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含铝炸药后燃火球参数测量技术研究

时间:2020-12-29 19:58来源:毕业论文
以Al2O3连续辐射为基础的新的光纤多谱线测温系统,并对新系统进行了标定,讨论了原系统的不足与新系统的优势。通过对含铝炸药后燃火球参数的试验测量,分析了炸药组成对火球形态

摘要本文主要对含铝炸药后燃火球参数的测试方法、火球形态的影响因素与火球热辐射效应三个方面进行了相应的研究。介绍了后燃火球尺寸、温度与持续时间的获取方法。针对含铝炸药爆炸瞬时温度的测量,建立了以Al2O3连续辐射为基础的新的光纤多谱线测温系统,并对新系统进行了标定,讨论了原系统的不足与新系统的优势。通过对含铝炸药后燃火球参数的试验测量,分析了炸药组成对火球形态的影响。根据试验获得的数据,采用热辐射动态模型计算了火球的热辐射效应,并与Baker模型计算的结果进行了对比,结果表明动态模型更符合实际情况。61479

毕业论文关键词  含铝炸药 后燃火球 多谱线测温 热辐射效应 

毕业设计说明书(论文)外文摘要

Title       Measurement of Afterburning Fireball   Parameters of Aluminized Explosives         

Abstract In this paper, the measurement of the parameters, the influence factors and the thermal radiation effect of aluminized explosive afterburning fireball were studied. The measurement methods of the temperature, size and duration of afterburning fireball were introduced. Based on the radiation of Al2O3, the fiber multi- wavelength thermometry system was established,and the system was calibrated. Both the deficiency of the old system and the improvement of the new one were discussed. According to the experimental measurement, the effects of explosive composition on the form of fireball were analyzed. On the basis of the experimental results, the dynamic model of thermal radiation was used to calculate the thermal radiation effect. Compared with the Baker model, the dynamic model could be more reasonable.

Keywords  aluminized explosives   afterburning fireball multi-wavelength thermometry   thermal radiation effect

1 绪论 1

1.1 研究背景及意义 1

1.2 国内外研究现状 2

1.2.1 后燃火球参数的测量 2

1.2.2 热毁伤效应的评估 3

1.3 本文主要工作 3

2 火球参数的测量方法 4

2.1 火球温度 4

2.1.1 测温方法的选择 4

2.1.2 红外热成像法测温 7

2.2 火球尺寸 11

2.3 火球持续时间 12

2.4 本章小结 12

3 光纤多谱线测温系统的建立 13

3.1 测温原理与系统介绍 13

3.2 算法推导 14

3.3 系统的标定与温度获取 15

3.4 两个系统的比较 17

3.4.1 含铝炸药后燃火球参数测量技术研究:http://www.751com.cn/huaxue/lunwen_67265.html

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