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Primary Study of Aerodynamic Performance Evaluation and Optimization of the High-Speed Train

机译:高速列车空气动力学绩效评估及优化的初步研究

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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, home or abroad, has dealt with the flow field and aerodynamic performance of the train with the speed reaching 500 km per hour. This paper has studied in the flow field and the aerodynamic performance of the train at 500 km per hour with symmetrical and unsymmetrical nose shape. With the given two nose shape models, the authors composed four kinds train shapes and generated grids around the four train models. With the gathered and analyzed data, the paper comes to the conclusion that the unsymmetrical nose shape is better than the symmetrical one in aerodynamic performance. Comparing with the other three train shape, we found that the s-r composition best satisfies the practical demands.
机译:火车速度变得更快,更快,空气动力学阻力变为限制火车速度上升的基本因素之一。然而,没有公共文献,国内或国外,已经处理了火车的流场和空气动力学性能,速度达到每小时500公里。本文在流场中研究了流场和火车的空气动力学性能,每小时500公里,具有对称和不对称的鼻形。通过给定的两个鼻形型号,作者组成了四种火车形状和四个火车模型的产生网格。通过收集和分析的数据,本文得出结论,即不对称的鼻形优于空气动力学性能的对称性。与其他三个火车形状相比,我们发现S-R组成最能满足实际需求。

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