참고문헌
- Almeida, J. P.,Das, S.,&Pinho, R. (2012). RC frame analysiswith a new damage-following model. World Conference on Earthquake Engineering (15WCEE), Lisboa, Portugal, 2012.
- Berry, M. P., & Eberhard, M. O. (2005). Practical performance model for bar buckling. Journal of Structural Engineering, 131, 1060-1070. https://doi.org/10.1061/(ASCE)0733-9445(2005)131:7(1060)
- Berry, M. P., Lehman, D. E., & Lowes, L. N. (2008). Lumpedplasticity models for performance simulation of bridge columns. ACI Structural Journal, 105, 270-279.
- Calabrese, A., Almeida, J. P., & Pinho, R. (2010). Numerical issues in distributed inelasticity modeling of RC frame elements for seismic analysis. Journal of Earthquake Engineering, 14(S1), 38-68. https://doi.org/10.1080/13632461003651869
- Carvalho, E. C., Coelho, E., & Campos-Costa, A. (1999). Preparation of the full-scale tests on reinforced concrete frames. Characteristics of the test specimens, materials and testing conditions, ICONS Report, Innovative Seismic Design Concepts for New and Existing Structures, European TMR Network, LNEC.
- Coleman, J., & Spacone, E. (2001). Localization issues in forcebased frame elements. Journal of Structural Engineering, 127, 1257-1265. https://doi.org/10.1061/(ASCE)0733-9445(2001)127:11(1257)
- Eberhard, M. O. (2000). Consequences of bridge damage on functionality. Proc., PEER Invitational Workshop on Performance-Based Engineering Concepts for Bridges, Palo Alto, Calif.
- FEMA-273. (1997). NEHRP guidelines for the seismic rehabilitation of buildings. Washington, DC.
- FEMA-356. (1997). Prestandard and commentary for the seismic rehabilitation of buildings. Washington, DC.
- Filippou, F. C. & Fenves, G. L. (2004). Methods of analysis for earthquake-resistant structures. Earthquake engineering: From engineering seismology to performance-based engineering, Bozorgnia Y, Bertero V V. eds. Chap. 6, CRC, Boca Raton, FL.
- Giberson, M. F. (1967). The response of nonlinear multi-story structures subjected to earthquake excitation, doctoral Dissertation, California Institute of Technology, Pasadena, CA, pp.232.
- Giberson, M. F. (1969). Two nonlinear beams with definition of ductility. Journal of the Structural Division, ASCE, 95(2), 137-157.
- Hashemi, S. S., & Vaghefi, M. (2012). Cyclic analysis of RC frames with respect to employing different methods in the fiber model for consideration of bond-slip effect. Turkish J. Eng. Env. Sci, 36, 1-18.
- Huang, X., & Kwon, O. (2015). Numerical models of RC elements and their impacts on seismic performance assessment. Earthquake Engineering and Structural Dynamics, 44, 283-298. https://doi.org/10.1002/eqe.2471
- Inel, M., & Ozmen, H. B. (2006). Effects of plastic hinge properties in nonlinear analysis of reinforced concrete buildings. Engineering Structures, 28, 1494-1502. https://doi.org/10.1016/j.engstruct.2006.01.017
- Jeong, S. H., & Elnashai, A. S. (2005). Analytical assessment of an irregular RC frame for full scale 3D pseudo-dynamic testing Part I: analytical model verification. Journal of Earthquake Engineering, 9, 95-128.
- Ladjinovic, D. J., Raseta, A., Radujkovic, A., Folic, R., & Prokic, A. (2012). Comparison of structural models for seismic analysis of multi-storey frame buildings. World Conference on Earthquake Engineering (15WCEE), Lisbon, Portugal, 2012.
- Lehman, D. E., Gookin, S. E., Nacamuli, A. M., & Moehle, J. P. (2001). Repair of earthquake-damaged bridge columns. ACI Structural Journal, 98(2), 233-242.
- Limkatanyu, S., & Spacone, E. (2002). Reinforced concrete frame element with bond interfaces. I: displacement-based, force-based, and mixed formulations. Journal of Structural Engineering, 128, 346-355. https://doi.org/10.1061/(ASCE)0733-9445(2002)128:3(346)
- Mander, J., Priestley, M., & Park, R. (1988). Theoretical stressstrain model for confined concrete. Journal of Structural Engineering, 114, 1804-1826. https://doi.org/10.1061/(ASCE)0733-9445(1988)114:8(1804)
- Mazza, F., & Mazza, M. (2010). Nonlinear analysis of spatial framed structures by a lumped plasticity model based on the Haar-Karman principle. Computational Mechanics, 45, 647-664. https://doi.org/10.1007/s00466-010-0478-0
- Menegotto, M., & Pinto, P. E. (1973). Method of analysis for cyclically loaded reinforced concrete plane frames including changes in geometry and non-elastic behavior of elements under combined normal force and bending moment (pp. 15-22). Lisbon, Portugal: IASBE Proceedings.
- Panagiotakos, T. B., & Fardis, M. N. (2001). Deformations of reinforced concrete members at yielding and ultimate. ACI Structural Journal, 98, 135-148.
