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首页> 外文期刊>Journal of Sound and Vibration >Vibration control of simply supported beams under moving loads using fluid viscous dampers
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Vibration control of simply supported beams under moving loads using fluid viscous dampers

机译:流体粘性阻尼器在移动载荷下对简支梁的振动控制

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In this article, a new alternative for reducing the resonant vibration of simply supported beams under moving loads is presented and numerically evaluated. The strategy proposed is based on the use of linear fluid viscous dampers that connect the beam carrying the loads (main beam) and an auxiliary beam placed underneath the main one. Our research study shows that the resonant response of the main beam can be drastically reduced with this type of device. Firstly, the main beam,equipped with the damping system is subjected to a sinusoidal excitation and analysed with a view to discovering the dampers which minimise the overall dynamic response at resonance. In this way, a closed-form expression of the optimal damper constants is obtained for minimising the vertical acceleration, and a slightly different one for minimising the vertical displacement. These expressions are then applied to real bridges subjected to railway traffic, and their adequacy is proven for a wide range of circulating velocities. Finally, we compare the performance of the original structure with the performance of the one equipped with these optimal dampers. The results of our study prove their effectiveness and technical feasibility. The methodology proposed has potential applications for the reduction of the response of railway bridges subjected to the transit of high-speed trains. (c) 2006 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种新的替代方法,用于减少移动荷载下简单支撑梁的共振振动,并进行了数值评估。提出的策略基于使用线性流体粘性阻尼器,该阻尼器将承载负载的梁(主梁)与位于主梁下方的辅助梁连接起来。我们的研究表明,使用这种类型的设备可以大大降低主梁的共振响应。首先,对配备有阻尼系统的主梁进行正弦激励并进行分析,以发现阻尼器,从而将共振时的整体动态响应降至最低。以此方式,获得了最佳阻尼器常数的闭合形式的表达式以最小化垂直加速度,而获得一个略有不同的表达式以最小化垂直位移。然后将这些表达式应用于经受铁路运输的实际桥梁,并证明了其适用于广泛的循环速度。最后,我们将原始结构的性能与配备这些最佳阻尼器的性能进行了比较。我们的研究结果证明了它们的有效性和技术可行性。所提出的方法具有潜在的应用价值,可减少高速列车通过时铁路桥梁的响应。 (c)2006 Elsevier Ltd.保留所有权利。

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