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强震下钢筋混凝土Y型桥墩的抗震性能评估
引用本文:李艳凤,罗威力,梁力.强震下钢筋混凝土Y型桥墩的抗震性能评估[J].沈阳工业大学学报,2020,42(1):109-114.
作者姓名:李艳凤  罗威力  梁力
作者单位:1. 沈阳建筑大学 交通工程学院, 沈阳 110168; 2. 东北大学 土木工程研究所, 沈阳 110004
基金项目:辽宁省教育厅科学研究一般计划项目(L2015442);沈阳建筑大学科研基金项目(20150500)
摘    要:为了研究城市高架桥墩的非线性动力行为特点,在有限元模拟的基础上,对典型的钢筋混凝土Y型桥墩抗震性能进行了评估.分别从桥墩截面性能和桥墩整体构件性能两个层次进行评估,结果表明,在桥墩截面抗震性能评估中得到了桥墩截面在不同轴压比下的弯矩-曲率曲线,推导出截面抗震性能评估公式,绘制了轴压比和曲率延性系数曲线;在桥墩构件抗震性能评估中分析了桥墩位移延性能力,并选取墩高和轴压比为控制变量对比分析了Y型桥墩构件的整体耗能特点.

关 键 词:Y型桥墩  有限元模拟  截面性能评估  弯矩-曲率  轴压比  构件性能  延性系数  整体耗能特点

Seismic performance evaluation of reinforced concrete Y-shaped pier under strong earthquake
LI Yan-feng,LUO Wei-li,LIANG Li.Seismic performance evaluation of reinforced concrete Y-shaped pier under strong earthquake[J].Journal of Shenyang University of Technology,2020,42(1):109-114.
Authors:LI Yan-feng  LUO Wei-li  LIANG Li
Affiliation:1. School of Transportation Engineering, Shenyang Jianzhu University, Shenyang 110168, China; 2. Institute of Civil Engineering, Northeastern University, Shenyang 110004, China
Abstract:In order to study the nonlinear dynamic behavior characteristics of elevated piers in cities, based on the finite element simulation, the seismic performance of typical reinforced concrete Y-shaped pier was evaluated. The cross section and the integral component performances of the piers were evaluated, respectively. The results show that the bending moment-curvature curves of pier section under different axial compression ratios can be obtained during the seismic performance evaluation of pier section; the seismic performance evaluation formula was derived; the relationship curve for axial compression ratio and curvature ductility coefficient was drawn. The ductility capacity of pier displacement was analyzed in the seismic performance evaluation of pier components; the overall energy dissipation characteristics of Y-shaped pier components were analyzed and compared, through taking the pier height and axial pressure ratio as the controlling variables.
Keywords:Y-shaped pier  finite element simulation  performance evaluation of cross section  bending moment-curvature  axial compression ratio  component performance  ductility coefficient  overall energy consumption characteristic  
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