...
首页> 外文期刊>Smart structures and systems >Cable vibration control with internal and external dampers: Theoretical analysis and field test validation
【24h】

Cable vibration control with internal and external dampers: Theoretical analysis and field test validation

机译:带内外阻尼器的电缆振动控制:理论分析和现场测试验证

获取原文
获取原文并翻译 | 示例
           

摘要

For vibration control of stay cables in cable-stayed bridges, viscous dampers are frequently used, and they are regularly installed between the cable and the bridge deck. In practice, neoprene rubber bushings (or of other types) are also widely installed inside the cable guide pipe, mainly for reducing the bending stresses of the cable near its anchorages. Therefore, it is important to understand the effect of the bushings on the performance of the external damper. Besides, for long cables, external dampers installed at a single position near a cable end can no longer provide enough damping due to the sag effect and the limited installation distance. It is thus of interest to improve cable damping by additionally installing dampers inside the guide pipe. This paper hence studies the combined effects of an external damper and an internal damper (which can also model the bushings) on a stay cable. The internal damper is assumed to be a High Damping Rubber (HDR) damper, and the external damper is considered to be a viscous damper with intrinsic stiffness, and the cable sag is also considered. Both the cases when the two dampers are installed close to one cable end and respectively close to the two cable ends are studied. Asymptotic design formulas are derived for both cases considering that the dampers are close to the cable ends. It is shown that when the two dampers are placed close to different cable ends, their combined damping effects are approximately the sum of their separate contributions, regardless of small cable sag and damper intrinsic stiffness. When the two dampers are installed close to the same end, maximum damping that can be achieved by the external damper is generally degraded, regardless of properties of the HDR damper. Field tests on an existing cable-stayed bridge have further validated the influence of the internal damper on the performance of the external damper. The results suggest that the HDR is optimally placed in the guide pipe of the cable-pylon anchorage when installing viscous dampers at one position is insufficient. When an HDR damper or the bushing has to be installed near the external damper, their combined damping effects need to be evaluated using the presented methods.
机译:对于缆绳座椅中的带电缆的振动控制,经常使用粘性阻尼器,它们经常安装在电缆和桥甲板之间。在实践中,氯丁橡胶衬套(或其他类型)也广泛安装在电缆引导管内,主要用于减少锚固靠近电缆的弯曲应力。因此,重要的是要理解衬套对外部阻尼器性能的影响。此外,对于长线电缆,安装在电缆端附近的单个位置的外部阻尼器不能再由于下垂效果和有限的安装距离而提供足够的阻尼。因此,通过附加在引导管内部安装阻尼器来改善电缆阻尼的感兴趣。因此,本文研究了外部阻尼器和内部阻尼器(也可以在衬套上模拟衬套的内部阻尼器的组合效果。假设内部阻尼器是高阻尼橡胶(HDR)阻尼器,并且外部阻尼器被认为是具有固有刚度的粘性阻尼器,并且还考虑电缆凹陷。研究了两个阻尼器靠近一个电缆端的情况,并分别接近两个电缆端。考虑到阻尼器靠近电缆端,两种情况导出了渐近设计公式。结果表明,当两个阻尼器靠近不同的电缆端口时,它们的组合阻尼效应大约是它们单独贡献的总和,无论小电缆凹槽和阻尼器内在刚度如何。当两个阻尼器靠近相同的端部时,无论HDR阻尼器的性质如何,都可以通过外部阻尼器实现的最大阻尼。现有缆车座椅上的现场测试进一步验证了内部阻尼器对外部阻尼器性能的影响。结果表明,当在一个位置安装粘性阻尼器时,HDR最佳地放置在电缆 - 幽门锚地的导管中。当HDR阻尼器或套管必须安装在外部阻尼器附近时,需要使用所提出的方法进行评估它们的组合阻尼效果。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号