic soil-structure interaction: new evidence and emerging issues, Geotechnical Earthquake Engineering and Soil Dynamics, 10(2), 1119-1174.
- Itasca Consulting Group (2008), FLAC2D: Fast Lagrangian Analysis of Continua, version 6.0, User's manual, Minneapolis.
- Karamodin, A.K. and Kazemi, H.H. (2008), "Semi-active control of structures using neuro-predictive algorithm for MR dampers", Structural Control and Health Monitoring, 17(3), 237-253.
- Kausel, E. (2010), "Early history of soil-structure interaction", Soil Dyn. Earthquake Eng., 30(9), 822-832. https://doi.org/10.1016/j.soildyn.2009.11.001
- Kobayashi, H., Seo, K. and Midorikawa, S. (1986), Estimated Strong Ground Motions in the Mexico City Earthquake: The Mexico Earthquakes 1985, Factors Involved and Lessons Learned, American Society of Civil Engineers, New York.
- Kramer, S.L. (1996), Geotechnical Earthquake Engineering, Prentice Hall Civil Engineering and Engineering Mechanics Series.
- Nakhaei, M. and Ghannad, M.A. (2006), "The effect of soil-structure interaction on hysteretic energy demand of buildings", Structural Engineering and Mechanics, 24(5), 641-645. https://doi.org/10.12989/sem.2006.24.5.641
- NEHRP (2003), Recommended Provisions for Seismic Regulation for New Buildings and Other Structures, Part 2: Commentary FEMA 303, Federal Emergency Management Agency, Washington, DC, USA.
- Paul Smith-Pardo, J. (2011), "Performance-based framework for soil-structure systems using simplified rocking foundation models", Structural Engineering and Mechanics, 40(6), 763-782. https://doi.org/10.12989/sem.2011.40.6.763
- Rahvar (2005), "Geotechnical and Geophysical Investigations and Foundation Design Report of Musalla Construction Site in Tehran", P. O. Rahvar Pty Ltd., 1, Tehran, 1-64.
- Rahvar (2006a), "Geotechnical Investigations and Foundation Design Report of Kooh-e-Noor Commercial Building", P. O. Rahvar Pty Ltd., Final Report, Tehran, Iran, 1-69.
- Rahvar (2006b), "Geotechnical Investigations and Foundation Design Report of Mahshahr Train Station", P. O. Rahvar Pty Ltd., Iran Railways Authority, Mahshahr, Iran, 1-42.
- Rayhani, M.H. and El Naggar, M.H. (2008), "Numerical modelling of seismic response of rigid foundation on soft soil", International Journal of Geomechanics, 8(6), 336-346. https://doi.org/10.1061/(ASCE)1532-3641(2008)8:6(336)
- Tabatabaiefar, H.R. and Massumi, A. (2010), "A simplified method to determine seismic responses of reinforced concrete moment resisting building frames under influence of soil-structure interaction", Soil Dynamics and Earthquake Engineering, 30(11), 1259-1267. https://doi.org/10.1016/j.soildyn.2010.05.008
- Tabatabaiefar, H.R., Fatahi, B. and Samali, B. (2012), "An empirical relationship to determine lateral seismic response of mid-rise building frames under influence of soil-structure interaction", The Structural Design of Tall and Special Buildings, DOI: 10.1002/tal.1058.
- Veletsos, A.S. and Meek, J.W. (1974), "Dynamic behaviour of building-foundation system", Journal of Earthquake Engineering and Structural Dynamics, 3(2), 121-138. https://doi.org/10.1002/eqe.4290030203
- Vision 2000 Committee (1995), Performance Based Seismic Engineering of Buildings, Structural Engineers Association of California (SEAOC), Sacramento, CA.
- Vucetic, M. and Dobry, R. (1991), "Effects of soil plasticity on cyclic response", Journal of Geotechnical Engineering, 117(1), 89-100. https://doi.org/10.1061/(ASCE)0733-9410(1991)117:1(89)
- Wolf, J.P. and Deeks, AJ. (2004), Foundation Vibration Analysis: A Strength-of-Materials Approach, Elsevier, Oxford, UK.
- Wolf, J.P. (1985), Dynamic Soil-Structure Interaction, Prentice-Hall Inc., Englewood Cliffs, New Jersey.
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