The nonlinear behavior of reinforced concrete (RC) members represents a key issue in the seismic performance assessment of structures. Many structures constructed in the 1980s or earlier were designed based on force limits; thus they often exhibit brittle failure modes, strength and stiffness degradation, and severe pinching effects. Field surveys and experimental evidence have demonstrated that such inelastic responses affect the global behavior of RC structural systems. Efforts have been made to consider the degrading stiffness and strength in the simplified nonlinear static procedures commonly adopted by practitioners. This paper investigates the accuracy of such procedures for the seismic performance assessment of RC structural systems. Refined finite element models of a shear critical bridge bent and a flexure-critical bridge pier are used as reference models. The numerical models are validated against experimental results and used to evaluate the inelastic dynamic response of the structures subjected to earthquake ground motions with increasing amplitude. The maximum response from the refined numerical models is compared against the results from the simplified static procedures, namely modified capacity spectrum method and coefficient method in FEMA-440. The accuracy of the static procedures in estimating the displacement demand of a flexure-critical system and shear-critical system is discussed in detail.

Accuracy of nonlinear static procedures for the seismic assessment of shear critical structures / DEL VECCHIO, Ciro; Kwon, Oh Sung; di Sarno, Luigi; Prota, Andrea. - In: EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS. - ISSN 0098-8847. - 44:10(2015), pp. 1581-1600. [10.1002/eqe.2540]

Accuracy of nonlinear static procedures for the seismic assessment of shear critical structures

DEL VECCHIO, CIRO;PROTA, ANDREA;di Sarno, Luigi
2015

Abstract

The nonlinear behavior of reinforced concrete (RC) members represents a key issue in the seismic performance assessment of structures. Many structures constructed in the 1980s or earlier were designed based on force limits; thus they often exhibit brittle failure modes, strength and stiffness degradation, and severe pinching effects. Field surveys and experimental evidence have demonstrated that such inelastic responses affect the global behavior of RC structural systems. Efforts have been made to consider the degrading stiffness and strength in the simplified nonlinear static procedures commonly adopted by practitioners. This paper investigates the accuracy of such procedures for the seismic performance assessment of RC structural systems. Refined finite element models of a shear critical bridge bent and a flexure-critical bridge pier are used as reference models. The numerical models are validated against experimental results and used to evaluate the inelastic dynamic response of the structures subjected to earthquake ground motions with increasing amplitude. The maximum response from the refined numerical models is compared against the results from the simplified static procedures, namely modified capacity spectrum method and coefficient method in FEMA-440. The accuracy of the static procedures in estimating the displacement demand of a flexure-critical system and shear-critical system is discussed in detail.
2015
Accuracy of nonlinear static procedures for the seismic assessment of shear critical structures / DEL VECCHIO, Ciro; Kwon, Oh Sung; di Sarno, Luigi; Prota, Andrea. - In: EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS. - ISSN 0098-8847. - 44:10(2015), pp. 1581-1600. [10.1002/eqe.2540]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/646603
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