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Description of the flow equations around a high speed train inside a tunnel

机译:隧道内高速列车周围的流动方程的描述

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AbstractThe present article focuses on the analysis of the equations that describe the flow when a high speed train enters a tunnel. The disparity in time and length scales allows the problem to be decomposed in different regions and regimes when matched appropriately produce the full description of the flow. The aforementioned regions are the flow upstream and downstream of the train, the areas near the nose and tail of the train, and the flow in the gap between the train and the tunnel. The regimes are analysed based on the flow regions, time scales, length scales and velocity scales. All those regions and regimes are conveniently formulated and the flow key scales are analysed and described, which allows for a simplified and robust formulation. The aforementioned formulation is implemented in a computational program that needs some external coefficients, namely the pressure signature of the train, that should be obtained only once and it could be derived from experimental data or CFD. Comparison with experimental and numerical data from other references are provided. Finally, the thermal problem is briefly introduced and some comments on the tunnel cooling problem are considered.Highlights?Order of magni
机译:<![CDATA [ 抽象 本文专注于分析高速列车进入隧道时描述流量的方程式。时间和长度尺度的差异允许在适当地产生流动的完整描述时在不同区域和制度中分解问题。上述区域是火车上游和下游的流动,火车鼻子和尾部附近的区域,以及火车和隧道之间的间隙中的流动。基于流量区域,时间尺度,长度尺度和速度尺度分析该制度。所有这些区域和制度都是方便地配制的,分析和描述流程键尺度,其允许简化和稳健的配方。上述制剂在计算程序中实施,该计算程序需要一些外部系数,即列车的压力签名,这只应该获得一次,并且它可以从实验数据或CFD获得。提供了与来自其他参考的实验和数值数据的比较。最后,简要介绍了热问题,并考虑了对隧道冷却问题的一些评论。 突出显示 < ce:para id =“p0010”查看=“全部”> Magni的顺序

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