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Paper Title: The Overstrength Paradox: A Case Study on Code-Induced Performance Inversion in Torsionally Irregular RC Frames

Publication Type: Journal Article

Publication Year: 2026

Author(s): Deepak Mishra and Jaspreet Kaur

Journal Name: RIMT International Journal of Multidisciplinary Research (RIJMR)

Volume, Issue: 1, 2

Pagination: 37 – 61

Article:  Paper

e-ISSN (Online): 3139-4043

Keywords: Overstrength Paradox, torsional irregularity, performance inversion, pushover analysis, Importance Factor.

Attachment

Abstract: Background: Seismic codes prescribe member oversizing to mitigate torsional irregularity. This case study documents the “Overstrength Paradox”—observed within a controlled boundary (six-story RC SMRF, unidirectional pushover)—where code-mandated stiffness enhancements altered the failure hierarchy for the specific configuration examined. Methods: A parametric numerical investigation on a six-story RC SMRF (IS 1893:2016, IS 13920) evaluated three variants—non-compliant, analytically amplified (design eccentricity), and geometrically upsized—via nonlinear static pushover analysis (ASCE 41-13). Seismic demand was scaled using Importance Factor (I = 1.0, 1.5, 2.0). Results: At I=1.0, the torsion-compliant structure exhibited high overstrength (Ω = 6.56–7.59) yet showed shear-critical collapse (D/C ≈ 1.19) despite codecompliant shear reinforcement. At I=2.0, it sustained moderate overstrength (Ω = 3.07–3.49) but achieved Immediate Occupancy through ductile flexural action. This inversion confirms linear force-scaling fails to yield proportional safety margins in overstrength-stiffened asymmetric systems. Conclusions: For the specific configuration examined, seismic safety depended on demand-activated ductile pathways rather than nominal reserve strength. These findings serve as a documented diagnostic indicator of hierarchy vulnerability. The mechanism may generalize to other plan-irregular systems but requires systematic validation.

How a Cite

Deepak Mishra and Jaspreet Kaur (2026). The Overstrength Paradox: A Case Study on Code-Induced Performance Inversion in Torsionally Irregular RC Frames. RIMT International Journal of Multidisciplinary Research (RIJMR)1(2), 37-61.

Copyright & Licensing

© 2026 RIMT University. This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC-BY 4.0). Readers are free to read, download, copy, distribute, print, search, or link to the full texts of this article, provided the original author and source are properly credited.