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Cooling of Underground Railways

机译:地下铁路的冷却

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摘要

Underground railway systems can generate enough heat from their operations to raise tunnel and station temperatures substantially. This may result in passenger discomfort in warm weather conditions if the underground railway environment is not cooled. Ventilating an underground railway environment in which there is heavy traffic of electrically propelled rapid transit trains differ from those normally encountered in conventional air conditioning. The heat generated by the train motors and electric lighting, together with body heat from passengers, is so great that excessive temperatures would prevail in summer unless a high volume of air is supplied. This in some older underground railway systems is difficult to achieve. The installation of in car air-conditioning units adds another major heat release source in the tunnel, which must be ejected to the ventilation air.rnThe paper investigates both the heat load in a generic underground railway environment using a purposely-developed mathematical model and the potential methods of delivering cooling to such an environment. A theoretical analysis with the model has shown that the major contributor of heat to the tunnel is from the braking mechanism and that for the train carriage is from the passengers.rnThe model has also shown that additional cooling to the existing rolling stock may be provided by cooling the tunnels within which they operate. The methods of cooling are evaluated from energy and comfort perspective and areas for further work that are required are described.
机译:地下铁路系统在运行过程中会产生足够的热量,从而大大提高隧道和车站的温度。如果地下铁路环境未冷却,则在温暖的天气条件下可能导致乘客不适。在地下铁路环境中通风的情况下,电动快速运输列车的交通流量很大,这与常规空调通常遇到的情况不同。火车电动机和电灯产生的热量以及乘客的体热非常大,以至于夏天除非提供大量的空气,否则温度过高。这在一些较旧的地下铁路系统中很难实现。车载空调装置的安装增加了隧道中的另一个主要热量释放源,必须将其排放到通风空气中。rn本文使用专门开发的数学模型研究了一般地下铁路环境中的热负荷。向此类环境提供冷却的潜在方法。该模型的理论分析表明,隧道的热量主要来自制动机构,火车车厢的热量主要来自乘客。rn该模型还表明,可以通过以下方式为现有机车车辆提供额外的冷却:冷却其运行所在的隧道。从能量和舒适性的角度评估了冷却方法,并描述了需要进一步工作的领域。

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