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Analysis of the action of aerodynamic forces in case a passenger train

机译:在旅客列车的情况下,空气动力的作用分析

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The growing need for mobility, cumulative with the technological development of the last decades, represents the elements that led to achieving and increasing travel speeds for the rail transport system. Currently, for classical trains formed from locomotives and wagons, the maximum travel speeds admitted into circulation are between 200 km/h and 250 km/h. Regarding the trains consisting of the multiple high-speed electric frames, they have values of the maximum permissible speeds in the range 300 km/h and 450 km/h. For obtaining such sizes of the travel speeds, it would not have been possible without having previously studied the aerodynamic phenomena much more closely which occur during the movement of vehicles. The present paper is in the same order with the studies they are pursuing analyzing the influence of aerodynamic forces acting on a train. In this regard, we considered the case of a classic passenger train made up of a motor vehicle (locomotive) and many towed vehicles (wagons). To be able to observe, how aerodynamic forces acting and what are their values, will be used a simulation program on the flow of air. The importance of determining the values and distribution of aerodynamic forces stems from the fact that they directly affect the energy consumed while traveling and in some cases even the vehicle safety.
机译:越来越多的流动性,累积在过去几十年的技术发展中,代表了导致实现和增加铁路运输系统的旅行速度的要素。目前,对于由机车和货车形成的古典列车,入境循环的最大行程速度在200 km / h和250 km / h之间。关于由多个高速电框架组成的列车,它们具有300km / h范围内的最大允许速度的值和450 km / h。为了获得行驶速度的这种尺寸,在车辆运动运动期间发生的更紧密地发生了更紧密地进行空气动力学现象,不可能实现这种尺寸。本文与研究的顺序相同,他们正在追求分析在火车上作用的空气动力的影响。在这方面,我们考虑了由机动车辆(机车)和许多牵引车(货车)组成的经典客车的情况。为了能够观察,空气动力是如何行动和他们的价值观,将在空气流中使用模拟程序。确定空气动力力的价值和分布的重要性源于它们直接影响行驶时消耗的能量,并且在某些情况下甚至是车辆安全性。

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