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Shape Optimization of High-Speed Train with the Speed of 500kph

机译:500kph高速列车的形状优化

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With the train speed becoming faster and faster, the aerodynamic drag turns to be one of the essential factor that restricts the train speed ascent. However, no public literature, abroad or abroad, has dealt with the flow field and aerodynamic performance of the train with the speed reaching 500km per hour. In this paper, an optimization study is carried out to reduce the aerodynamic drag of the high speed train (HST). First of all, a grid-based method is presented to parameterize the head shape of the HST, key variables are obtained by sensitivity analysis. Next, a response surface is constructed based on computational fluid dynamics (CFD) analysis to approximate the relationship of the drag and design variables at 500KPH. Finally, the genetic algorithm is used to optimize the head shape of the HST.
机译:随着火车速度越来越快,空气阻力成为限制火车速度上升的重要因素之一。但是,无论是国外还是国外,都没有关于速度达到每小时500公里的火车的流场和空气动力学性能的研究。本文进行了优化研究,以减少高速列车(HST)的空气阻力。首先,提出了一种基于网格的方法来参数化HST的头部形状,通过敏感度分析获得关键变量。接下来,基于计算流体动力学(CFD)分析构造响应面,以近似500KPH时阻力与设计变量之间的关系。最后,使用遗传算法来优化HST的头部形状。

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