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Experimental study on a self-refrigerated auto air conditioning system based on LNG-fuelled trucks

机译:基于LNG燃料卡车的自冷藏汽车空调系统的试验研究

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The authors proposed and investigated a novel self-refrigerated auto air conditioning system for Liquefied Natural Gas (LNG) fuelled trucks. The cold energy in cryogenic fuel, LNG, was drawn and reused to cool the driver's cab. After theoretical analyzing the available cooling capacity and thermal performance of the new system, the refrigerating performance including cold load, temperature characteristics of the heat exchangers were investigated experimentally under different operating conditions. The results showed that (1) the recovered cooling capacity could cover the heat load of driver's cab (4.1 kW) when LNG consumption rate is larger than 20 kg/h; the maximum cooling capacity is up to 8.746 kW which is about twice of the cooling demand; (2) in order to supplying adequate cooling capacity for the driver's cab, the shaft power of the equipped engine should be not less than 105 kW which accounts for 37.5% of its maximum power capacity; (3) The heat exchangers of the proposed system operated properly, and the desired cooling recovery performance was achieved successfully. However, the LNG vaporizer should be designed more carefully and accurately. The study indicates that the self-refrigerated air conditioning system for LNG-fuelled trucks is feasible and the cooling capacity storage methods must be employed to adjust the mismatch of the cold supply and demand caused by the fluctuation of the LNG consumption rate.
机译:作者提出并调查了一种用于液化天然气(LNG)燃料卡车的新型自冷藏汽车空调系统。绘制了低温燃料,LNG的冷能,并重复使用以冷却驾驶室。在理论分析新系统的可用冷却能力和热性能之后,在不同的操作条件下实验研究了包括冷载荷,热交换器温度特性的制冷性能。结果表明,当LNG消耗速率大于20kg / h时,恢复的冷却能力可以覆盖驾驶室(4.1kW)的热负荷;最大冷却能力高达8.746千瓦,大约是冷却需求的两倍; (2)为了为驾驶室提供足够的冷却能力,装备发动机的轴功率应不小于105千瓦,占其最大功率容量的37.5%; (3)所提出的系统的热交换器正常操作,成功实现了所需的冷却回收性能。但是,LNG蒸发器应更加谨慎和准确地设计。该研究表明,LNG燃料卡车的自冷藏空调系统是可行的,并且必须采用冷却能力存储方法来调节由LNG消耗率的波动引起的冷供水和需求的不匹配。

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