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Moving Model Test of High-Speed Train Aerodynamic Drag Based on Stagnation Pressure Measurements

机译:基于停滞压力测量的高速列车气动阻力运动模型试验

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摘要

A moving model test method based on stagnation pressure measurements is proposed to measure the train aerodynamic drag coefficient. Because the front tip of a high-speed train has a high pressure area and because a stagnation point occurs in the center of this region, the pressure of the stagnation point is equal to the dynamic pressure of the sensor tube based on the obtained train velocity. The first derivation of the train velocity is taken to calculate the acceleration of the train model ejected by the moving model system without additional power. According to Newton’s second law, the aerodynamic drag coefficient can be resolved through many tests at different train speeds selected within a relatively narrow range. Comparisons are conducted with wind tunnel tests and numerical simulations, and good agreement is obtained, with differences of less than 6.1%. Therefore, the moving model test method proposed in this paper is feasible and reliable.
机译:提出了一种基于停滞压力测量的运动模型测试方法,以测量列车的空气阻力系数。因为高速列车的前端具有较高的压力区域,并且由于在该区域的中心出现停滞点,所以基于所获得的列车速度,停滞点的压力等于传感器管的动压力。 。列车速度的一阶导数用于计算运动模型系统在没有附加功率的情况下弹出的列车模型的加速度。根据牛顿第二定律,可以通过在相对较窄范围内选择的不同火车速度下的许多测试来解决空气阻力系数。通过风洞测试和数值模拟进行了比较,并获得了很好的一致性,差异小于6.1%。因此,本文提出的运动模型测试方法是可行和可靠的。

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