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The effect of euro diesel-hydrogen dual fuel combustion on performance and environmental-economic indicators in a small UAV turbojet engine

机译:欧洲柴油 - 氢双燃料燃烧对小无人机涡轮喷波特发动机性能和环境经济指标的影响

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This paper aims to examine the effect on performance and environmental-economic indicators of euro dieselhydrogen dual-fuel combustion in a small turbojet engine suitable for the propulsion system of unmanned air vehicles (UAVs). For this purpose, experimental studies were conducted at seven different engine speeds, in the range of 40,000-100,000 rpm, of a JetCat P80-SE type small turbojet engine with a single-stage radial compressor and an axial turbine on the same shaft. The hydrogen flow rate for each engine speed is changed in 10 l.min(-1) increments up to 120 l.min(-1), and the euro diesel fuel energy is substituted with hydrogen, resulting in different hydrogen energy fractions (HEFs). The results of the paper show that the maximum reduction in SEC is 9.6% with 40% HEF at 40,000 rpm. In addition, with 15% HEF provided for each engine speed: while the reduction in specific energy consumption (SEC) at 40,000 rpm is 6.5%, at 100,000 rpm the reduction in SEC is 1.2%; the decrease in CO emissions at 40,000 rpm is 33%, while at 100,000 rpm the decrease in CO is 54%; in the range of 40,000-100,000 rpm, the decrease in CO2 emissions changes the range of 16-18%; while the increase in HC emission is 10% at 70,000 rpm, it increases up to 50% at 100,000 rpm; the increase in NOx emissions appearing after 80,000 rpm, is only around 1 ppm; and despite the increase in HC and NOx emissions by the increase of HEFs, the decrease in CO2 and CO emissions leds to a remarkable improvement in environmentaleconomic indicators.
机译:本文旨在研究适用于无人驾驶系统推进系统(无人机)的小型涡轮喷气发线发动机中欧洲柴油双燃料燃烧的性能和环境经济指标的影响。为此目的,实验研究在七种不同的发动机速度下进行,在40,000-100,000 rpm的范围内,在同一轴上的单级径向压缩机和轴向涡轮机的纽约涡轮机发动机。每个发动机速度的氢气流量在10L.Min(-1)增量中改变为120L.min(-1),并且欧洲柴油燃料能量被氢气取代,导致不同的氢能量分数(HEFS )。本文的结果表明,SEC的最大减少为9.6%,40%HEF为40,000 rpm。此外,为每个发动机速度提供了15%的HEF:虽然40,000 rpm的特定能耗(秒)的减少为6.5%,但秒的减少为1.2%; 40,000 rpm的CO排放减少为33%,而达格100,000rpm含量减少54%;在40,000-100,000 rpm的范围内,二氧化碳排放的减少变化为16-18%;虽然HC排放的增加为70,000 rpm,但它增加了100,000 rpm的50%增加了50%; 80,000 rpm后出现的NOx排放的增加仅为1ppm;尽管HEFS的增加,但HEF的增加,CO2和CO排放的减少导致了环境经济指标的显着改善。

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