References
- ASCE 4-12. Seismic analysis of safety-related nuclear structures and commentary. Draft Revision 16. ASCE; c2012.
- Coleman J, Jeremic B, Whittaker A. Nonlinear Time Domain Seismic Soil Structure Interaction (SSI) Analysis for Nuclear Facilities and Draft Appendix B of ASCE 4. SMiRT-22; 2013 Aug 18-23; San Francisco, CA.
- NUREG-xxxx. Technical consideration for seismic isolation of nuclear facilities, Draft. U.S. NRC. Feb. c2013.
- Wolf J. Dynamic soil-structure interaction analysis. Prentice-Hall, Inc.; c1985. 466p.
- Lysmer J, Tabatabaie-Raissi M, Tajirian F, Vahdani S, Ostadan F. SASSI: a system for analysis of soil-structure interaction-user's manual. University of California. Berkeley; c1988.
- Seo CG, Kim JM. Introduction to KIESSI Program for Three Dimensional Soil-Structure Interaction Analysis. Computational Structural Engineering. 2012; 25(3): 77-83.
- Kim JM, Choi JS, Lee JS. A New Hybrid Method for Nonlinear Soil-Structure Interaction Analysis. Earthquake Engineering Society of Korea. 2003; 7(7): 1-7. https://doi.org/10.5000/EESK.2003.7.6.001
- Kawamoto JD. Solution of nonlinear dynamic structural system based on a hybrid frequency-time-domain approach. Research Report R83-5, MIT, Dept. of Civil Eng., Cambridge, MA. c1983.
- Bernal D, Youssef A. A hybrid time frequency domain formulation for non-linear soil-structure interaction. Earthq. Eng. & Struct. Dyn. 1998; 27: 673-685. https://doi.org/10.1002/(SICI)1096-9845(199807)27:7<673::AID-EQE751>3.0.CO;2-3
- Bielak J, Loukakis K, Hisada Y, Yoshimura C. Domain reduction method for three-dimensional earthquake modeling in localized regions. Part I: theory, Bulletin of the Seismological Society of America. 2003; 93(2): 817-824. https://doi.org/10.1785/0120010251
- Basu U., Explicit finite element perfectly matched layer for transient three-dimensional elastic waves. Int. J. Numer. Meth. Engng. 2009; 77: 151-176. https://doi.org/10.1002/nme.2397
- Solberg JM, Hossain Q, Blink JA, Bohlen SR, Mseis G, Greenberg H. Development of a generalized methodology for soil-structure interaction analysis using nonlinear time-domain techniques. Report # LLNL-TR-635762, Lawrence Livermore National Laboratory. c2013.
- Tafazzoli N, Pisano F, Abbel JA, Kamrani B, Jeong C-G, Aldridge B, Roche R, Kammerer A, Jeremic B. The NRC ESSI simulator program current status. SMiRT-22; 2013 Aug 18-23; San Francisco, CA.
- LSTC, LS-DYNA user's manual, Vols. 1 & 2, Version 971 R5. c2010.
- Kim JM, Lee EH. Boundary reaction method for nonlinear soil-structure interaction analysis. Proc. KSCE Conference. c2013.
- Lee GH, Hong KY, Lee EH, Kim JM. Verification of linear FE model for nonlinear SSI analysis by boundary reaction method. COSEIK J. Comput. Struct. Eng. 2014 April; 27(2): 95-102.
- MIDAS/Civil, http://www.midasit.com/
- Deek AJ, Randolph MF. Axisymmetric time domain transmitting boundaries. Journal of Engineering Mechanics, ASCE. 1994; 120(1):25-42. https://doi.org/10.1061/(ASCE)0733-9399(1994)120:1(25)
- Kellezi L. Local transmitting boundaries for transient elastic analysis. Soil Dynamics and Earthquake Engineering. 2000; 19:533-547. https://doi.org/10.1016/S0267-7261(00)00029-4
- Liu J, Gu Y, Wang Y, Li B. Efficient procedure for seismic analysis of soil-structure interaction system. Tsinghua Science and Technology. 2006 Dec.; 11: 625-631. https://doi.org/10.1016/S1007-0214(06)70244-9
Cited by
- Evaluation of the Soil-structure Interaction Effect on Seismically Isolated Nuclear Power Plant Structures vol.20, pp.6, 2016, https://doi.org/10.5000/EESK.2016.20.6.379