首页> 外文期刊>Journal of bridge engineering >Impact of Damper Stiffness and Damper Support Stiffness on the Efficiency of a Linear Viscous Damper in Controlling Stay Cable Vibrations
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Impact of Damper Stiffness and Damper Support Stiffness on the Efficiency of a Linear Viscous Damper in Controlling Stay Cable Vibrations

机译:阻尼器刚度和阻尼器支撑刚度对线性粘性阻尼器控制斜拉索振动效率的影响

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Accurate prediction of optimum damper size and its corresponding maximum attainable modal damping ratio is essential for the design of a linear viscous damper to control cable vibrations on cable-stayed bridges. The stiffness within the damper and the damper support would affect both the required damper size and the resulting equivalent modal damping ratio of the damped cable and thus influence the damper efficiency. An experimental study on a cable-damper system is conducted to investigate the individual and the combined effects of damper stiffness and damper support stiffness on the performance of a linear viscous damper. A finite-element model of the corresponding cable-damper system is developed to verify the experimental results and further study these two parameters within the typical ranges of cable and damper properties used on real bridges. Results show that higher damper stiffness and/or lower damper support stiffness would have an adverse impact on damper performance. Increasing the stiffness of a damper and/or its support would result in a larger optimum damper size. However, the maximum attainable damping ratio would decrease with larger damper stiffness but increase if the support is more rigid. To facilitate practical design, a set of asymptotic relationships has been proposed, of which the optimum damper size and the maximum achievable damping ratio are expressed concisely as functions of nondimensional damper properties in terms of its location, stiffness, and support stiffness. Design examples are given to illustrate the various applications of the proposed refined damper design tool.
机译:准确预测最佳阻尼器尺寸及其相应的最大可实现模态阻尼比对于设计线性粘性阻尼器以控制斜拉桥上的电缆振动至关重要。阻尼器和阻尼器支撑件内的刚度将影响所需的阻尼器尺寸以及所产生的阻尼电缆的等效模态阻尼比,从而影响阻尼器效率。进行了电缆阻尼器系统的实验研究,以研究阻尼器刚度和阻尼器支撑刚度对线性粘性阻尼器性能的单独影响和组合影响。建立了相应的电缆阻尼器系统的有限元模型,以验证实验结果并进一步研究在实际桥梁上使用的电缆和阻尼器特性的典型范围内的这两个参数。结果表明,较高的阻尼器刚度和/或较低的阻尼器支撑刚度将对阻尼器性能产生不利影响。增加阻尼器和/或其支撑的刚度将导致更大的最佳阻尼器尺寸。但是,最大阻尼比将随着阻尼器刚度的增大而减小,但如果支撑件更加刚性,则最大阻尼比将增大。为了便于实际设计,提出了一系列渐近关系,其中最佳阻尼器尺寸和最大可实现阻尼比根据其位置,刚度和支撑刚度简明地表示为无量纲阻尼器特性的函数。给出了设计实例,以说明所提出的改进的阻尼器设计工具的各种应用。

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