Paper
18 February 2022 Finite element analysis of pseudo dynamic behavior of steel reinforced concrete plane frame structure
Liang Luo, Chong Xiao, Hui Lv, Chao Feng
Author Affiliations +
Proceedings Volume 12162, International Conference on High Performance Computing and Communication (HPCCE 2021); 121620T (2022) https://doi.org/10.1117/12.2628161
Event: 2021 International Conference on High Performance Computing and Communication, 2021, Guangzhou, China
Abstract
In view of the current situation that the numerical simulation parameter analysis of frame structure mainly focuses on the macro characteristics such as stiffness and displacement, the author uses ABAQUS finite element (FE)software to establish a three story two span steel reinforced concrete plane frame and carry out pseudo dynamic analysis. The reasonable constitutive relationship of concrete and steel, the constraint relationship between concrete and longitudinal reinforcement, stirrup and section steel, the reasonable seismic wave input mechanism and the structural damping of plane frame are fully considered in the modeling. By comparing the displacement and acceleration time history results in the finite element with the test results, the difference between them is small, which shows the rationality of the modeling method, and further analyzes the meso characteristics of plastic energy dissipation of the plane frame. The results show that the proportion of plastic energy dissipation of frame beam is greater than that of frame column; According to the material, beam and column reinforcement are the main energy consuming components of plane frame, followed by concrete, and the energy consumption of section steel is relatively small; The modeling method can efficiently and accurately simulate the pseudo dynamic performance of plane frame, and can be used as a reference for subsequent practical projects.
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Liang Luo, Chong Xiao, Hui Lv, and Chao Feng "Finite element analysis of pseudo dynamic behavior of steel reinforced concrete plane frame structure", Proc. SPIE 12162, International Conference on High Performance Computing and Communication (HPCCE 2021), 121620T (18 February 2022); https://doi.org/10.1117/12.2628161
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KEYWORDS
Finite element methods

Analytical research

Lithium

Electroluminescence

Numerical simulations

Optical simulations

Modal analysis

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