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Feasibility study of using a semiactive electromagnetic friction damper for seismic response control of horizontally curved bridges

机译:利用半电气摩擦阻尼器进行地震响应控制水平弯曲桥梁的可行性研究

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Semiactive control systems have been found to be more effective than passive and active control systems for seismic protection of bridges because of their reliable and adaptable characteristics. This paper presents a comprehensive investigation on the modeling and design of a semiactive electromagnetic friction damper (SEMFD) for the seismic response control of horizontally curved bridges. The proposed SEMFD possesses a simple configuration consisting of a ferromagnetic plate and two arrays of ferromagnetic core coils (FCs) attached to the two sides of the ferromagnetic plate through two friction pads. The attractive magnetic interaction between the FCs arrays and the ferromagnetic plate creates the normal force, which generates friction force as the friction pads and the ferromagnetic plate move relative to each other. The magnitude of this force can be controlled by varying the control current passing through the FCs. This semiactive controller, designed based on the optimal linear quadratic Gaussian control method, is capable of reducing the undesirable effects of stick-slip motion in the damper, while restoring the piston of the SEMFD to its initial position at the end of the excitation. The capability of the proposed SEMFD to mitigate the rigid-body motion of decks of horizontally curved bridges is demonstrated by implementing it into the dynamic model of a horizontally curved bridge prototype. The numerical results indicate that the proposed SEMFD is effective in limiting the motion of the deck and thereby preventing it from unseating, which is one of the most common modes of failure among horizontally curved bridges.
机译:由于其可靠和适应性的特性,已经发现半导体控制系统比用于桥梁的地震保护的被动和主动控制系统更有效。本文对水平弯曲桥梁的地震反应控制进行了半视电磁摩擦阻尼器(SEMFD)的建模和设计全面调查。所提出的SEMFD具有简单的配置,其由铁磁板和两个铁磁芯线圈(Fcs)组成,其通过两个摩擦垫连接到铁磁板的两侧。 FCS阵列和铁磁板之间的有吸引力的磁相互作用产生了正常力,其产生摩擦力作为摩擦垫,并且铁磁板相对于彼此移动。通过改变通过FCS的控制电流来控制该力的大小。该半导体控制器基于最佳线性二次高斯控制方法设计,能够降低阻尼器中的粘滑运动在阻尼器中的不期望的影响,同时将SEMFD的活塞恢复到激发结束时的初始位置。通过将其进入水平弯曲的桥梁原型的动态模型,证明了所提出的SEMFD来减轻水平弯曲桥的粗糙运动的能力。数值结果表明,所提出的SEMFD在限制甲板的运动方面有效,从而防止其取得取消定位,这是水平弯曲的桥梁中最常见的失效模式之一。

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