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Infrared Signature Modeling and Analysis of Aircraft Plume

机译:飞机羽流的红外签名建模与分析

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In recent years, the survivability of an aircraft has been put to task more than ever before. One of the main reasons is the increase in the usage of Infrared (IR) guided Anti-Aircraft Missiles, especially due to the availability of Man Portable Air Defence System (MANPADS) with some terrorist groups. Thus, aircraft IR signatures are gaining more importance as compared to their radar, visual, acoustic, or any other signatures. The exhaust plume ejected from the aircraft is one of the important sources of IR signature in military aircraft that use low bypass turbofan engines for propulsion. The focus of the present work is modelling of spectral IR radiation emission from the exhaust jet of a typical military aircraft and to evaluate the aircraft susceptibility in terms of the aircraft lock-on range due to its plume emission, for a simple case against a typical Surface to Air Missile (SAM). The IR signature due to the aircraft plume is examined in a holistic manner. A comprehensive methodology of computing IR signatures and its affect on aircraft lock-on range is elaborated. Commercial CFD software has been used to predict the plume thermo-physical properties and subsequently an in-house developed code was used for evaluating the IR radiation emitted by the plume. The LOWTRAN code has been used for modeling the atmospheric IR characteristics. The results obtained from these models are in reasonable agreement with some available experimental data. The analysis carried out in this paper succinctly brings out the intricacy of the radiation emitted by various gaseous species in the plume and the role of atmospheric IR transmissivity in dictating the plume IR signature as perceived by an IR guided SAM.
机译:近年来,飞机的生存能力比以往任何时候都更加重要。主要原因之一是红外(IR)制导的防空导弹的使用增加,特别是由于某些恐怖团体可使用曼便携式防空系统(MANPADS)。因此,与它们的雷达,视觉,听觉或任何其他签名相比,飞机的IR签名越来越重要。从飞机喷出的废气羽流是使用低旁通涡扇发动机进行推进的军用飞机上红外信号的重要来源之一。本工作的重点是对典型军用飞机的排气喷嘴的光谱红外辐射发射进行建模,并根据其羽状发射对飞机的锁定范围进行评估,以评估飞机的敏感性。地空导弹(SAM)。全面检查由飞机羽流引起的IR签名。详细阐述了计算红外签名及其对飞机锁定范围的影响的综合方法。商业CFD软件已用于预测羽流的热物理性质,随后使用内部开发的代码来评估羽流发出的IR辐射。 LOWTRAN代码已用于对大气IR特性进行建模。从这些模型获得的结果与一些可用的实验数据合理地吻合。本文进行的分析简洁地介绍了羽状中各种气态物质发出的辐射的复杂性,以及大气红外透射率在决定红外引导SAM感知羽状IR签名方面的作用。

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