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密闭建筑温压炸药内爆炸后燃效应

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温压炸药爆炸具有显著的后燃效应,在密闭空间内爆炸呈现多重毁伤效应,但后燃效应引起的多毁伤元耦合效应,以及后燃增强效应的量化分析尚不明确.基于搭建的大尺寸密闭建筑,开展不同药量下温压炸药及LiF替代铝粉炸药的内爆试验研究,对温度、冲击波超压、准静态压力及氧浓度进行测试,分析内爆条件下不同毁伤元的时空变化特征,结合Li F替代铝粉炸药爆炸的对比试验,阐明了密闭建筑内爆炸毁伤元的分布特点以及铝粉后燃效应对温度、冲击波超压、准静态压力和氧浓度变化的影响规律.研究结果表明:密闭空间内爆下热效应和压力效应在角落边界处得到显著增强,其中全过程比冲量在边界处增强了 2.2~2.5倍;铝粉后燃反应可显著增强温度、冲击波超压、准静态压力和氧气消耗量,当药量达到300 g下,铝粉后燃烧导致爆炸冲击波超压峰值提高1.2倍,温度峰值提高6.4倍,准静态压力提高2.2倍,氧浓度消耗提高2.8倍.
Afterburning Effect of Thermobaric Explosives in Confined Space
The explosion of thermobaric explosive has a significant afterburning effect,and itsexplosion in a confined space has multiple destructive effects.However,the coupling effect of multiple damage elements due to afterburning effect and the quantitative analysis of the afterburning enhancement effect are not clear yet.The implosion test of thermobaric explosives and LiF instead of aluminium powder explosive under different dosages is carried out ina large enclosed building,and the temperature,shock wave overpressure,quasi-static pressure and oxygen concentration are tested.The temporal and spatial variation characteristics of various damage elements under implosion conditions are analyzed,and the distribution characteristics of explosion damage elements are determined.The distribution characteristics of explosion damage elements in closed buildings and the influences of aluminium powder afterburning effect on temperature,shock wave overpressure,quasi-static pressure and oxygen concentration are clarified through the comparative test of LiF instead of aluminium powder explosion.The results show that the thermal effect and pressure impact of internal explosion in confined space are significantly enhanced at the corner boundary,and the total specific impulse at the boundary is increased by 2.2-2.5 times.The afterburning effect of aluminium powder can significantly improve the temperature,shock wave overpressure,quasi-static pressure and oxygen consumption.When the dosage reaches 300 g,the aluminium powder afterburning leads to the explosion shock wave overpressure peak increased by 1.2 times,the temperature peak increased by 6.4 times,the quasi-static pressure increased by 2.2 times,and the oxygen concentration consumption increased by 2.8 times.

thermobaric explosiveinternal explosionafterburning effectshock wave pressurethermal effectoxygen consumption

蒋欣利、张国凯、何勇、姚箭、王振、吴玉欣、刘举、王明洋

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南京理工大学机械工程学院,江苏南京 210094

陆军工程大学爆炸冲击防灾减灾国家重点实验室,江苏南京 210007

温压炸药 内爆炸 后燃效应 冲击波超压 热效应 耗氧

国家自然科学基金项目江苏省自然科学基金项目

52278504BK20220141

2024

兵工学报
中国兵工学会

兵工学报

CSTPCD北大核心
影响因子:0.735
ISSN:1000-1093
年,卷(期):2024.45(8)