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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >An investigation into the bimodal flutter details based on flutter derivatives' contribution along the bridge deck's surface
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An investigation into the bimodal flutter details based on flutter derivatives' contribution along the bridge deck's surface

机译:基于桥甲板表面的颤振衍生物贡献的双峰颤动细节调查

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摘要

Flutter derivatives are commonly used to describe the behavior of the self-excited force. Based on them, most existing analyzing methods can reveal the overall process of the flutter evolution very well but are not so good at describing the internal mechanism combining with the aerodynamic pressure. To quantify the contributions from each zone of the deck's surface, a novel definition of Surface-Flutter-Derivatives (SFDs) are introduced. The wind-induced changes of the mode characteristics are allocated to different parts of the deck's surface, with the help of further derivations based on Chen's bimodal flutter stability expressions. Verification of the derived formulas are carried using the Computational-Fluid-Dynamics (CFD) method, based on deck shape and dynamic characteristics of the Great Belt Bridge. Next, the SFD's advantages in exploring the weights of the self-excited force's components and investigating the stabilizer's control mechanism on the bimodal flutter are demonstrated. Similar routings could be helpful when exploring the mechanism of other passive aerodynamic appendages.
机译:颤振衍生物通常用于描述自我激发力的行为。基于它们,大多数现有的分析方法可以非常良好地揭示颤振进化的整体过程,但在描述与空气动力学压力结合的内部机构方面并不那么擅长。为了量化甲板表面的每个区域的贡献,介绍了表面颤动衍生物(SFD)的新颖定义。借助基于Chen的双峰颤动稳定性表达式的进一步推导,将燃烧模式特征的变化分配给甲板表面的不同部分。使用基于甲板形状和大带桥的甲板形状和动态特性,使用计算流体 - 动力学(CFD)方法携带衍生公式的验证。接下来,证据证明了SFD在探索自我激发力的组件的重量和研究双模颤动上的稳定器控制机制方面的优势。在探索其他被动空气动力学附录的机制时,类似的路由可能会有所帮助。

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