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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 >Non-uniform wind characteristics in mountainous areas and effects on flutter performance of a long-span suspension bridge
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Non-uniform wind characteristics in mountainous areas and effects on flutter performance of a long-span suspension bridge

机译:山区的非均匀风特性和对长跨度悬架桥的振动性能的影响

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In mountainous areas, the approaching flow to a bridge shows the non-uniform characteristics that the wind parameters change along the span direction, causing potential effects on the flutter performance. This paper takes a long-span suspension bridge located in such areas as an example. Wind characteristics around the bridge are computed by computational fluid dynamics (CFD) simulations, and the distributions of wind velocities and angles of attack are obtained. After discussing the effects of non-uniform wind characteristics on the flutter performance, the flutter derivatives of an ideal plate at different wind speeds and angles of attack are extracted. Considering different distributions of wind velocities and angles of attack, the flutter performance of the bridge is computed based on full-order flutter analyses, and the change in critical flutter state is further discussed. The results show that the approaching flow to the bridge presents obvious non-uniform characteristics accompanied by large angles of attack. Compared with uniform incoming flow, however, non-uniform distributions of wind speeds and angles of attack significantly affect the critical flutter state of the bridge. As the bridge is more susceptible to stronger winds and larger angles of attack, the flutter stability is easy to worsen under such non-uniform wind characteristics.
机译:在山区,到桥梁的接近流动显示了风参数沿跨度方向变化的不均匀特性,从而导致对颤动性能的潜在影响。本文采用位于此类区域的长跨度悬架桥作为示例。通过计算流体动力学(CFD)模拟来计算桥周围的风特性,并且获得风速和攻击角度的分布。在讨论非均匀风特性对颤振性能的影响之后,提取理想板的颤振衍生物在不同风速和攻角的角度。考虑到不同的风速分布和攻击角,基于全阶颤动分析计算桥的颤动性能,并进一步讨论临界颤动状态的变化。结果表明,桥梁的接近流动伴随着伴随着大角度的攻击性明显的非均匀特性。然而,与均匀的进入流相比,风速的不均匀分布和攻击角度显着影响桥的临界颤动状态。随着桥梁更容易受到更强的风和较大的攻击角度,在这种非均匀风特性下易于恶化的颤动稳定性。

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