Particularities of the formation of the air masses structure in the tunnel during the train movement

BRIСS Transport Pub Date : 2023-06-28 DOI:10.46684/2023.2.6
D. Karimov, Y. Vatulin, A. Vorobev, N. Bogdanov
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Abstract

The effect of aerodynamic factors on the rolling stock and railway infrastructure has been analysed. The formation of air mass structure in tunnel structures during the movement of high-speed rolling stock has been investigated. The processes of aeroelastic interaction of rolling stock with tunnel portal structures are analysed by means of numerical simulation. The description of mathematical models and the ways of their three-dimensional realization in the Solid Works Flow Simulation software complex are presented. Methods of finite elements and volumes for the solution of the set tasks are used. The results of the numerical research of velocity fields near the tunnel portal area obtained with the help of the developed mathematical models for the cases of entry and exit of the rolling-stock into the tunnel are given. The complex structure of air masses formation in the gap between the train body and tunnel lining which leads to increased resistance to the train movement in the tunnel is revealed. The patterns in the changes of pressure dynamics on the surface of the head fairing when the train enters the tunnel are found. The fact of negative effect of high and low pressure zones, as well as their abrupt difference, on the locomotive crew and passengers has been established.
列车运行过程中隧道内气团结构形成的特殊性
分析了气动因素对机车车辆和铁路基础设施的影响。本文研究了高速列车运行过程中隧道结构中气团结构的形成。采用数值模拟的方法,分析了铁路车辆与隧道门洞结构的气弹性相互作用过程。介绍了固体工程流程仿真软件complex中数学模型的描述及其三维实现方法。采用有限元法和体积法求解设定的任务。文中给出了利用所建立的车辆进入和退出隧道的数学模型对隧道入口区附近速度场进行数值研究的结果。揭示了列车本体与隧道衬砌间隙内气团形成的复杂结构,导致列车在隧道内运动阻力增大。发现了列车进入隧道时车头整流罩表面压力动态变化规律。高低压区和低压区对机车乘务人员和乘客的负面影响,以及它们的突然差异,已经被证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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