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Prediction of the production of nitrogen oxide (NOx) in turbojet engines

机译:预测涡轮喷气发动机中氮氧化物(NOx)的产生

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Gaseous nitrogen oxides (NO + NO2 = NOx) are known as atmospheric trace constituent. These gases remain a big concern despite the advances in low NO, emission technology because they play a critical role in regulating the oxidization capacity of the atmosphere according to Crutzen [1995. My life with O-3, NOx and other YZO(x) S; Nobel Lecture; Chemistry 1995; pp 195; December 8, 1995]. Aircraft emissions of nitrogen oxides (NO,) are regulated by the International Civil Aviation Organization. The prediction of NO, emission in turbojet engines by combining combustion operational data produced information showing correlation between the analytical and empirical results. There is close similarity between the calculated emission index and experimental data. The correlation shows improved accuracy when the 2124 experimental data from I I gas turbine engines are evaluated than a previous semi empirical correlation approach proposed by Pearce et al. [1993. The prediction of thermal NO, in gas turbine exhausts. Eleventh International Symposium on Air Breathing Engines, Tokyo, 1993, pp. 6-9]. The new method we propose predict the production of NO, with far more improved accuracy than previous methods. Since a turbojet engine works in an atmosphere where temperature, pressure and humidity change frequently, a correction factor is developed with standard atmospheric laws and some correlations taken from scientific literature [Swartwelder, M., 2000. Aerospace engineering 410 Term Project performance analysis, November 17, 2000, pp. 2-5; Reed, J.A. Java Gas Turbine Simulator Documentation. pp. 4-5]. The new correction factor is validated with experimental observations from 19 turbojet engines cruising at altitudes of 9 and 13 km given in the ICAO repertory [Middleton, D., 1992. Appendix K (FAA/SETA). Section 1: Boeing Method Two Indices, 1992, pp. 2-3]. This correction factor will enable the prediction of cruise NO, emissions of turbojet engines at cruising speeds. The ICAO database [Goehlich, R.A., 2000. Investigation into the applicability of pollutant emission models for computer aided preliminary aircraft design, Book number 175654, 4.2.2000, pp. 57-79] can now be completed using the approach we propose to complete the whole mission flight NOx emissions. (c) 2006 Elsevier Ltd. All rights reserved.
机译:气态氮氧化物(NO + NO2 = NOx)被称为大气痕量成分。尽管在低NO排放技术方面取得了进步,但这些气体仍然是一个令人担忧的问题,因为根据Crutzen [1995年],它们在调节大气的氧化能力中起着至关重要的作用。 O-3,NOx和其他YZO(x)S的生活;诺贝尔讲座;化学1995; 195页; 1995年12月8日]。飞机上的氮氧化物(NO)排放受国际民用航空组织(International Civil Aviation Organisation)监管。通过结合燃烧运行数据对涡轮喷气发动机NO排放进行预测,可以得出显示分析结果与经验结果之间相关性的信息。计算出的排放指数和实验数据之间有相似的地方。当评估来自I I燃气涡轮发动机的2124个实验数据时,与Pearce等人先前提出的半经验相关方法相比,该相关性显示出更高的准确性。 [1993。燃气轮机排气中热NO的预测。第十一届国际空气呼吸机专题讨论会,东京,1993年,第6-9页]。我们提出的新方法可以预测NO的产生,其准确性要比以前的方法高得多。由于涡轮喷气发动机在温度,压力和湿度经常变化的大气中工作,因此会根据标准大气定律和科学文献中的一些相关性得出校正系数[Swartwelder,M.,2000。航空航天工程410 Term项目性能分析,11月2000年17月,第2-5页;里德(Red) Java Gas Turbine Simulator文档。 pp。4-5]。新的修正系数通过19架涡轮喷气发动机在9和13 km的高度巡航的实验观察结果得到验证,这是国际民航组织的报告[Middleton,D.,1992.附录K(FAA / SETA)。第1节:波音方法两个指数,1992年,第2-3页]。该校正因子将能够预测巡航速度,巡航速度下涡轮喷气发动机的排放量。现在可以使用我们建议完成的方法来完成ICAO数据库[Goehlich,RA,2000年。《污染物排放模型在计算机辅助初步飞机设计中的适用性调查》,书号175654,4.2.2000,第57-79页。整个任务飞行中的NOx排放量。 (c)2006 Elsevier Ltd.保留所有权利。

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