Dergiler / Journal of Structural Engineering & Applied Mechanics (Online) / 2021 / Cilt: 4 - Sayı: 2
Effective flexural stiffness for reinforced concrete shear walls having confined boundary elements
- Sayfa
- 126–139
- DOI
- —
Abstract
In the design of reinforced concrete (RC) shear walls strength, ductility and effective stiffness of the elementsmust be taken into account and are important parameters in terms of structural safety. Accurate estimationof the ductility and effective stiffnesses of RC members has always been an attractive subject of study as itprovides a reliable estimate of the capacity of buildings under seismic loads. In this study, RC shear wallmodels with different concrete strength, longitudinal and transverse reinforcement ratios were designed toinvestigate effective section stiffness and coefficients. The effective stiffness of the cracked section in theRC shear walls designed in different parameters were analytically obtained. Analytically investigatedparameters were calculated from TBEC (2018), ACI318 (2014), ASCE/SEI41 (2017) and Eurocode8 (2004,2005) regulations and nonlinear behaviors. The results obtained according to different design parameterswere compared and examined. In the relations suggested for the effective section stiffness coefficient, theconfining effect is not taken into account as in the regulations. Therefore, it means neglecting the effects ofparameters such as concrete strength, confining effect and axial load levels acting on the section. Thissituation can lead to unrealistic results in the design and evaluation of RC elements. For this reason,determining the moment-curvature relationship in the design and evaluation of RC elements and obtainingeffective section stiffness values are of great importance in order to obtain more realistic results.