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空天防御  2020, Vol. 3 Issue (4): 67-72    
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  精确制导仿真技术 本期目录 | 过刊浏览 | 高级检索 |
红外抑制措施对战斗机辐射特性抑制效果分析
刘健,林嘉轩,霍熠炜
上海无线电设备研究所 电磁散射重点实验室,上海 200438
Effects of Infrared Suppression Techniques on the Infrared Radiation Signatures of Fighter Aircraft
LIU Jian, LIN Jiaxuan, HUO Yiwei
Science and Technology on Electromagnetic Scattering Laboratory, Shanghai Radio Equipment Research Institute, Shanghai 200438, China
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摘要 为分析红外抑制措施对战斗机红外辐射特性的影响,建立了某典型战斗机蒙皮和排气系统的三维几何模型;结合实验数据假定了战斗机所采用的低发射率涂层参数和气膜冷却参数,利用商用流场计算软件和自研红外计算程序对某典型战斗机采用红外抑制措施前后的红外辐射特性进行了仿真;分析了红外抑制措施对战斗机红外辐射特性的影响。仿真结果表明,采用排气系统降温和机身低发射率材料的红外抑制措施能够全方位降低战斗机的红外辐射特性。本文研究结果表明最大降幅出现在飞机尾向:3~5um波段的积分辐射强度降幅为61.7%;8~14um波段的积分辐射强度降幅为62.1%。
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关键词 红外积分辐射强度发动机排气系统低发射率涂层气膜冷却    
Abstract:To analyze the effects of infrared suppression techniques on the infrared radiation signatures of fighter aircraft, three-dimensional geometric models of a specific fighter aircraft's fuselage and exhaust system were bulit. The parameters of lowemissivity coating and film cooling were assumed based on experiment data. The infrared signatures of the fighter aircraft with and without infrared suppression techniques were calculated by computational fluid dynamics software and self-developed infrared calculation code. The effects of infrared suppression techniques on the infrared radiation signatures of fighter aircraft were analyzed. The results revealed that by reducing the temperature of exhaust system and the emissivity of fuselage, the infrared signature of fighter aircraft could be significantly reduced in all directions. For the case studied in this paper, the integrated radiation intensity in 3~5 μm and 8~14 μm waveband was reduced by 61.7% and 62.1% in the rear direction respectively.
Key wordsinfrared integrated radiation intensity    exhaust system of aeroengine    low-emissivity coating    film cooling
收稿日期: 2020-10-22      出版日期: 2020-12-29
引用本文:   
刘健, 林嘉轩, 霍熠炜. 红外抑制措施对战斗机辐射特性抑制效果分析[J]. 空天防御, 2020, 3(4): 67-72.
LIU Jian, LIN Jiaxuan, HUO Yiwei. Effects of Infrared Suppression Techniques on the Infrared Radiation Signatures of Fighter Aircraft. Air & Space Defense, 2020, 3(4): 67-72.
链接本文:  
https://www.qk.sjtu.edu.cn/ktfy/CN/      或      https://www.qk.sjtu.edu.cn/ktfy/CN/Y2020/V3/I4/67

参考文献
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