DocumentCode :
3075168
Title :
Progressive Collapse of a Chinese Ancient Building by Simulation
Author :
Zhou, Qian ; Yang, Kun
Author_Institution :
Imperial Palace Museum, Beijing Univ. of Technol., Beijing, China
Volume :
4
fYear :
2010
fDate :
4-6 June 2010
Firstpage :
192
Lastpage :
194
Abstract :
In order to protect Chinese ancient buildings, an ancient wooden building is taken as an example to study its progressive collapse under vertical transient loads. By LS-DYNA program simulation model of the ancient building is built. Then a structure member is considered inactive and failure loads in vertical direction are applied to the inactivation point to make the structure collapse. During the progressive collapse course displacements of the structure at different time are obtained. Then effects of inactivation strain of wood material are considered and response curves of the inactivation point under different inactivation strain values are obtained. Results show that under vertical loads the ancient building may collapse because of buckling caused by inactivation of one of its members, On the other hand its capability of progressive collapse resistance can be improved by increasing inactivation strain value of wood material.
Keywords :
failure (mechanical); structural engineering; wood; Chinese ancient building; LS-DYNA program simulation model; ancient wooden building; progressive collapse course displacement; progressive collapse resistance; response curves; vertical transient load; wood material inactivation strain; Building materials; Capacitive sensors; Chaos; Computational modeling; Damping; Difference equations; Electronic mail; Force measurement; Protection; Shape; Chinese ancient buildings; progressive collapse; simulation; vertical loads; wooden structure;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information and Computing (ICIC), 2010 Third International Conference on
Conference_Location :
Wuxi, Jiang Su
Print_ISBN :
978-1-4244-7081-5
Electronic_ISBN :
978-1-4244-7082-2
Type :
conf
DOI :
10.1109/ICIC.2010.319
Filename :
5514051
Link To Document :
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