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EXPERIMENTAL INVESTIGATION OF INFRARED SIGNAL CHARCATERISTICS IN A MICRO TURBOJET ENGINE

机译:微型涡轮喷气发线发动机红外信号送风机的实验研究

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Infrared signal measurements from a micro turbojet engine are conducted to understand the characteristics of the engine performance and the infrared signal by varying the exhaust nozzle configuration. A cone type nozzle and five rectangle type nozzles whose aspect ratios vary from one to five are used for this experimental work. As a result, it is confirmed that the thrust and the fuel consumption rate of the engine do not change greatly by varying the exhaust nozzle shape. In the case of the aspect ratio of 5, the specific fuel consumption of the engine is increased by about 3% compared to the reference cone nozzle, but the infrared signal can be reduced by up to 14%. As a result of measuring the temperature distribution of the plume gas, the correlation of infrared signal with plume gas temperature distribution can be understood. In the case of cone shape, the distribution of plume gas formed to circular shape, and the high temperature core region of plume gas continued to develop farther to the downstream. However the temperature distribution was maintained in the rectangular shape as the aspect ratio increased, and the average temperature decreased sharply. As the aspect ratio increases, the plume spreads more widely.
机译:通过改变排气喷嘴配置,对微涡轮喷波特发动机的红外信号测量来了解发动机性能和红外信号的特性。锥形型喷嘴和五个矩形型喷嘴,其纵向比从一到五个不同的矩比用于该实验工作。结果,通过改变排气喷嘴形状,确认发动机的推力和燃料消耗率不会大大变化。在纵横比为5的情况下,与参考锥形喷嘴相比,发动机的特定燃料消耗量增加了约3%,但红外信号可以减少高达14%。作为测量羽流气体的温度分布的结果,可以理解红外信号与羽流气体温度分布的相关性。在锥形的情况下,形成为圆形的羽流气体的分布和羽流气体的高温芯区域继续发展到下游。然而,随着纵横比增加,温度分布保持在矩形形状,平均温度急剧下降。随着纵横比的增加,羽毛更广泛地扩展。

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