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首页> 外文期刊>International journal of hydrogen energy >Exergetic sustainability improvement potentials of a hydrogen fuelled turbofan engine UAV by heating its fuel with exhaust gasses
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Exergetic sustainability improvement potentials of a hydrogen fuelled turbofan engine UAV by heating its fuel with exhaust gasses

机译:通过用废气加热其燃料的氢燃料涡扇发动机无人机的可持续性改善潜力

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Exergetic sustainability parameters such as, exergy efficiency, waste exergy ratio, environmental effect factor and exergetic sustainability index were investigated for an UAV having a turbofan engine for the case its hydrogen fuel is heated by the exhaust gasses. Assessments include all the flight phases of the UAV taking place in the standard atmosphere with 60% relative humidity from 0 to 16 km altitudes. Physical hydrogen storages conditions are taken as some combinations of 20 K, 35 K, 80 K, 125 K and ambient temperatures and 1 bar, 25 bar, 50 bar, 100 bar, 200 bar, 350 bar and 700 bar pressures, including all the storage capacities from 0% to 100% by weight. Hydrogen is assumed to be delivered to the combustion chamber at ambient temperatures and just above the CC inlet pressures for fuel flow calculations. Maximum cumulative fuel saving potential was calculated as similar to 11% with liquid storage. Maximum instant exergetic efficiencies ranging similar to 0.3508 to similar to 0.3671, depending on the type of storage method, were obtained at the beginning of the cruise phase. Environmental effect factor and exergetic sustainability indexes present very close values having best cumulative values of 0.98 and 1.035 respectively for almost all. (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对于具有涡轮风扇发动机的无人机,在氢燃料被废气加热的情况下,研究了诸如火用效率,废物火用率,环境影响因子和火用可持续性指数等火用可持续性参数。评估包括无人飞行器的所有飞行阶段,该飞行阶段发生在标准大气中,相对湿度从0到16 km高度为60%。物理氢存储条件是20 K,35 K,80 K,125 K和环境温度以及1 bar,25 bar,50 bar,100 bar,200 bar,350 bar和700 bar压力的一些组合,包括所有存储容量为0%至100%重量。假定氢气在环境温度下刚好高于CC进口压力的情况下输送到燃烧室,以进行燃料流量计算。计算出的最大累计节油潜力约为液体存储时的11%。在巡航阶段开始时,根据存储方法的类型,获得了类似于0.3508到0.3671的最大瞬时能量效率。环境影响因子和充满活力的可持续性指数呈现非常接近的值,几乎所有值的最佳累积值分别为0.98和1.035。 (C)2015 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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