2021
DOI: 10.21203/rs.3.rs-1141410/v1
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Evaluation of Seismic Response Modification Factor (R) for Moderate-Rise RC Buildings with Vertical Irregular Configurations

Abstract: Most international design codes consider the nonlinear seismic performance of a structure by the concept of reduction/modification factor (R). Then, an elastic static force-based method can be normally used for seismic design to create earthquake resistant RC buildings. The response modification factor (R) is sensitive to many aspects such as overall ductility, over-strength, damping, and redundancy levels. Indeed, these factors are severely affected by geometric irregularity of the structural system. So, R-va… Show more

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Cited by 2 publications
(1 citation statement)
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“…In [17], the effect of the height of Reinforced Concrete (RC) frames on overstrength, redundancy, and ductility response modification coefficients were estimated by the pushover method and nonlinear incremental dynamic analysis. The effect of vertical geometric irregularity on the R values of RC structures with Moment Resisting Frame (MRF) systems was studied in [18]. In this analysis, the capacity spectrum method according to ATC 40 was used.…”
Section: Introductionmentioning
confidence: 99%
“…In [17], the effect of the height of Reinforced Concrete (RC) frames on overstrength, redundancy, and ductility response modification coefficients were estimated by the pushover method and nonlinear incremental dynamic analysis. The effect of vertical geometric irregularity on the R values of RC structures with Moment Resisting Frame (MRF) systems was studied in [18]. In this analysis, the capacity spectrum method according to ATC 40 was used.…”
Section: Introductionmentioning
confidence: 99%