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Influence of some factors on the aerodynamic behavior of long-span suspension bridges

机译:某些因素对大跨度悬索桥空气动力性能的影响

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As the span length of suspension bridges increases, the diameter of cables and thus the wind load acting on them, the nonlinear wind-strUCtUre interaction and the spatial non-uniformity of wind speed (including the vertical and horizontal variations) all increase consequently, which may have unnegligible influence on the aerostatic and aerodynamic behavior of long-span suspension bridges. In this paper, the models of aerostatic and aerodynamic forces are established, in which the nonlinear wind-structure interaction and the spatial non-Uniformity of wind speed are both considered. By taking the Runyang Bridge over the Yangtze River as example, effects of the nonlinear wind-structure interaction, wind speed spatial non-Uniformity, and the cable's wind load on the aerostatic and aerodynamic behavior of the bridge are investigated analytically. The results show that the aerostatic behavior is significantly influenced by these factors, but for the aerodynamic stability, it is greatly influenced by the nonlinear wind-structure interaction and the horizontal variation of wind speed, and the other factors have no influence on it. (c) 2006 Elsevier Ltd. All rights reserved.
机译:随着悬索桥跨距的增加,电缆的直径以及作用在其上的风荷载,非线性风-结构相互作用以及风速的空间不均匀性(包括垂直和水平变化)都随之增加,这对大跨度悬索桥的空气静力学和空气动力学行为的影响可能微不足道。本文建立了空气动力和空气动力模型,其中考虑了风的非线性相互作用和风速的空间非均匀性。以长江上游的润扬大桥为例,分析了非线性风-固相互作用,风速空间不均匀性以及电缆的风荷载对桥的静,气动特性的影响。结果表明,空气静力性能受这些因素的影响很大,但是对于空气动力学稳定性,它受非线性风-结构相互作用和风速水平变化的影响很大,而其他因素对此没有影响。 (c)2006 Elsevier Ltd.保留所有权利。

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