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Measurement of aerodynamic coefficients of tower components of Tsing Ma Bridge under yaw winds

机译:偏航作用下青马大桥塔构件空气动力系数的测量

摘要

Tsing Ma Bridge in Hong Kong is the longest suspension bridge in the world carrying both highway and railway. It has two H-shape concrete towers, each of which is composed of two reinforced concrete legs and four deep transverse prestressed concrete beams. A series of wind tunnel tests have been performed to measure the aerodynamic coefficients of the tower legs and transverse beams in various arrangements. A 1:100 scaled 3D rigid model of the full bridge tower assembled from various tower components has been constructed for different test cases. The aerodynamic coefficients of the lower and upper segments of the windward and leeward tower legs and those of the transverse beams at different levels, with and without the dummy bridge deck model, were measured as a function of yaw wind angle. The effects of wind interference among the tower components and the influence of the bridge deck on the tower aerodynamic coefficients were also investigated. The results achieved can be used as the pertinent data for the comparison of the computed and field-measured fully coupled buffeting responses of the entire bridge under yaw winds.
机译:香港的青马大桥是世界上最长的公路和铁路悬索桥。它有两个H形混凝土塔,每个塔由两个钢筋混凝土支腿和四个深的横向预应力混凝土梁组成。已经进行了一系列风洞测试,以测量各种布置中塔腿和横梁的空气动力学系数。已针对不同的测试案例构建了由各种塔架部件组装而成的全桥塔架的1:100比例3D刚性模型。在有无假人桥面模型的情况下,测量了上风向和下风塔腿的下部和上部以及横梁在不同水平上的空气动力学系数,它们是偏航风向角的函数。还研究了风在塔架部件之间的干扰以及桥面对塔架空气动力系数的影响。所获得的结果可以用作相关数据,用于比较偏航风作用下整个桥梁的计算和实测全耦合抖振响应。

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