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兵工学报 ›› 2016, Vol. 37 ›› Issue (5): 866-871.doi: 10.3969/j.issn.1000-1093.2016.05.013

• 论文 • 上一篇    下一篇

强光干扰高温稀疏体系辐射能量计算方法研究

史要涛1, 陈守谦1, 万子南1, 李韬1, 张爱红1, 范志刚1, 于翠萍2, 于创利2   

  1. (1.哈尔滨工业大学 空间光学工程研究中心, 黑龙江 哈尔滨 150001;2.中国航天科工集团公司 第九总体设计部, 湖北 武汉 430040)
  • 收稿日期:2015-05-21 修回日期:2015-05-21 上线日期:2016-07-06
  • 作者简介:史要涛(1982—),男,博士研究生
  • 基金资助:
    国防“973”计划项目(6131920203)

Research on Calculating Method of Strong Light Interference High Temperature Radiation Energy Sparse System

SHI Yao-tao1, CHEN Shou-qian1, WAN Zi-nan1, LI Tao1,   

  1. (1.Research Center for Space Optical Engineering, Harbin Institute of Technology, Harbin 150001, Heilongjiang, China;2.Ninth Overall Design Departments, China Aerospace Science & Industry Corp., Wuhan 430040, Hubei, China)
  • Received:2015-05-21 Revised:2015-05-21 Online:2016-07-06

摘要: 强光干扰辐射能量是强光干扰源设计的关键参数,干扰效果一般依托于辐射能量的大小。在假设强光干扰燃烧产物为稀疏体系的前提下,提出一种强光干扰辐射能量计算方法。该方法稀疏体系在空间上进行分层,体系内每个金属氧化物颗粒作为灰体辐射源,对颗粒的辐射能量进行计算,并考虑各层间的热量传递以及体系内金属燃烧化学反应,统计从体系表面出射的辐射力,得到体系的辐射能量。以Al和KClO4作为燃烧剂对提出的计算方法进行了仿真验证,仿真结果与文献[1]中实验结果良好吻合。提出的辐射能量计算方法可为强光干扰源及红外诱饵弹等辐射问题的研究提供参考。

关键词: 兵器科学与技术, 金属氧化物辐射, 辐射计算, 高温体系辐射, 强光干扰

Abstract: Light interference radiation energy is a key parameter to design a light interference source, and the interference effect depends on the size of radiation energy. Under the assumption of a high-heat combustion product being sparse, a method to calculate strong light interference radiation energy is proposed. The sparse system is layered in space. Each metal oxide particle is regarded as a grey body radiation source, the radiation energy from particles and the exchanged heat between different layers are calculated, and the emitted light from the surface of system is counted. Al and KClO4 are used as fuel to verify the proposed calculating method. The results show that the proposed calculating method can be used to calculate the radiation energy from strong light interference source and infrared decoy bomb.

Key words: ordnance science and technology, metallic oxide, radiation calculationhigh temperature radiation, strong light interference

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