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Semi-active control of curved bridge using piezoelectric friction dampers under multi-component multi-support earthquake

机译:多分量多支撑地震作用下压电减振器的弯桥半主动控制

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In order to reduce the bend torsion coupling of seismic response, piezoelectric friction dampers are adopted as semi-active control devices for curved bridges. First, the space finite element model for curved bridge is established, and the piezoelectric friction dampers are placed at the bearing positions of two abutments. Second, the semi-active control equation of motion under multi-component and multi-support earthquake is derived, and different earthquake wave incident angles are considered. Several control algorithms, including passive, semi-active and active methods are compared, and in the end the semi-active limit Hrovat control algorithm is adopted. Finally, an effort is made to investigate the potential influence of multi-component and spatially variability of earthquake ground motion on decreasing amplitude effect of curved bridge using piezoelectric friction dampers. The results indicate that piezoelectric friction dampers are effective in reducing the response of curved bridges under multi-component multi-support earthquake, and semi-active limit Hrovat control algorithm is superior to the simple bang-bang control algorithm and the passive control method. Moreover, it is shown that the control effect of the particular curved bridge under earthquake loading is strongly affected by (a) the accuracy in modeling the properties of the incoming seismic wave field and (b) the curvature and overall irregularity parameters.
机译:为了减少地震响应的弯扭耦合,采用压电摩擦阻尼器作为弯桥的半主动控制装置。首先,建立弯桥的空间有限元模型,并将压电摩擦阻尼器放置在两个基台的支承位置。其次,推导了多分量多支撑地震作用下的半主动运动控制方程,并考虑了不同的地震波入射角。比较了几种控制算法,包括被动,半主动和主动方法,最后采用了半主动极限Hrovat控制算法。最后,研究了使用压电摩擦阻尼器的地震地震动的多分量和空间变化对减小弯桥振幅效应的潜在影响。结果表明,压电摩擦阻尼器在降低多分量多支撑地震作用下弯桥的响应方面是有效的,半主动极限Hrovat控制算法优于简单的爆炸控制算法和被动控制方法。此外,还表明,特定弯曲桥在地震荷载下的控制效果受到(a)建模传入地震波场特性的精度以及(b)曲率和整体不规则参数的强烈影响。

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