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Impact analysis of pressure sensor size on measurement of the high-speed train aerodynamic performance test

机译:压力传感器尺寸对高速列车空气动力学性能测试的影响分析

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The train line test is the a direct method to research on the aerodynamic performance of high-speed train, and The micro pressure sensor is usually used in test process. However, the sensor size will influence the flow field of the measuring point, leading to the measuring error. To solve the long-neglected problem, the paper establish the train aerodynamic model and the train-sensor aerodynamic model, then use the finite volume method to solve the equation of the turbulence model. the pressure value of tow measuring points can be calculated, and the functional relationship between speed and measuring error which is caused by the sensor size is established. The results show that the absolute error value of measuring point along the speed is quadratic when the train runs in the open air, and the maximum absolute error is proportional to the square of speed when it runs through a tunnel. The conclusion of the study could be used to correct the measuring data on real lines, therefore providing more accurate measuring data to research the high-speed train's aerodynamic performance.
机译:火车线路测试是研究高速火车空气动力性能的直接方法,测试过程中通常使用微压力传感器。但是,传感器的尺寸会影响测量点的流场,从而导致测量误差。为了解决长期以来被忽视的问题,本文建立了列车空气动力学模型和列车传感器空气动力学模型,然后采用有限体积法求解了湍流模型方程。可以计算出两个测量点的压力值,并建立了由传感器尺寸引起的速度与测量误差之间的函数关系。结果表明,列车在空中行驶时,沿速度的测量点的绝对误差值是平方的,最大绝对误差与通过隧道的速度的平方成正比。研究结论可用于校正实际线路上的测量数据,从而提供更准确的测量数据来研究高速列车的空气动力学性能。

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