Structural Behavior Of Reinforced Concrete Shear Walls With Openings: A Review

Authors

  • Raju Ahirwal Research Scholar, Department of Civil Engineering, Samrat Vikramaditya Vishwavidyalaya, Ujjain, Madhya Pradesh, India Author
  • Prof. Chetan Gurjar Professor, Department of Civil Engineering, Samrat Vikramaditya Vishwavidyalaya, Ujjain, Madhya Pradesh, India. Author

Keywords:

Reinforced concrete shear wall; opening configuration; seismic performance; stiffness degradation; ductility; finite-element modelling; meta-analysis

Abstract

Reinforced concrete (RC) shear walls are primary lateral-load resisting elements in medium- and high-rise 
buildings, yet their performance is frequently interrupted by architectural and service openings required for 
doors, windows, ducts and corridors. This review research paper synthesizes past experimental, analytical and 
numerical work on RC shear walls with different opening configurations, with emphasis on how opening size, 
shape, position, number and reinforcement detailing influence strength, stiffness, ductility, energy dissipation and 
failure mode. The reviewed literature indicates that openings reduce the effective wall web area and disturb 
diagonal compression fields, causing stress concentration at corners and premature cracking when boundary 
elements, coupling beams and diagonal reinforcement are insufficient [1]. Centrally placed small openings can 
often be accommodated with moderate reductions in capacity, whereas large, eccentric, staggered or multiple 
openings may transform a solid wall into a coupled wall system governed by pier flexure, spandrel shear and 
localized crushing. Meta-analysis of reported trends shows that opening area ratio and shear-span ratio are the 
most consistent predictors of degradation, while detailing around openings controls post-peak stability. Modern 
finite-element, strut-and-tie and performance-based design studies improve prediction, but uncertainties remain 
for irregular openings, low-aspect-ratio walls, high axial load, cyclic degradation and post-installed 
penetrations. The paper concludes that safe design requires configuration-specific assessment rather than simple 
gross-area reduction, and it recommends integrated experimental databases, validated nonlinear models and 
practical detailing rules for resilient walls with openings. It also emphasizes practical evaluation of existing 
buildings where new openings are added after construction without original seismic design intent [2]

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Published

2026-07-19

How to Cite

Structural Behavior Of Reinforced Concrete Shear Walls With Openings: A Review. (2026). International Journal of Engineering and Science Research, 16(3), 196-203. https://ijesr.org/index.php/ijesr/article/view/1837

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