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Wind induced vibration of Rongjiang super-bridge during construction

机译:榕江特大桥施工中的风振

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Long-span continuous rigid bridge is sensitive to wind actions on largest double cantilever stage before closure. In order to analyze the performance of anti-wind during Rongjiang super-bridge construction, worst-case analysis of wind-induced response for several wind loads including various wind directions and attack angles have been performed using random simulation method in time domain. Based on the worst-case analysis, some measures for increasing its performance of anti-wind are discussed due to non-symmetric wind loads. The results indicate that the wind loads with +15° wind direction and +6° attack angle is the worst-case on largest double cantilever stage. In addition, the brace strut can increase the performance of anti-wind effectively, which would be a logical advice during bridge construction.
机译:大跨度连续刚桥在关闭前对最大的双悬臂阶段的风作用敏感。为了分析榕江特大桥施工过程中的抗风性能,采用时域随机模拟方法对包括不同风向和迎角的几种风荷载进行了最坏情况下的风致响应分析。基于最坏情况的分析,讨论了由于非对称风荷载而提高其抗风性能的一些措施。结果表明,风向为+ 15°且迎角为+ 6°的风荷载在最大的双悬臂级中是最坏的情况。另外,撑杆可以有效提高防风性能,这在桥梁施工中是合乎逻辑的建议。

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