引用本文:
【打印本页】   【HTML】 【下载PDF全文】   查看/发表评论  【EndNote】   【RefMan】   【BibTex】
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 1963次   下载 759 本文二维码信息
码上扫一扫!
分享到: 微信 更多
涡扇发动机二元喷管的红外光谱辐射特性实验
罗明东1, 吉洪湖2, 黄伟3, 蔡旭4, 高潮5
1.南京航空航天大学能源与动力学院 江苏南京210016;2.南京航空航天大学能源与动力学院 江苏南京210017;3.南京航空航天大学能源与动力学院 江苏南京210018;4.南京航空航天大学能源与动力学院 江苏南京210019;5.南京航空航天大学能源与动力学院 江苏南京210020
摘要:
为了获得涡扇发动机二元喷管的红外光谱辐射特性,分别测量了喷口面积相等而宽高比分别为1,4,8,12和16的二元喷管在3~5μm波段的红外光谱辐射特性,并与轴对称喷管进行了对比。喷管中的气流由主流燃气和次流空气组成,用以模拟涡扇发动机的喷管。结果表明,采用宽高比大于或等于4的二元喷管在绝大部分探测方向能够有效降低喷管的红外光谱辐射强度,但是在宽高比大于8以后二元喷管的红外光谱辐射强度不再随宽高比的增加而明显降低。
关键词:  涡轮风扇发动机  二元喷管+  红外光谱辐射
DOI:
分类号:V235.13
基金项目:
Experiment on spectral infrared radiant characteristics of two-dimensional nozzles of turbofan engine
LUO Ming-dong1, JI Hong-hu2, HUANG Wei3, CAI Xu4, GAO Chao5
1.Inst.of Energy and Power,Nanjing Univ.of Aeronautics and Astronautics,Nanjing 210016,China;2.Inst.of Energy and Power,Nanjing Univ.of Aeronautics and Astronautics,Nanjing 210017,China;3.Inst.of Energy and Power,Nanjing Univ.of Aeronautics and Astronautics,Nanjing 210018,China;4.Inst.of Energy and Power,Nanjing Univ.of Aeronautics and Astronautics,Nanjing 210019,China;5.Inst.of Energy and Power,Nanjing Univ.of Aeronautics and Astronautics,Nanjing 210020,China
Abstract:
The spectral infrared radiant intensities of 2D nozzles of turbofan engine are measured.The aspect ratio of the 2D nozzles are 1,4,8,12 and 16,respectively.The measured spectral radiant intensities in the wave band of 3~5 μm are presented and compared with that of axisymmetric nozzle with the same exit area.The flow inside the nozzle is composed of combustion gas stream in main channel and air stream in the secondary channel to simulate nozzles of turbofan engine.The results show that the 2D nozzle,with aspect ratio greater than four or equal to four can dramatically suppress infrared radiant of the nozzle in most orientation of detection.Its suppression effect increases with the increase of the aspect ratio.While further increasing aspect ratio after it is greater than 8 will no longer lead to obvious reducing of infrared spectral radiant intensity.
Key words:  Turbofan engine  2-D nozzle+  Spectral infrared radiant