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Application of an Innovative System for Recovering and Storage of Cold Energy from Regasification of LNG when Feeding Heavy-Duty Truck Engines

机译:一种创新体系在喂养重型卡车发动机时液化液化液体恢复与储存冷能的应用

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Liquefied Natural Gas (LNG) is becoming progressively attractive as a sustainable alternative fuel for heavy-duty vehicles and its share is expected to grow in the near future. Compared to diesel fuel, indeed, it is more environmentally friendly and has a lower cost per kWh. On board heavy-duty vehicles, LNG is stored in cryogenic vessels and needs to be vaporized (re-gasified) before being injected into the engine, which makes available a significant amount of cold energy. In this paper, the authors present their patented innovative system aimed at recoverying the cryogenic energy from the LNG vaporization upstream the engine injection. The main feature of the proposal is the possibility of storing the cold energy and using it at a later moment. The different possible ways of cold energy recovery are illustrated. Among them, the potential improvement in engine performance is calculated and discussed. Referring to a commercial 240 kW truck engine, simulated by a home built code, the limit cycle was reconstructed by the manufacturer performance data. Then, an aftercooler downstream the intercooled compressor was applied to exploit the cold energy available from the LNG reasification. Due to the cold energy storage, the aftercooling can be performed when needed, being independent from the LNG use. The calculations showed the very interesting potential of engine power boosting into the range of 10 - 15% which, thanks to the storage, may be exploited when the traffic and road conditions make it more convenient. Also a modest reduction in specific energy consumption of the engine was calculated.
机译:液化天然气(LNG)作为重型车辆的可持续替代燃料,预计不久的将来会增长。实际上,与柴油燃料相比,它更加环保,每千瓦时的成本较低。在船上重型车辆,LNG储存在低温容器中,并且在注入发动机之前需要蒸发(重新气化),这使得具有大量的冷能量。本文提出了他们的专利创新系统,旨在从发动机注射的液化天然气蒸发恢复低温能量。该提案的主要特点是将冷能和在后面的时刻使用它的可能性。示出了冷能量回收的不同方式。其中,计算和讨论发动机性能的潜在改善。参考商业240千瓦卡车发动机,通过家庭建筑代码模拟,制造商性能数据重建了极限循环。然后,应用了中间电压压缩机下游的后冷器以利用液化天然气掩饰可获得的冷能。由于冷却储能,可以在需要时进行后冷,与LNG使用无关。该计算显示发动机功率升高到10-15%范围内的非常有趣的潜力,这是由于存储,在交通和道路条件使其更方便时,可能会被利用。计算发动机的特定能耗的适度降低。

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