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基于位移控制多点加载的新型混合连肢墙结构非线性有限元分析_石韵
30 9 Vol.30 No.9
2013 9 Sep. 2013 ENGINEERING MECHANICS 220
1000-4750(2013)09-0220-07
( 710055)
ABAQUS
Python
0.2 45%~60%
TU398+ .2 A doi: 10.6052/j.issn.1000-4750.2012.05.0377
FEM ANALYSIS OF THE HYSTERETIC BEHAVIOR OF INNOVATIVE
HYBRID COUPLED WALL SYSTEM BASED ON DISPLACEMENT
CONTROLLED MULTI-PIONTS LOADING
SHI Yun , SU Ming-zhou
(Key Laboratory of Structural Engineering and Earthquake Resistance of China Ministry of Education,
Xi’an University of Architecture and Technology, Xi’an 710055, China)
Abstract: Based on the experimental results of hybrid coupled wall system with steel boundary elements,
nonlinear finite element analysis was performed to simulate the overall process under cyclic loading with FEM
program ABAQUS, in which geometric and material nonlinearities were taken into account. By using Python
language, a displacement-controlled loading program was put forward with the given lateral force pattern. The
comparison of analytical results with test ones reveals that they agree well in hysteretic curve, skeleton curve and
energy dissipation. Based on the proposed model, parametric analysis was carried out to study the effect of
coupling ratio, to propose a suitable value in high earthquake intensity area. The results reveal that when the axial
compression ratio is equal to 0.2, the innovative system has excellent seismic performance with the coupling ratio
of 45% to 60%, and the distribution of plastic hinges is reasonable, so it is suitable to be used in high seismic
regions.
Key words: structural engineering; hybrid coupled w
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