DocumentCode :
2621733
Title :
Dynamic characteristics analysis and seismic safety evalution for Madushan Gravity Dam
Author :
Lei, Gan ; Zhenzhong, Shen
Author_Institution :
Coll. of Water Conservancy & Hydropower Eng., Hohai Univ., Nanjing, China
fYear :
2011
fDate :
27-29 June 2011
Firstpage :
366
Lastpage :
369
Abstract :
According to the engineering geological condition of Madushan RCC Gravity Dam, the 3-D finite element model of the joint effect of the dam and its foundation is established to analyze dynamic characteristics and evaluate seismic safety of Madushan dam. In this paper, dynamic time history analysis method is applied to calculate the dynamic response of the roller compacted concrete gravity dam so as to obtain the seismic acceleration response, displacement and stress response and their distribution. The foundation stability against sliding is analyzed by the point safety factor method and the strength reserve safety factor method. The calculation shows that, in VII seismic fortification intensity, the maximum displacement response of the dam is 13.18mm, the maximum stress response is 2.264MPa, the maximum acceleration response is 3.628m/s2, magnification of 3.69, thus the strength of dam meets with the requirements. Meanwhile the foundation point safety factors of the overflow dam are all greater than 1, no continuous foundation failure surface, and the dam´s strength reserve coefficient is 3.68. So the dam meets with the safety requirements.
Keywords :
concrete; dams; finite element analysis; foundations; geology; safety; 3D finite element model; Madushan roller compacted concrete gravity dam; VII seismic fortification intensity; dynamic characteristics analysis; dynamic time history analysis method; engineering geological condition; foundation point safety factor; foundation stability; overflow dam; point safety factor method; safety requirement; seismic acceleration response; seismic safety evalution; strength reserve safety factor method; stress response; Acceleration; Concrete; Finite element methods; Gravity; Rivers; Safety; Stress; RCC gravity dam; boundary condition; dynamic characteristics; dynamic time history analysis; safety assessment; seismic response; strength reserve coefficient method;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Science and Service System (CSSS), 2011 International Conference on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-9762-1
Type :
conf
DOI :
10.1109/CSSS.2011.5974748
Filename :
5974748
Link To Document :
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