负压条件下柱形爆炸罐内爆炸波传播规律

汪泉;陆军伟;李志敏;林朝键;李雪交;程扬帆;李瑞

兵工学报 ›› 2021, Vol. 42 ›› Issue (6) : 1250-1256.

兵工学报 ›› 2021, Vol. 42 ›› Issue (6) : 1250-1256. DOI: 10.3969/j.issn.1000-1093.2021.06.015
论文

负压条件下柱形爆炸罐内爆炸波传播规律

  • 汪泉1,2, 陆军伟1, 李志敏3, 林朝键1, 李雪交1,2, 程扬帆1,2, 李瑞1
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Propagation Law of Explosion Wave in Columnar Explosion Tank under Vacuum Conditions

  • WANG Quan1,2, LU Junwei1, LI Zhimin3, LIN Chaojian1, LI Xuejiao1,2, CHENG Yangfan1,2, LI Rui1
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摘要

为分析负压条件下柱形爆炸罐内爆炸波的传播特性,自行设计尺寸为320 mm× 430 mm的 可调真空度柱形爆炸罐,开展不同真空度条件下的内爆实验。通过内爆实验研究,获得了不同真空度下爆炸波的传播速度u、超压Δp、比冲量i、相对压力因子α和相对比冲量因子γ等爆炸波参数。结果表明:罐体内真空度的改变对爆炸波传播状态产生了显著影响,罐体内初始压力降低时,爆炸波超压和比冲量均有不同程度的衰减;当罐体内初始压力由常压降低至0.1 atm时,第1个爆炸波超压Δp1的相对压力因子α1max为2.41,第2个爆炸波超压Δp2的相对压力因子α2max为 1.64;第1个爆炸波比冲量i1的相对比冲量因子γ1max为6.97,第2个爆炸波比冲量i2的相对比冲量因子γ2max为3.14;α和γ分别反映了爆炸波超压和比冲量的衰减程度,α和γ的值越大表明爆炸波超压和比冲量衰减得越快;爆炸波的传播速度会随着初始环境压力的改变而发生变化,初始环境压力越低,爆炸波的传播速度越快。

Abstract

To analyze the propagation characteristics of explosion wave in a columnar explosion tank at negative pressure, the implosion test of a self-designed 320 mm×430 mm adjustable vacuum columnar explosion tank was made to obtain the blast wave propagation velocity u,overpressure Δp,specific impulse i, relative pressure factor α and relative specific impulse factor γ under different vacuum conditions. The results show that the change of vacuum in the tank has a significant effect on the propagation state of explosion wave,and when the initial pressure in the tank decreases,the explosion wave overpressure and specific impulse have different degrees of attenuation. When the initial pressure in the tank is reduced from atmospheric pressure to 0.1 atm, the relative pressure factor α1max of the first explosion wave Δp1 is 2.41,and the relative pressure factor α2max of the second explosion wave Δp2 is 1.64; the relative specific impulse factor γ1max of specific impulse i1 of the first explosion wave is 6.97,and the relative specific impulse factor γ2max of specific impulse i2 of the second explosion wave is 3.14. The relative pressure factor α and the relative specific impulse factor α reflect the degrees of attenuation of explosion wave overpressure and specific impulse,respectively,and the blast wave overpressure and specific impulse decay more quickly when α and γ are larger. In addition,the propagation speed of explosion wave changes with the change in the initial environmental pressure,and the lower the initial environmental pressure is,the faster the propagation speed of explosion wave is.

关键词

柱形爆炸罐 / 真空环境 / 爆炸波 / 初始压力 / 比冲量

Key words

columnarexplosiontank / vacuumenvironment / explosionwave / initialpressure / specificimpulse

引用本文

导出引用
汪泉, 陆军伟, 李志敏, 林朝键, 李雪交, 程扬帆, 李瑞. 负压条件下柱形爆炸罐内爆炸波传播规律. 兵工学报. 2021, 42(6): 1250-1256 https://doi.org/10.3969/j.issn.1000-1093.2021.06.015
WANG Quan, LU Junwei, LI Zhimin, LIN Chaojian, LI Xuejiao, CHENG Yangfan, LI Rui. Propagation Law of Explosion Wave in Columnar Explosion Tank under Vacuum Conditions. Acta Armamentarii. 2021, 42(6): 1250-1256 https://doi.org/10.3969/j.issn.1000-1093.2021.06.015

基金

国家自然科学基金面上项目(11872002); 安徽理工大学研究生创新基金项目(2019CX2058)

