DocumentCode :
2630542
Title :
Computer Simulation of Dynamic Brittle Damage Process in Arch Dam due to Blast Load
Author :
Yu, Gong ; Wo-hua, Zhang ; Xian-yu, Jin
Author_Institution :
Key Lab. of Soft Soils & Geoenvironmental Eng., Zhejiang Univ., Hangzhou, China
Volume :
3
fYear :
2009
fDate :
March 31 2009-April 2 2009
Firstpage :
144
Lastpage :
148
Abstract :
In this paper a three dimensional finite element analysis of anisotropic brittle dynamic damage mechanism problem for arch dam and rock foundation subject to attack of a blast load has been carried out. The concept of damage strain energy release rate has been taken into account to develop the dynamic damage evolution model employed into the developed three dimensional anisotropic dynamic damage finite element program. The process of dynamic damage response in the dam due to attack of a blast load has been numerically simulated. The concepts of anisotropic brittle dynamic damage strain energy release rates ; 3D dynamic finite element analysis safety of arch dam under blast impact load are involved in studies of this paper. The developed analysis could provide a referenced basis on the computer simulation of brittle dynamic damage process in different structures.
Keywords :
dams; digital simulation; finite element analysis; geotechnical engineering; structural engineering computing; 3D dynamic finite element analysis; anisotropic brittle dynamic damage mechanism problem; arch dam; blast load; computer simulation; dynamic brittle damage process; dynamic damage evolution model; rock foundation; three dimensional anisotropic dynamic damage finite element program; three dimensional finite element analysis; Anisotropic magnetoresistance; Capacitive sensors; Computer simulation; Concrete; Damping; Equations; Finite element methods; Numerical simulation; Power generation economics; Safety;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Science and Information Engineering, 2009 WRI World Congress on
Conference_Location :
Los Angeles, CA
Print_ISBN :
978-0-7695-3507-4
Type :
conf
DOI :
10.1109/CSIE.2009.612
Filename :
5170818
Link To Document :
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