4.6 Article

Seismic collapse capacity of basic inelastic structures vulnerable to the P-delta effect

Journal

EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS
Volume 41, Issue 4, Pages 775-793

Publisher

WILEY
DOI: 10.1002/eqe.1157

Keywords

collapse capacity spectra; dynamic instability; nondeteriorating hysteretic behavior; single-degree-of-freedom oscillator

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The collapse capacity of earthquake-excited inelastic nondeteriorating SDOF systems, which are vulnerable to the destabilizing effect of gravity loads (P-delta effect), is evaluated. In this paper, the collapse capacity of the system subjected to a ground motion is defined as spectral acceleration at its initial structural period, at which the structure becomes unstable. Characteristic structural parameters, which affect the collapse capacity, are identified. Ground motion records of the ATC 63 far-field set characterize severe earthquake excitation. In extensive incremental dynamic analyses studies, the impact of these parameters and of aleatory uncertainties on the collapse capacity is assessed and quantified. Median and percentile collapse capacities are plotted against the initial structural period leading to collapse capacity spectra. Nonlinear regression analyses are applied to derive analytical expressions of the design collapse capacity spectra and collapse fragility curves. The ultimate objective is to provide collapse capacity spectra for easy application and yet sufficient accurate assessment of the dynamic stability of flexible multistory buildings. Copyright (C) 2011 John Wiley & Sons, Ltd.

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