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Detection of Earthquake-Induced Damage in a Framed Structure Using a Finite Element Model Updating Procedureopen access

Authors
Yu, EunjongKim, Seung-NamPark, TaewonLee, Sang-Hyun
Issue Date
Jan-2014
Publisher
HINDAWI PUBLISHING CORPORATION
Citation
SCIENTIFIC WORLD JOURNAL, v.2014, pp.1 - 12
Indexed
SCIE
SCOPUS
Journal Title
SCIENTIFIC WORLD JOURNAL
Volume
2014
Start Page
1
End Page
12
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/160924
DOI
10.1155/2014/410539
ISSN
1537-744X
Abstract
Damage of a 5-story framed structure was identified from two types of measured data, which are frequency response functions (FRF) and natural frequencies, using a finite element (FE) model updating procedure. In this study, a procedure to determine the appropriate weightings for different groups of observations was proposed. In addition, a modified frame element which included rotational springs was used to construct the FE model for updating to represent concentrated damage at the member ends (a formulation for plastic hinges in framed structures subjected to strong earthquakes). The results of the model updating and subsequent damage detection when the rotational springs (RS model) were used were compared with those obtained using the conventional frame elements (FS model). Comparisons indicated that the RS model gave more accurate results than the FS model. That is, the errors in the natural frequencies of the updated models were smaller, and the identified damage showed clearer distinctions between damaged and undamaged members and was more consistent with observed damage.
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