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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 >Significance of aero-elastic relationship in wind-resistant design of long-span bridges
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Significance of aero-elastic relationship in wind-resistant design of long-span bridges

机译:气动弹性关系在大跨度桥梁抗风设计中的意义

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Flutter is a typical phenomenon resulting from aeroelasticity of a long-span bridge. Suppressing the flutter has been mainly made by the alteration or optimization of the deck cross section. However, as the center-span length increases, more effective methods should be considered. Since flutter is one of the aero-elastic vibration modes, a mode control with the consideration of the aero-elastic relationship of the bridge may be effective instead of the flow pattern control around the deck. This paper presents new strategies for flutter control, which mainly focuses on the optimization of the entire bridge configuration, and discusses the significance of the aero-elastic relationship of long-span bridges.
机译:颤振是大跨度桥梁的空气弹性导致的典型现象。抑制颤动主要是通过改变或优化甲板横截面来实现的。但是,随着中心跨度长度的增加,应考虑使用更有效的方法。由于颤动是空气弹性振动模式之一,因此考虑到桥的空气弹性关系的模式控制可能是有效的,而不是围绕甲板的流动模式控制。本文提出了扑动控制的新策略,主要侧重于整个桥梁结构的优化,并讨论了大跨度桥梁气弹关系的重要性。

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