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Exploring a generalized nonlinear multi-span bridge system subject to multi-support excitation using a Bouc-Wen hysteretic model

机译:使用BOUC-WEN滞后模型探索通过多支撑励磁的广义非线性多跨度桥系统

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This paper presents a generalized reduced-order nonlinear model subjected to multi-support seismic excitation. The hysteretic, nonlinear, relationship of piers is phenomenologically captured by a calibrated Bouc-Wen model. This generalized reduced-order model is benchmarked against legacy physical experimental tests performed at the University of Bristol.A deterministic approach using real spatiotemporal ground motions recorded at the SMART-1 array, Taiwan, is employed as an alternative to a stochastic methodology used in current provision codes. This is so that the influence of nonlinearity and ground motion aleatory and epistemic effects are fully captured. Incremental Dynamic Analysis (IDA) is then performed to identify the performance levels at which this system transitions from elastic to inelastic behaviour. A parametric study is then performed to explore the effect of the spatial variability of the ground motion while bridge alignment, valley profile and ground motion intensity are modified. Results indicate that bridges over shallow valleys with a central rise are prone to significant analysis errors if multi-support excitation is not employed.
机译:本文介绍了经受多支撑地震激发的广义下降非线性模型。通过校准的BOUC-WEN模型,桥墩的滞质,非线性,桥墩的关系被捕获。这种广义的减少阶模型是在布里斯托大学进行的遗留物理实验测试的基准测试。使用在台湾智能1阵列中记录的真正时空地面运动的确定性方法,作为当前使用的随机方法的替代方案提供代码。这是充分捕获非线性和地面运动蛋白和认知效果的影响。然后执行增量动态分析(IDA)以识别该系统从弹性转变为无弹性行为的性能水平。然后进行参数研究以探索地面运动的空间变异性的影响,而桥梁对准,谷曲线和地运动强度被修改。结果表明,如果没有采用多支撑励磁,则浅谷的桥梁具有显着的分析误差。

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