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Testing and Validation of Long Trains Under High Flow and Gradient Conditions

机译:高流量和梯度条件下长列车的测试和验证

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The need to extend train lengths has been a primary business target of the railway industry, due to its obvious benefits. However, winter train operating conditions, excessive in-train slack action, deterioration of air brake signal propagation and the added stress on infrastructure and equipment has naturally kept the average train lengths at bay. The introduction of advanced equipment, new concepts and strategies have now enabled Canadian Pacific to change this mindset. Long Train make up is now very possible, taking into account the Distributed Power configuration. Making a very long train resemble a series of short trains coupled together, each with its own locomotives, synchronously connected to the Lead unit's commands, makes such trains very safe and efficient. Extensive Field Testing and Train Simulation work done over the last two years at CP has shown that with the use of Multiple Remote Locomotive set-up, it is in fact very possible to safely contemplate extending the limits of today's maximum allowed 60 CFM of total train air flow, into uncharted territory, possibly approaching a total of 90 CFM. CP has pursued to implement on a permanent basis, operating instructions that would permit Multiple Distributed Power trains to depart from a train brake test location with combined air flow of up to 90 CFM, provided the flow at each DP locomotive consist is not greater than 60 CFM and train length sections between locomotives are not exceeded. This paper investigates the operation of Distributed Power trains at higher levels of air flow and, through detail field testing and evaluation techniques, substantiates the validity of extending the safety limits of train leakage and gradient for such trains.
机译:由于其明显的好处,延长火车长度的需求已成为铁路行业的主要业务目标。但是,冬季火车的运行条件,火车内过度的松弛动作,空气制动信号传播的恶化以及对基础设施和设备的额外压力自然使平均火车长度处于停滞状态。如今,先进设备,新概念和新策略的引入使加拿大太平洋改变了这种思维方式。考虑到分布式电源配置,现在很可能进行长途补编。制造一列很长的火车就像一系列短火车耦合在一起,每列短火车都有自己的机车,并同步连接到牵头部队的命令,这使得此类火车非常安全有效。在CP的过去两年中进行的广泛的现场测试和列车模拟工作表明,通过使用多个远程机车设置,实际上非常有可能安全地考虑扩展今天的总列车最大允许60 CFM的限制空气流入未知领域,可能总计达到90 CFM。 CP致力于永久性地执行操作说明,该操作说明将允许多台分布式动力火车从列车制动测试位置出发,并结合最高90 CFM的空气流量,但前提是每个DP机车编组的流量不大于60不超过机车之间的CFM和列车长度部分。本文研究了分布式动力传动系统在更高空气流量下的运行情况,并通过详细的现场测试和评估技术,证实了扩展此类火车的泄漏和坡度安全极限的有效性。

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