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Anti-symmetric mode excitation and seismic response of base-isolated bridges under asynchronous input motion

机译:异步输入运动下基础隔震桥梁的反对称模式激励和地震响应

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This paper investigates the effect of asynchronous earthquake ground motion on the transverse response of base-isolated bridges. In this context, the excitation of anti-symmetric modes of vibration under asynchronous input is examined and is statistically correlated with characteristic engineering demand parameters. Different ground motion scenarios are considered for various combinations of soil class, wave propagation velocity and loss of correlation patterns among different support motions, using a spectral representation method to generate m-variate, fully non-stationary, EC8 spectrum-compatible ground motion vector processes. It is shown that in the idealised case of the wave passage effect only, the detrimental effects of asynchronous excitation are concentrated on the very last piers along the direction of the seismic waves. However, when loss of coherency is also taken into account in a more realistic scenario, the impact of spatial variability is significantly more uniformly distributed. Most importantly, the conditional probability of a detrimental increase in an EDP of interest (i.e., pier base bending moments and deck drift) under multi-support excitation given that an anti-symmetric mode is excited is not only uniform but also considerably high. This is a clear evidence that the local increase of seismic demand in the bridge studied is associated with the excitation of the first anti-symmetric mode of vibration.
机译:本文研究了异步地震地震动对基础隔震桥梁横向响应的影响。在这种情况下,检查了异步输入下振动的非对称模式的激励,并将其与特征性工程需求参数统计相关。考虑到土壤类别,波传播速度和不同支撑运动之间相关模式的损失的各种组合,使用了不同的地面运动方案,使用频谱表示方法来生成m变量,完全非平稳,EC8频谱兼容的地面运动矢量过程。结果表明,仅在理想的波通过效应情况下,异步激励的有害影响集中在沿地震波方向的最后一个墩上。但是,如果在更现实的情况下也考虑到相干性损失,则空间变异性的影响会明显更均匀地分布。最重要的是,考虑到反对称模式的激发,在多支撑激励下,感兴趣的EDP有害增加的条件概率(即,墩台弯矩和桥面漂移)不仅均匀而且很高。这是一个明确的证据,表明所研究桥梁中地震需求的局部增加与第一反对称振动模式的激发有关。

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