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Aerostatic Wind Effects on the Sutong Bridge

机译:Sutong Bridge上的空气静力学风

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摘要

The Sutong Bridge over the Yangtze River in China is a cable-stayed bridge spanning 1088 m. For such super long-span cable-supported bridges, the response induced by static wind is a key factor for structural wind-resistance design. The procedure for static wind induced response analyzing of large-span cable-supported bridge is presented and programmed in this work. Comprehensive calculation and analysis of static wind effects on Sutong Bridge are conducted. The influence of pile foundation, cables segmentation and participation in modes, different initial and added attack angle, different wind profile and flows on deck displacement, on pylon displacement, on different modes frequencies, and on critical wind velocities are investigated. The results show that the static instability wind velocity is high enough to meet the requirement. Among the whole wind loads of structure, the contribution of cables exceeds 40%, and the static wind velocity of instability will be overestimated by 20% without consideration of the added attack angle. If the foundation effect is not taken into account, the lateral bending will be severely underestimated. The characteristics of analytical fundamental frequencies of practical structure are similar to those of full bridge model in wind tunnel test.
机译:在中国长江桥梁的萨贡桥是一座跨越1088米的斜拉桥。对于这种超长跨度电缆支撑的桥梁,静电引起的响应是结构防风设计的关键因素。在这项工作中介绍和编程了静跨风电桥响应分析的静态响应分析。进行了Sutong桥梁静态风效的综合计算与分析。研究了桩基,电缆分割和参与模式,不同的初始和添加攻击角,不同风廓和在甲板位移上流动的影响,对不同模式频率和临界风速度的塔架位移。结果表明,静态不稳定风速高足以满足要求。在整个风荷载的结构中,电缆的贡献超过40%,并且不稳定性的静态风速将高估20%而不考虑添加的攻击角度。如果没有考虑基础效果,则横向弯曲将严重低估。实际结构的分析基本频率的特点类似于风洞试验中的全桥模型的特点。

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