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首页> 外文期刊>Journal of Applied Mathematics and Physics >Numerical Analysis of Different Nose Shapes on the Train Aerodynamic Performance at a Windbreak Transition under Crosswinds
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Numerical Analysis of Different Nose Shapes on the Train Aerodynamic Performance at a Windbreak Transition under Crosswinds

机译:在交叉风中的防风机风气动力学性能下不同鼻子形状的数值分析

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Based on the Unsteady Reynolds-Averaged Navier-Stokes (URANS) method, this paper studied the effect of the nose shape on the aerodynamic performance when the high-speed train subjected to a windbreak transition under crosswinds. The windbreak transition generated by the irregular terrain from the flat ground to the cutting. The results showed that with the height of the front window increased from Z ? 2 to Z + 2 (the dimensionless height), the side force coefficient C _(y)~(?) and rolling moment co-efficient C _( mx? )increased by 26% and 27% for the head car, respectively. The flow structures around the lower front window were smoother than that around the higher front window. The flow structures in the higher front window resulted in more considerable positive pressure on the windward side (WWS) and top of the nose region.
机译:基于不稳定的Reynolds viel-passvaged Navier-Stokes(Urans)方法,本文研究了鼻形造型对空气动力学性能的影响,当横向下的防风机过渡时。防风触发由不规则地形产生从平面到切割。结果表明,前窗的高度从z增加? 2至Z + 2(无量纲高度),侧力系数C _(Y)〜(Δ)和滚动力矩共同高效的C _(MXα)分别增加了头部汽车的26%和27%。下部前窗周围的流动结构比在较高前窗口周围更平滑。较高前窗口中的流动结构导致鼻部侧面(WWS)和鼻部区域的顶部具有更大的正压。

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