带有阻尼外伸臂的大跨度悬索桥的阻尼

Zhanhang Liu, Lin Chen, Limin Sun
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引用次数: 3

摘要

大跨度悬索桥易受涡致振动的影响,例如中国的虎门大桥和西堠门大桥。本文研究了一种新颖的策略,即使用阻尼伸出臂来控制梁与桥塔或桥墩之间连接点的桥面旋转。采用简化的悬架悬架阻尼模型对悬架悬架进行了阻尼分析。考虑到实际参数范围,一个阻尼支腿对特定模态提供的最大阻尼比约为1.0%。研究了桥梁边界条件、阻尼伸出臂安装位置以及多个阻尼伸出臂相互作用的影响。当安装多个阻尼伸出臂时,可以进一步改善多模态的阻尼效果。研究表明,阻尼伸出臂对大跨度悬索桥的多模态振动具有抑制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damping of long-span suspension bridges with damped outriggers
Long-span suspension bridges are vulnerable to vortex-induced vibrations (VIVs), e.g., the Humen Bridge and the Xihoumen Bridge in China. This study focuses on a novel strategy by using damped outriggers to control rotations of bridge deck at the junction points between the girder and a bridge tower or pier. A simplified model of a suspension bridge with damped outriggers is used for damping analysis. Considering practical parameter ranges, the maximal damping ratio provided by one damped outrigger to a specific mode is about 1.0%. Influences of bridge boundary conditions, installation position of damped outriggers, and interaction between multiple damped outriggers are studied. When multiple damped outriggers are installed, the damping effects of multiple modes can be further improved. It is shown that damped outriggers are effective in suppressing multimode vibrations of long-span suspension bridges.
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