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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Variation in cooling load of a moving air-conditioned train compartment under the effects of ambient conditions and body thermal storage
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Variation in cooling load of a moving air-conditioned train compartment under the effects of ambient conditions and body thermal storage

机译:在环境条件和车身热量存储的影响下,正在移动的空调列车车厢的冷却负荷变化

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摘要

A mathematic model was built to simulate dynamic cooling load of an air-conditioned train compartment. Using the model, the dynamic cooling loads of YZ_(25G) train compartment were investigated under the average ambient conditions during the hottest month July, when it travels in three main railway lines of China. The effects of ambient conditions and body thermal storage on the variation in the cooling load were discussed. The results indicated that the maximum total cooling loads were between 40.4 and 43.8 kW, and the minimum between 4.5 and 33.7 kW. And significant differences in dynamic cooling load of train compartment were found between different regions (north/south and west/east) and between different periods of time (morningight/afternoon). Compared with the dynamic cooling load, the steady cooling load calculated according to the national standard (TB1951-87) had a larger value. This means TB1951-87 is likely to overestimate the actual cooling load of a train, which can lead to a waste of energy. The calculation of dynamic cooling load can provide an adequate basis to determine the cooling load for trains traveling in different regions and periods of time.
机译:建立了一个数学模型来模拟空调列车车厢的动态冷却负荷。使用该模型,研究了YZ_(25G)车厢在7月最热月份(在中国的三条主要铁路线上行驶)在平均环境条件下的动态冷却负荷。讨论了环境条件和人体蓄热对冷却负荷变化的影响。结果表明,最大总冷却负荷在40.4至43.8 kW之间,最小在4.5至33.7 kW之间。在不同区域(南北/南北和西/东)之间以及不同时段(早晨/晚上/下午)之间,火车车厢的动态冷却负荷存在显着差异。与动态冷却负荷相比,根据国家标准(TB1951-87)计算出的稳态冷却负荷具有较大的值。这意味着TB1951-87可能会高估火车的实际冷却负荷,这可能导致能源浪费。动态冷却负荷的计算可以为确定在不同区域和时间段内行驶的列车的冷却负荷提供足够的基础。

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