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NUMERICAL SIMULATION OF POLLUTANT EMISSION OF A TURBOJET ENGINE WITH WATER INJECTION

机译:喷水涡轮发动机污染物排放的数值模拟。

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Numerical simulation of a turbojet engine with water injection from the compressor inlet has been executed to evaluate the effect of wet compression on the pollutant emission in this paper. Water injection technique has shown the advantage of reducing the compression work and increasing the power output, and can also reduce the gas temperature in the combustion chamber and turbine which can help to reduce the thermal fatigue of the hot parts and extend their service life. Previous studies have indicated that there is a great relationship between pollutant emission of NOx and the combustion temperature, so the decrease of combustion temperature can reduce the amount of pollutant production of aircrafts especially near the airport because of the takeoff and landing of the aircrafts. And this potential of meeting the increasingly stringent pollutant emission target of water injection technique has aroused great interest of the world major engine manufacturers and research institutions. Compared with cases of no water injection, the results of this study show that the inlet temperature of combustion chamber drops obviously because of water injection, the average NO concentration in combustion chamber decreases greatly, but the concentration of CO increases significantly. Analysis of the results shows that based on fuel consumption of per unit mass the relation between the NO production in combustion chamber and the mass water evaporation varies according to the exponential law and CO production in water injection cases is similar to the cases without water injection.
机译:本文对涡轮喷气发动机从压缩机进气口注入水的数值模拟进行了评估,以评估湿压缩对污染物排放的影响。注水技术显示出减少压缩功和增加功率输出的优势,并且还可以降低燃烧室和涡轮机中的气体温度,这有助于减少热部件的热疲劳并延长其使用寿命。先前的研究表明,NOx的污染物排放与燃烧温度之间存在很大的关系,因此,由于飞机的起飞和降落,降低燃烧温度可以减少飞机的污染物产生量,尤其是在机场附近。满足注水技术日益严格的污染物排放目标的潜力引起了世界主要发动机制造商和研究机构的极大兴趣。与不注水的情况相比,研究结果表明,由于注水,燃烧室的入口温度明显下降,燃烧室的平均NO浓度大大降低,而CO的浓度显着增加。结果分析表明,基于单位质量的燃料消耗,燃烧室中NO的产生与水的质量蒸发之间的关系根据指数规律而变化,并且注水情况下的CO产生与不注水情况下的相似。

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