Earthquake ground motion characteristics and seismic energy dissipation
- 1 September 1995
- journal article
- research article
- Published by Wiley in Earthquake Engineering & Structural Dynamics
- Vol. 24 (9) , 1195-1213
- https://doi.org/10.1002/eqe.4290240903
Abstract
The sensitivity of seismic energy dissipation to ground motion and system characteristics is assessed. It is found that peak ground acceleration, peak ground velocity to acceleration (V/A), dominant period of ground excitation and effective response duration are closely correlated with the energy dissipated by a SDOF system. Ductility ratio and damping ratio have no significant influence on the energy dissipation. An energy dissipation index is proposed for measuring the damage potential of earthquake ground motion records which includes the effects of basic excitation and response characteristics contributing to the seismic energy dissipation. The proposed index is compared with several intensity measures for the set of 94 ground motion records considered in the study.Keywords
This publication has 9 references indexed in Scilit:
- A measure of the capacity of earthquake ground motions to damage structuresEarthquake Engineering & Structural Dynamics, 1994
- An analytical assessment of elastic and inelastic response spectraCanadian Journal of Civil Engineering, 1994
- Seismic energy demands on reinforced concrete moment‐resisting framesEarthquake Engineering & Structural Dynamics, 1993
- Evaluation of seismic energy in structuresEarthquake Engineering & Structural Dynamics, 1990
- The Nature of Earthquake Ground MotionPublished by Springer Nature ,1989
- Inelastic Modeling and Seismic Energy DissipationJournal of Structural Engineering, 1987
- Effect of Initial Base Motion on Response SpectraJournal of the Engineering Mechanics Division, 1978
- Engineering characteristics of earthquake ground motionsNuclear Engineering and Design, 1976
- Site-dependent spectra for earthquake-resistant designBulletin of the Seismological Society of America, 1976