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基于电涡流阻尼器的超宽单肋拱桥减震研究
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Research on Seismic Reduction of Ultra-wide Single Rib Arch Bridge Based on Eddy Current Dampers
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    摘要:

    为研究电涡流阻尼器在超宽单肋系杆拱桥减震领域的应用效果,分别在某超宽桥面有背索柔性单肋系杆拱桥新型组合结构体系的主梁活动支座位置处设置纵向和横向电涡流阻尼器,并采用非线性时程分析方法计算结构在地震作用下的运动响应.为方便电涡流阻尼器的计算应用,分析时对其阻尼力模型开展简化研究,并通过试验验证了简化模型的有效性,最后以墩梁相对位移和拱脚内力为评判指标,研究了变化电涡流阻尼器参数对结构地震响应的影响.结果表明:超宽桥面有背索柔性单肋系杆拱桥新型组合结构体系的面外刚度较低,在地震作用下容易发生侧向倾覆,结构对拱脚抗弯承载力的要求较高;双折线模型可以近似与电涡流阻尼器的非线性阻尼力模型等效,用于描述电涡流阻尼器的力学性能;安装电涡流阻尼器可以有效降低超宽桥面有背索柔性单肋系杆拱桥新型组合结构体系在地震作用下的动力响应,阻尼器最大阻尼力确定时,随等效阻尼系数的提升,结构的地震运动响应呈现明显的下降趋势,其下降速度先快后慢,最终在阻尼系数达到一定阈值后趋于水平;最大阻尼力参数决定了电涡流阻尼器的阻尼力上限,在等效阻尼系数一定时,一定范围内随最大阻尼力的提高,结构各节点的运动响应会不断下降.

    Abstract:

    In order to study the application effect of eddy current damper in the field of seismic reduction of super-wide single-rib tied arch bridge, the longitudinal and transverse eddy current dampers are set at the active bearing position of the girder of a new composite structure system of a flexible single rib tied arch bridge with backstays on an ultra-wide bridge deck, respectively. The nonlinear time history analysis method is used to calculate the motion response of the structure under earthquake. In order to facilitate the calculation and application of the eddy current damper, the damping force model was simplified, and the validity of the simplified model was verified by experiments. Finally, the relative displacement between the pier and girder, and the internal force of the arch feet are taken as the evaluation indexes to study the influence of viriable eddy current damper parameters on the seismic response of the structure. The results show that the out-of-plane stiffness of the structure system is low, and it is prone to lateral overturning under earthquake. The structure has high requirements on the bearing capacity of the arch foot. The double broken line model can be approximately equivalent to the nonlinear damping force model of eddy current dampers, which is used to describe the mechanical properties of the eddy current damper . The installation of eddy current dampers can effectively reduce the dynamic response of the bridge structure under earthquake. When the maximum damping force of the damper is determined, the seismic motion response of the structure shows a significant downward trend with the increase of the equivalent damping coefficient. The speed of decline is fast first and then slow, and finally tends to a level after the damping coefficient reaches a certain threshold. The maximum damping force parameter determines the upper limit of the damping force of the eddy current damper. When the equivalent damping coefficient is constant, the motion response of each node of the structure continues to decrease with the increase of the maximum damping force within a certain range.

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陈谨林 ,李秉海 ?,徐继祥 ,涂军 ,王志宏 ,陈孟鸿 ,陈政清 .基于电涡流阻尼器的超宽单肋拱桥减震研究[J].湖南大学学报:自然科学版,2025,52(7):109~117

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  • 在线发布日期: 2025-07-31
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