参考文献


[1]BRODEH L.Blast wave from a spherical charge[J].The Physics of Fluids,1959,2(2): 217-229.
[2]HENRYCHJ,ABRAHAMSON G R.The dynamics of explosion and its use[J].Journal of Applied Mechanics,1980,47(1):218.
[3]TOLBAA F F.Response of FRP-retro-fitted reinforced concrete panels to blast loading[D].Ottawa,ON,Canada:Carleton University,2001.
[4]SADOVSKYI M A. Mechanical action of air shock waves of explosion,based on experimental data[M].Moscow,Russia: Izd Akad Nauk SSSR, 1952.
[5]黄亚峰,田轩,冯博,等.真空环境下铝粉粒度与形状对RDX基炸药爆炸场压力和温度的影响[J].含能材料,2016,24(2):144-148.
HUANG Y F,TIAN X,FENG B,et al.Influence of the particle size and shape of aluminium powder on the pressure and temperature of RDX-based explosive detonation sites in a vacuum environment[J].Chinese Journal of Energetic Materials,2016,24(2):144-148.(in Chinese)
[6]杨雄,王晓峰,黄亚峰,等.真空环境下铝含量对HMX基炸药爆炸场压力和温度的影响[J].火炸药学报,2017,40(6):73-77.
YANG X,WANG X F,HUANG Y F,et al.Influence of aluminum content on HMX-based explosive field pressure and temperature in a vacuum environment[J].Chinese Journal of Explosives & Propellants,2017,40(6):73-77.(in Chinese)
[7]张广华,李彪彪,沈飞,等.真空条件下的炸药爆炸特性试验研究[J].火炸药学报,2020,43(3): 308-313.
ZHANG G H,LI B B,SHEN F,et al. Experimental study on the explosive properties of explosives under vacuum conditions[J].Chinese Journal of Explosives & Propellants,2020,43(3): 308-313.(in Chinese)
[8]SILNIKOVM V,CHERNYSHOV M V,MIKHAYLIN A I.Blast wave parameters at diminished ambient pressure[J].Acta Astronautica, 2015,109:235-240.
[9]朱冠南,王争论,马佳佳,等.低压环境下膛口冲击波实验研究[J].兵工学报,2014,35(6):808-813.
ZHU G N,WANG Z L,MA J J,et al.Research on muzzle shock wave in low pressure environment[J].Acta Armamentarii,2014,35(6):808-813.(in Chinese)
[10]李科斌,李晓杰,闫鸿浩,等.不同真空度下空中爆炸近场特性的数值模拟研究[J].振动与冲击,2018,37(17):270-276.
LI K B,LI X J,YAN H H,et al. Numerical simulation of near field characteristics of air explosion under different vacuum degrees[J].Journal of Vibration and Shock,2018,37(17): 270-276. (in Chinese)
[11]王树有,蒋建伟,门建兵,等.高海拔大气环境爆炸冲击波传播数值模拟研究[C]∥第五届全国计算爆炸力学会议.延安:中国力学学会,2012:52.
WANG S Y,JIANG J W,MEN J B,et al. Numerical simulation of blast wave propagation in high altitude atmospheric environment [C]∥Proceedings of the 5th National Conference on Computational Explosion Mechanics.Yan'an:Chinese Society of Theoretical and Applied Mechanics,2012: 52.(in Chinese)
[12]宋水舟.不同真空度条件下结构内爆炸冲击波特性的数值模拟研究[D].太原:太原理工大学,2018.
SONG S Z.Numerical simulation study of the characteristics of explosive shock waves in structures under different vacuum conditions[D]. Taiyuan:Taiyuan University of Technology,2018.(in Chinese)
[13]VELDMANR,NANSTEEL M,CHEN C T,et al.The effect of ambient pressure on blast reflected impulse and overpressure[J].Experimental Techniques,2017,41(3): 227-236.
[14]姚成宝,浦锡锋,寿列枫,等.强爆炸冲击波在不均匀空气中传播数值模拟[C]∥中国计算力学大会2014暨第三届钱令希计算力学奖颁奖大会.贵阳:2014:1358-1363.
YAO C B,PU X F,SHOU L F,et al. Numerical simulation of strong explosion shock wave propagation in heterogeneous air[C]∥ Proceedings of China Computational Mechanics Congress 2014 and the 3rd Qian Lingxi Computational Mechanics Award Awarding Conference. Guiyang: Specialized Committee for Computational Mechanics,Chinese Society of Theoretical and Applied Mechanics,2014:1358-1363.(in Chinese)
[15]谢雪腾.原环境爆炸冲击波传播特性的数值模拟与实验研究[D].南京:南京理工大学, 2017.
XIE X T. Numerical simulation and experimental study on propagation characteristics of explosion shock wave in plateau environment[D].Nanjing:Nanjing University of Science and Technology,2017.(in Chinese)
[16]张立.爆破器材性能与爆炸效应测试[M].合肥:中国科学技术大学出版社, 2006.
ZHANG L. Test of blasting material performance and explosion effect[M]. Hefei: University of Science and Technology of China Press,2006.(in Chinese)
[17]Л. П奥尔连科.爆炸物理学[M].孙承纬,译.北京:科学出版社,2011.
ORПENKO Л П. Explosion physics [M].SUN C W,translated. Beijing:Science Press,2011.(in Chinese)


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