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Evolution of long-span bridge response to wind-numerical simulation and discussion

机译:大跨度桥梁对风数值模拟的响应及讨论

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摘要

Flutter and buffeting are two important phenomena of long-span bridges susceptible to wind actions. When the wind velocity increases to the bridge flutter velocity, an initial or self-excited multi-frequency vibration in laminar flow becomes single-frequency flutter instability. Similarly, in turbulent flow, the multi-frequency buffeting vibration develops into a single-frequency dominated divergent vibration that can also be interpreted as flutter instability. Even though this transition from buffeting to flutter was observed in wind tunnel tests, the mechanism of transition from multi-frequency type of buffeting to single-frequency type of flutter has not been well demonstrated numerically. Some existent explanations on the occurrence of flutter are very generic and even somewhat confusing. An attempt to reinvestigate numerically the transition of these two phenomena was made in the present study. The established procedure demonstrates numerically how a pre-flutter multi-frequency free vibration and a multi-frequency buffeting vibration merge into a single-frequency dominated flutter at the flutter critical wind velocity. It is concluded that the modal coupling effect forces all modes to vibrate mainly in a frequency close to the oscillation frequency of the critical flutter mode. The oscillation frequency of each mode itself does not merge to that of the critical mode. As a result, some confusing concepts in flutter vibrations are clarified and the mechanisms of the vibration transition process are better understood. Numerical analyses of the Humen suspension bridge with a main span of 888 m were conducted to facilitate the discussions.
机译:颤振和抖振是易受风影响的大跨度桥梁的两个重要现象。当风速增加到桥颤振速度时,层流中的初始或自激多频振动将变为单频颤振不稳定。类似地,在湍流中,多频抖振会发展为单频主导的发散振动,这也可以解释为颤振不稳定性。尽管在风洞测试中观察到了从抖振到颤振的这种转变,但是从数字频率抖振到单频颤振的转变机理还没有得到很好的数值证明。关于颤动发生的一些现有解释非常笼统,甚至有些混乱。在本研究中,尝试重新从数值上研究这两种现象的转变。建立的过程以数值方式演示了颤振临界风速下的颤振前多频自由振动和颤振多频如何合并成以单频为主的颤振。结论是,模态耦合效应迫使所有模式主要以接近临界颤动模式的振荡频率的频率振动。每个模式本身的振荡频率不会与临界模式的振荡频率合并。结果,阐明了颤振中一些令人困惑的概念,并更好地理解了振动过渡过程的机理。对虎门大桥主跨888 m进行了数值分析,以方便讨论。

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