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Journal Article

Citation

Pang WC, Rosowsky DV. Earthq. Spectra 2009; 25(3): 583-605.

Copyright

(Copyright © 2009, Earthquake Engineering Research Institute, Publisher Scitation)

DOI

10.1193/1.3158932

PMID

unavailable

Abstract

This paper presents a direct displacement design (DDD) procedure that can be used for seismic design of multistory wood-framed structures. The proposed procedure is applicable to any pure shear deforming system. The design procedure is a promising design tool for performance-based seismic design since it allows consideration of multiple performance objectives (e.g., damage limitation, safety requirements) without requiring the engineer to perform a complex finite element or nonlinear time-history analysis of the complete structure. A simple procedure based on normalized modal analysis is used to convert the code-specified acceleration response spectrum into a set of interstory drift spectra. These spectra can be used to determine the minimum stiffness required for each floor based on the drift limit requirements. Specific shear walls can then be directly selected from a database of backbone curves. The procedure is illustrated on the design of two three-story ATC-63 archetype buildings, and the results are validated using nonlinear time-history analysis. ©2009 Earthquake Engineering Research Institute.

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