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Effects of simplifying train bogies on surrounding flow and aerodynamic forces

机译:简化训练术对周围流动和空气动力力的影响

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摘要

In this study, the numerical solution of a high-speed train with several simplified bogies is investigated. The timeaveraged flow field around the train, the surface pressure, and the aerodynamic forces on the train are discussed. The results reveal that a simpler bogie structure can achieve a higher underbody flow velocity and change fluctuations beneath the train owing to the resulting turbulence level. The simplification of bogies has a smaller effect on the side slipstream velocity and pressure compare to which in underbody, and at 3m away from the centre of the track, the simplified bogie with wheels and a simple side frame used in this study obtains similar results to cases wherein more complex bogies are used. The surface pressure under the train is affected by bogie simplification, especially in the bogie cabin end area, resulting in aerodynamic drag and lift variations. If underbody flow or aerodynamic drag and lift forces are the focus of study, then the geometry of the centre region of the bogie, i. e. its main structures features, should be maintained in simplified models.
机译:在这项研究中,研究了具有几种简化缩影的高速列车的数值解决方案。讨论了火车周围的定期流场,表面压力和火车上的空气动力。结果表明,由于所产生的湍流水平,更简单的转向架结构可以实现更高的底层流速并改变火车下方的波动。偏移的简化对侧面滑翔流速度和压力的简化具有较小的效果,并且在距离轨道中心3米处,带有轮子的简化转向架和本研究中使用的简单侧框架获得了类似的结果使用更复杂的缩斗的情况。火车下的表面压力受到转向架简化的影响,尤其是在转向架舱端区域中,导致空气动力学阻力和提升变化。如果在另一个流量或空气动力学阻力和升力力是研究的焦点,那么距离转向架的中心区域的几何形状,i。 e。其主要结构特征应保持在简化模型中。

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