Spectral Story Drift Demand Analysis for Building Structures During the 1999 Chi-Chi Taiwan Earthquake
Resource
Journal of the Chinese Institute of Engineers 25 (4): 371-388
Journal
Journal of the Chinese Institute of Engineers
Journal Volume
25
Journal Issue
4
Pages
371-388
Date Issued
2002
Date
2002
Author(s)
Abstract
The 921 Chi-Chi earthquake caused a very significant number of building collapses and damage of various degrees. Many collapsed buildings had pedestrian corridors and open fronts on the ground floors. Using a modified modal participation factor and the generalized shape function computed from the nonlinear push over analysis, story drift demands imposed on soft first story building systems are studied in this paper. Generalized shape functions are constructed from the nonlinear static push over analysis of shear buildings having specific distributions of story stiffness and strength. Nonlinear response spectrum analyses were performed on the ground acceleration recorded from 51 sites located in the Taipei Basin and 62 sites in the Taichung Region. Analytical results indicate that soft first story buildings are likely to have story drift demands significantly greater than regular buildings of short fundamental period. Results of the nonlinear dynamic analysis of a 6-story structure indicate that the maximum story drift demand can be satisfactorily predicted by the story spectral drift constructed from the generalized shape functions. © 2002, Taylor & Francis Group, LLC.
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journal article
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