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A pounding spacer damper and its application on transmission line subjected to fluctuating wind load

机译:防震减振器及其在输电线路上的应用

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摘要

In this paper, a new pounding spacer damper (PSD) is proposed, and the control effect on the transmission line under the fluctuating wind load is validated. At first, the schematic of the proposed PSD is provided, and the mechanical models of elastic, damping, and pounding forces are then obtained. After that, the dynamic equations of transmission line equipped with the PSD are derived. On the basis, the finite element model of transmission line-PSD system with the ANSYS software is established, and the pounding force of the PSD is calculated and applied through the ANSYS Parametric Design Language. Then the response induced by the fluctuating wind load is simulated, and meanwhile, the control effects of the PSD and spacer damper without pounding force are compared, of which the results illustrate that the minimal reduction ratio for the conductor span can reach to 11.10%, indicating that the proposed PSD can effectively control the vibration of the conductor span under the fluctuating wind load. In addition, the parametric analysis of gap, frequency, and damping ratios is conducted and demonstrates that the gap and frequency ratio have great impact on the control effect while the influence of damping ratio is not very significant.
机译:本文提出了一种新型的减震器减震器(PSD),并验证了风荷载变化对输电线路的控制效果。首先,提供了所提出的PSD的示意图,然后获得了弹性,阻尼和冲击力的力学模型。然后,推导了装有PSD的传输线的动力学方程。在此基础上,利用ANSYS软件建立了输电线路-PSD系统的有限元模型,并通过ANSYS参数化设计语言对PSD的冲击力进行了计算和应用。然后,模拟了风荷载波动引起的响应,同时比较了无冲击力的PSD和间隔阻尼器的控制效果,结果表明,导体跨距的最小减小率可以达到11.10%,说明所提出的PSD可以有效地控制风荷载变化下导体跨距的振动。另外,对间隙,频率和阻尼比的参数进行了分析,结果表明,间隙和频率比对控制效果的影响很大,而阻尼比的影响不是很明显。

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