反舰导弹喷管流场及红外辐射特征研究  

Research on Flow Field and Infrared Radiation Characteristics of Anti-ship Missile Nozzle

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作  者:桑学仪 吉亚平 李建 赵亚南[1,2] 朱春艳 宋敏敏 SANG Xue-yi;JI Ya-ping;LI Jian;ZHAO Ya-nan;ZHU Chun-yan;SONG Min-min(Shanghai Aerospace Control Technology Institute, Shanghai 201109,China;Infrared Detection Technology Research & Development Center of CASC, Shanghai 201109,China)

机构地区:[1]上海航天控制技术研究所,上海201109 [2]中国航天科技集团公司红外探测技术中心,上海201109

出  处:《红外》2022年第1期35-42,共8页Infrared

基  金:国家部委基金项目。

摘  要:为了评估反舰导弹喷管和尾流在超音速飞行状态下的流场特性和红外辐射特性,以“雄风3”反舰弹的尾喷管为研究对象,建立了相应的二维仿真计算模型。流场计算结果表明,凝相颗粒对尾喷流的流场特性有显著影响。相比于纯气相,加入凝相颗粒后喷流轴向高温区长度明显增加,马赫数下降更快。红外辐射特征计算结果表明,喷管及尾流的红外辐射特征表现出强对称性,最大辐射强度出现在偏航角60°时,辐射强度达到103.68 W/sr。In order to evaluate the flow field characteristics and infrared radiation characteristics of the anti-ship missile nozzle in supersonic flight state,the nozzle of“Xiongfeng-3”anti-ship missile is taken as the research object and the corresponding two-dimensional simulation model is established in this paper.The calculation results of the flow field show that the condensed phase particles have a significant effect on the flow field characteristics of the jet.Compared with the pure gas phase,the length of the axial high-temperature zone increases obviously with the addition of condensed particles,and the Mach number decreases faster.The calculation results of infrared radiation characteristics show that the infrared radiation characteristics of the nozzle and wake show strong symmetry.The maximum radiation intensity appears when the yaw angle is 60°,and the radiation intensity reaches 103.68 W/sr.

关 键 词:反舰弹 喷管 流场特性 红外辐射特征 凝相颗粒 

分 类 号:TN215[电子电信—物理电子学]

 

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