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Parametric study on buffeting performance of a long-span triple-tower suspension bridge

机译:长跨度三层塔架悬架桥自助性能的参数研究

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摘要

The triple-tower suspension bridge is a brand new type of structural form that is equipped with a dominant mid-tower. The dynamic characteristics of this multiple main-span suspension bridge present a significant difference with that of the conventional single main-span suspension bridge. Hence, taking the Taizhou Yangtze River Bridge as an example, the buffeting performance of a long-span triple-tower suspension bridge under strong winds is comprehensively investigated via finite element method. Specifically, the sensitivity of structural buffeting performance to some major structural parameters, aerodynamic parameters as well as parameters of turbulence inputs is analysed in time domain. It was found that the structural buffeting performance heavily depends on the dead load of the main girder, sag-to-span ratio of the main cable, longitudinal stiffness and structural type of the mid-tower. Also, appropriate selection of aerodynamic admittance function, power spectrum model of fluctuating wind and the spatial coherence coefficient is important in the buffeting analysis. Besides, the self-excited forces have small impact on the calculation of buffeting responses of such a bridge. The analytical results can provide references for the buffeting analyses and wind-resistant design of similar long-span triple-tower suspension bridges.
机译:三塔悬架桥是一种全新的结构形式,配备了主导的中塔。该多个主跨度悬架桥的动态特性具有与传统单个主跨悬架桥的差异有显着差异。因此,以台州长江桥为例,通过有限元方法全面研究了强风中的长跨度三塔悬架桥的缓冲性能。具体地,在时域中分析了结构缓冲性能对某种主要结构参数,空气动力学参数以及湍流输入参数的敏感性。结果发现,结构抖动性能大大取决于主电缆的主电缆的凹陷,跨度刚度和中塔的结构类型的横向载荷。 Also, appropriate selection of aerodynamic admittance function, power spectrum model of fluctuating wind and the spatial coherence coefficient is important in the buffeting analysis.此外,自我兴奋的力对这种桥的缓冲响应的计算略有影响。分析结果可以为类似的长跨度三塔悬架桥接桥的缓冲分析和防风设计提供参考。

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