Wei Zhaolan, Lv Mengting, Shen Minghui, Wang Haijun, You Qixuan, Hu Kai, Jia Shaomin
School of Civil Engineering, Sichuan Agricultural University, Dujiangyan 611830, China.
Sensors (Basel). 2022 Aug 22;22(16):6311. doi: 10.3390/s22166311.
In seismic assessment of continuous girder bridges, plastic hinges form in bridge piers to dissipate seismic energy through nonlinear restoring forces. Considering temporal and spatial variations of ground motions, seismic evaluation of the bridges involves nonlinear stochastic vibration and expensive computation. This paper presents an approach to significantly increase the efficiency of seismic evaluation for continuous girder bridges with plastic hinges. The proposed approach converts nonlinear motion equations into quasi-linear state equations, solves the equations using an explicit time-domain dimension-reduced iterative method, and incorporates a stochastic sampling method to statistically analyze the seismic response of bridges under earthquake excitation. Taking a 3 × 30 m continuous girder bridge as an example, fiber beam-column elements are used to simulate the elastic-plastic components of the continuous girder bridge, and the elastic-plastic time history analysis of the continuous girder bridge under non-uniform seismic excitation is carried out. Results show that the computation time is only 5% of the time of the nonlinear time history approach while retaining the accuracy. This study advances the capability of rapid seismic assessment and design for bridges with localized nonlinear behaviors such as plastic hinges.
在连续梁桥的地震评估中,桥墩会形成塑性铰,通过非线性恢复力来耗散地震能量。考虑到地面运动的时空变化,桥梁的地震评估涉及非线性随机振动且计算成本高昂。本文提出一种方法,可显著提高带塑性铰连续梁桥的地震评估效率。该方法将非线性运动方程转化为准线性状态方程,采用显式时域降维迭代法求解方程,并结合随机抽样方法对桥梁在地震激励下的地震响应进行统计分析。以一座3×30m连续梁桥为例,采用纤维梁柱单元模拟连续梁桥的弹塑性构件,对连续梁桥在非均匀地震激励下进行弹塑性时程分析。结果表明,计算时间仅为非线性时程方法的5%,同时保持了精度。本研究提升了对具有塑性铰等局部非线性行为桥梁的快速地震评估与设计能力。