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A model for vortex-induced vibration analysis of long-span bridges

机译:长跨度桥梁涡旋振动分析模型

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Long-span structures are susceptible to wind-induced vibrations due to their low oscillation frequency and low mechanical damping. Although many efforts have been made in the past to model vortex-induced vibration of circular cylinders, limited studies can be found for non-circular cross sections representative of long-span bridge decks. A model for vortex-induced vibration analysis of long-span bridge is presented in this paper. The aeroelastic equation of motion of the model, a procedure to extract aeroelastic coefficients from wind tunnel experiments, analysis of full-scale structures incorporating loss of spanwise correlation of aeroelastic forces, and comparison between simulated and full-scale measured responses on a twin deck bridge (Fred Hartman bridge, Baytown, Texas) are discussed. Six bluff sections - Deer Isle Bridge, Tsurumi Bridge, Fred Hartman bridge, generic rectangular, H shaped, and circular models - were considered in this research program.
机译:由于它们的低振荡频率和低机械阻尼,长跨度结构易于风引起的振动。虽然过去已经进行了许多努力来模型涡旋型圆柱振动,但是对于代表长跨度桥甲板的非圆形横截面,可以找到有限的研究。本文提出了一种用于长跨度桥的涡旋振动分析模型。模型运动的空气弹性方程,一种从风隧道实验中提取空气弹性系数的过程,分析了跨空气弹力损失的全尺度结构,以及在双层桥梁上的模拟和全规模测量响应的比较(Fred Hartman Bridge,Baytown,德克萨斯州)是讨论的。在本研究计划中考虑了六个虚张道 - 鹿岛桥,鹤崖桥,弗雷德·哈特曼桥,通用矩形,H形和圆形模型。

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