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Ballast flight under high-speed trains: Wind tunnel full-scale experimental tests

机译:高速列车下的压载飞行:风洞全面实验测试

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摘要

The flying ballast phenomenon has become an important problem, in the last years, because of the development of high speed trains and the consequent increase of the speed up to 350 km/h. The problem is very complex since it is related to both railway infrastructure and train characteristics and since it involves mechanical and aerodynamic effects. The results of an experimental study carried out on the Italian high-speed railway and on a 1:1 real stretch of the railways in wind tunnel are presented in the paper. The study was aimed to analyze the effects of the height of the ballast level, the stone shape in the upper layer of the ballast and the compaction of the ballast bed on the problem. To this purpose a specific wind tunnel test rig was designed to reproduce in the wind tunnel a flow with the same average characteristics of the one measured on the real line, especially in the region close to the ballast and sleepers. Finally, starting from the results of these tests, possible countermeasures to ballast lifting on-set are proposed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的几年中,由于高速列车的发展以及随之而来的时速高达350 km / h的增加,飞行压载现象已经成为一个重要的问题。这个问题非常复杂,因为它与铁路基础设施和火车特性都有关,并且涉及机械和空气动力作用。本文介绍了在意大利高速铁路上以及在风洞中以1:1实际延伸的铁路上进行的实验研究的结果。该研究旨在分析压载物高度,压载物上层的石头形状以及压载物床的压实对问题的影响。为此目的,设计了一种特殊的风洞试验台,以在风洞中重现与实线上测得的平均特性相同的平均流量,特别是在靠近压载物和轨枕的区域。最后,从这些测试的结果出发,提出了起重镇流器起步时可能采取的对策。 (C)2015 Elsevier Ltd.保留所有权利。

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