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Wind tunnel measurement of aerodynamic characteristics of trains passing each other on a simply supported box girder bridge

机译:风隧道测量火车空气动力学特性在简单的支撑箱梁桥上通过

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The aerodynamic performance of high-speed trains passing each other was investigated on a simply supported box girder bridge, with a span of 32?m, under crosswinds. The bridge and train models, modeled at a geometric scale ratio of 1:30, were used to test the aerodynamic forces of the train, with the help of a designed moving test rig in the XNJD-3 wind tunnel. The effects of wind speed, train speed, and yaw angle on the aerodynamic coefficients of the train were analyzed. The static and moving model tests were compared to demonstrate how the movement of the train influences its aerodynamic characteristics. The results show that the sheltering effect introduced by trains passing each other can cause a sudden change in force on the leeward train, which is further influenced by the wind and running speeds. Detailed analyses related to the effect of wind and train speeds on the aerodynamic coefficients were conducted. The relationship between the change in aerodynamic coefficients and yaw angle was finally described by a series of proposed fitting formulas.
机译:在简单的支持箱梁桥上研究了彼此的高速列车的空气动力学性能,跨越式跨越32μm。桥接和火车模型以1:30的几何比例建模,用于测试火车的空气动力,借助于XNJD-3风洞的设计的移动试验器。分析了风速,火车速度和偏航角对火车的空气动力系数的影响。比较静态和移动模型测试,以证明火车的运动是如何影响其空气动力学特征的影响。结果表明,通过彼此通过的列车引入的避难效果可能导致背风门的突然变化,这进一步受风和运行速度的影响。进行了与风力和火车速度的效果相关的详细分析进行了对空气动力学系数的详细分析。最终通过一系列提出的配合公式描述了空气动力学系数和横摆角之间的关系。

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