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Dynamic performance of existing high-speed railway bridges under resonant conditions following a retrofit with fluid viscous dampers supported on clamped auxiliary beams

机译:在夹紧辅助梁支撑的流体粘滞阻尼器改造后,现有高速铁路桥梁在共振条件下的动态性能

摘要

This contribution investigates the application of Passive Control techniques to reduce the severe transverse vibrations that railway bridges of moderate lengths may experience under resonant conditions. The proposed solution consists in connecting the slab to a series of auxiliary beams clamped between the bridge abutments through a set of fluid viscous dampers. A particular configuration minimising the space occupied by the devices and the auxiliary beams under the bridge deck is proposed for two typical typologies in the aforementioned lengths: slabs and girder bridges. First, the dynamic response of a double-beam analytical model is obtained in closed-form under harmonic excitation in order to detect the main governing parameters, capturing the essence of the response at resonance of the main beam fundamental mode. Then conditions are obtained for the optimal damper constants that minimise the main beam amplification. Finally the effectiveness of the solution and the adequacy of the expressions derived from the harmonic case are proven under railway traffic excitation taking into account the three-dimensional deformation of the deck. Throughout the study special attention is given to the beneficial effect arising from clamping the auxiliary beam supports when compared to the simply-supported case, analysed by the authors in previous works. Partial rotational restrictions are admitted to take into consideration the expectable deviation from ideally clamped conditions. Two case studies are presented showing that the auxiliary beams size, if partially clamped, could be significantly reduced for the same main beam vibration mitigation level. If the beams are to be installed under a railway bridge deck in a practical application, this is a crucial issue in order to minimise the free space occupied with the retrofit.
机译:这项研究调查了被动控制技术的应用,以减少中等长度的铁路桥梁在共振条件下可能遭受的严重横向振动。所提出的解决方案包括通过一组流体粘性阻尼器将平板连接到一系列夹在桥墩之间的辅助梁。针对上述长度的两种典型类型,提出了一种将桥面板下方的设备和辅助梁占用的空间最小化的特殊配置:平板桥和大梁桥。首先,在谐波激励下以闭合形式获得双光束分析模型的动态响应,以检测主要控制参数,从而捕获了主光束基本模式共振时响应的本质。然后获得最佳阻尼器常数的条件,该阻尼器常数使主光束放大最小化。最后,在考虑了桥面的三维变形的情况下,在铁路交通激励下,证明了该解的有效性和从谐波案例导出的表达式的充分性。作者在先前的研究中分析了整个研究过程中,与单纯支撑的情况相比,特别关注夹紧辅助梁支架所产生的有益效果。考虑到与理想夹紧条件的预期偏差,允许部分旋转限制。提出了两个案例研究,表明在相同的主梁减振水平下,如果部分夹持辅助梁,则可以显着减小辅助梁的尺寸。如果在实际应用中将梁安装在铁路桥面板下,则这是至关重要的问题,以最小化改造所占用的自由空间。

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