- Park, R., & Paulay, T. (1975). Reinforced concrete structures. NY: Wiley.
- Paulay, T., & Priestley, M. (1992). Seismic design of reinforced concrete and masonry buildings (p. 767). NY: John Wiley and Sons.
- Pinto, A. V. G., Verzeletti, G., Molina, J., Varum, H., Pinho, R., & Coelho, E. (2002). Pseudo-dynamic tests on non-seismic resisting RC frames (bare and selective retrofit frames). European Laboratory for Structural Assessment (ELSA), Research Report EUR20244 EN, Joint Research Centre, Ispra, Italy.
- Popovics, S. (1973). A numerical approach to the complete stress-strain curve of concrete. Cement and Concrete Research, 3, 583-599. https://doi.org/10.1016/0008-8846(73)90096-3
- Priestley, M. J. N., & Park, R. (1987). Strength and ductility of concrete bridge columns under seismic loading. ACI Structural Journal, 84(1), 61-76.
- Priestley, M. J. N., Verma, R., & Xiao, Y. (1994). Seismic shear strength of reinforced concrete columns. Journal of Structural Engineering, 120(8), 2310-2329. https://doi.org/10.1061/(ASCE)0733-9445(1994)120:8(2310)
- Ramin, K., & Fereidoonfar, M. (2015). Finite element modeling and nonlinear analysis for seismic assessment of off-diagonal steel braced RC frame. International Journal of Concrete Structures and Materials, 9(1), 89-118. https://doi.org/10.1007/s40069-014-0089-9
- Richart, F. E., Brandtzæg, A., & Brown, R. L. (1928). A study of the failure of concrete under combined compressive stresses. University of Illinois Bulletin, 26(12).
- Rodrigues, H., Varum, H., Arede, A., & Costa, A. (2012). Comparative efficiency analysis of different nonlinear modelling strategies to simulate the biaxial response of RC columns. Earthquake Engineering and Engineering Vibration, 11, 553-566. https://doi.org/10.1007/s11803-012-0141-1
- Rodriguez, M. E., Botero, J. C., & Villa, J. (1999). Cyclic stress-strain behavior of reinforcing steel including effect of buckling. Journal of Structural Engineering, 125, 605-612. https://doi.org/10.1061/(ASCE)0733-9445(1999)125:6(605)
- Roh, H., Reinhorn, A. M., & Lee, J. S. (2012). Power spread plasticity model for inelastic analysis of reinforced concrete structures. Engineering Structures, 39, 148-161. https://doi.org/10.1016/j.engstruct.2012.01.019
- Scott, M. H. & Fenves, G. L. (2006). Plastic hinge integration methods for force-based beam-column elements. Journal of Structural Engineering ASCE, 132, 244-252. https://doi.org/10.1061/(ASCE)0733-9445(2006)132:2(244)
- Scott, M. H., Franchin, P., Fenves, G. L., & Filippou, F. C.(2004). Response sensitivity for nonlinear beam-column elements. Journal of Structural Engineering ASCE, 130, 1281-1288. https://doi.org/10.1061/(ASCE)0733-9445(2004)130:9(1281)
- Scott, B. D., Park, R., & Priestley, M. J. N. (1982). Stress-strain behavior of concrete confined by overlapping hoops at low and high strain rates. ACI Journal, 79, 13-27.
- SeismoSoft, SeismoStruct v7. (2015). A computer program for static and dynamic nonlinear analysis of framed structures, available from URL: http//www.seismosoft.com.
피인용 문헌
- Experimental and Numerical Researches on the Seismic Behavior of Tubular Reinforced Concrete Columns of Air-Cooling Structures vol.11, pp.3, 2016, https://doi.org/10.1007/s40069-017-0207-6
- Finite element modeling assumptions impact on seismic response demands of MRF-buildings vol.17, pp.4, 2016, https://doi.org/10.1007/s11803-018-0478-1
- Modelling of Stirrup Confinement Effects in RC Layered Beam Finite Elements Using a 3D Yield Criterion and Transversal Equilibrium Constraints vol.12, pp.1, 2018, https://doi.org/10.1186/s40069-018-0278-z
- Fiber element-based nonlinear analysis of concrete bridge piers with consideration of permanent displacement vol.69, pp.3, 2016, https://doi.org/10.12989/sem.2019.69.3.243
- Comparisons Between Pull-Out Behaviour of Various Hooked-End Fibres in Normal-High Strength Concretes vol.13, pp.1, 2016, https://doi.org/10.1186/s40069-019-0337-0
- The accuracy of the lumped plasticity model for estimating nonlinear behavior of reinforced concrete frames under gradually increasing vertical loads vol.21, pp.1, 2016, https://doi.org/10.1002/suco.201800357
- The effect of finite element modeling assumptions on collapse capacity of an RC frame building vol.18, pp.5, 2020, https://doi.org/10.12989/eas.2020.18.5.555
- Nonlinear flexibility-based beam element on Winkler-Pasternak foundation vol.24, pp.4, 2016, https://doi.org/10.12989/gae.2021.24.4.371