STUDY ON HYSTERETIC MODEL OF PRECAST RC BRIDGE PIERS BASED ON NEW MODIFIED BOUC-WEN MODEL

被引:0
作者
Xu Y.-Z. [1 ]
Wei K.-L. [1 ]
Ding Y.-Q. [1 ]
机构
[1] School of Civil Engineering, Xi’an University of Architecture and Technology, Shaanxi, Xi’an
来源
Gongcheng Lixue/Engineering Mechanics | 2024年 / 41卷 / 02期
关键词
Dirac; δ; function; hysteretic model; parameter identification; pinching effect; precast RC bridge piers;
D O I
10.6052/j.issn.1000-4750.2022.04.0276
中图分类号
学科分类号
摘要
Bouc-Wen-Baber-Noori (BWBN) model is a modified Bouc-Wen model. BWBN model can better describe the pinching effect of reinforced concrete structures under strong earthquakes, but the calculation efficiency is low due to the complex pinching function and many parameters in BWBN model. To solve this problem, a new modified Bouc-Wen (MBW) model is proposed by establishing a simpler and more efficient pinching function based on an approximate Dirac delta function. It can achieve the pinching effect with fewer parameters. The validity of the MBW model is verified using the pseudo-static test data of precast RC bridge piers, and parameter identification process of BWBN model and MBW model is performed by using MATLAB Genetic Algorithm Toolbox. The results show that the proposed MBW model has higher computational accuracy. © 2024 Tsinghua University. All rights reserved.
引用
收藏
页码:180 / 193
页数:13
相关论文
共 23 条
[1]  
YU Bo, LI Changjin, WU Ranli, Inelastic restoring force model and its parametric identification for reinforced concrete columns, Journal of Vibration and Shock, 35, 21, pp. 229-235, (2016)
[2]  
SIVASELVAN M V, REINHORN A M., Hysteretic models for deterioration inelastic structures, Journal of Engineering Mechanics, 126, pp. 633-640, (2000)
[3]  
CLOUGH R W., Inelastic earthquake response of tall buildings [C], Proceedings of the 3rd World Conference on Earthquake Engineering, pp. 68-89, (1965)
[4]  
TAKEDA T., Reinforced concrete response to simulated earthquakes, Journal of the Structural Division Proceedings of the American Society of Civil Engineers, 96, pp. 2557-2573, (1970)
[5]  
BOUC W., Force vibration of mechanical systems with hysteresis, Proceedings of the Fourth Conference on Nonlinear Oscillation, pp. 315-321, (1967)
[6]  
WEN Y K., Method for random vibration of hysteretic systems [J], Journal of Engineering Mechanics, ASCE, 102, 2, pp. 249-263, (1976)
[7]  
BABER T T, WEN Y K., Random vibrations of hysteretic degrading systems [J], Journal of Engineering Mechanics, 107, pp. 1069-1089, (1981)
[8]  
ZHOU Zihao, LI Ning, LI Zhongxian, A post-correction method for the influence of time delay in real time hybrid simulation based on the error propagation of numerical integration algorithm, Engineering Mechanics, 38, 6, pp. 121-132, (2021)
[9]  
CAO Shengtao, LI Zhishan, LIU Fujun, Et al., Explicit nonlinear time history analysis of energy dissipation structures based on Bouc-Wen model, Engineering Mechanics, 36, pp. 17-24, (2019)
[10]  
XU Longhe, WANG Kunpeng, XIE Xingsi, Et al., Study on hysteretic model and seismic performance of damping energy dissipation brace with self-centering capability, Engineering Mechanics, 35, 7, pp. 39-46, (2018)