【24h】

Field vibration tests of bridge stay cables incorporated with magneto-rheological (MR) dampers

机译:装有磁流变(MR)阻尼器的桥拉索的现场振动测试

获取原文
获取原文并翻译 | 示例

摘要

Working towards full implementation of semi-active MR dampers to over 200 cables in the cable-stayed Dongting Lake Bridge, a few selected stay cables were installed with both MR dampers and vibration sensors for trial testing before full implementation. This paper reports the field vibration tests of a typical stay cable of 115 m long before and after being installed with MR dampers. The field vibration tests were conducted by using ambient vibration excitation, and sinusoidal excitation followed by free vibration decay, respectively. The resonant frequencies and equivalent modal damping of the first twenty in-plane modes of the cable with and without MR dampers are identified. The relationship between the equivalent modal damping ratio and the applied voltage strength to MR dampers is experimentally determined. The test results show that the modal damping ratios of the free cable without dampers conform to a combined Rayleigh and frequency-independent damping model, and are almost unvaried with vibration amplitude within the tested range. Installation of MR dampers results in a slight change of resonant frequencies in comparison with the free cable, but variation in applied voltage almost does not affect the resonant frequencies. The equivalent modal damping ratios of the cable-damper system are found to be dependent on the installation location of MR dampers, voltage strength applied to the dampers, and the cable vibration level. The optimal voltage input, which achieves maximum system damping, is obtained for different modes under different vibration amplitudes. With optimal voltage applied to the dampers, the resulting system damping should be high enough to suppress both wind-rain-induced vibration and wake galloping of cables.
机译:为了在斜拉的洞庭湖大桥中为200多条电缆完全实现半主动MR阻尼器,在完全实现之前,安装了一些选定的带有MR阻尼器和振动传感器的斜拉索,以进行试验测试。本文报告了在安装MR阻尼器之前和之后长115 m的典型拉索的现场振动测试。通过使用环境振动激励和正弦激励,然后分别进行自由振动衰减来进行现场振动测试。确定了带有和不带有MR阻尼器的电缆的前二十个平面内模式的谐振频率和等效模态阻尼。实验确定了等效模态阻尼比与向MR阻尼器施加的电压强度之间的关系。测试结果表明,不带阻尼器的自由电缆的模态阻尼比符合瑞利和频率独立阻尼模型的组合,并且在测试范围内,其振幅几乎不变。与自由电缆相比,安装MR阻尼器会导致谐振频率略有变化,但是施加电压的变化几乎不会影响谐振频率。电缆阻尼器系统的等效模态阻尼比取决于MR阻尼器的安装位置,施加在阻尼器上的电压强度以及电缆的振动水平。在不同的振动振幅下,针对不同的模式可获得实现最大系统阻尼的最佳电压输入。在阻尼器上施加最佳电压后,所产生的系统阻尼应足够高,以抑制风雨引起的振动和电缆的尾波驰gall。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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