CHINESE JOURNAL OF ENERGETIC MATERIALS
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Engineering Algorithm of Shock Wave Propagation Law in Underground Bunker at Various Depths of Explosion
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1.Institute of Defense Engineering, AMS, PLA, Luoyang 471023, China;2.State Key Laboratory of Disaster Prevention and Mitigation of Explosion and Impacts,Army Engineering University of PLA, Nanjing 210007, China

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    Abstract:

    In order to obtain propagation laws of shock wave inside the bunker under different working conditions, 48 explosion tests at various buried depths were carried out using an underground engineering model that could be assembled by steel structural units. Waveforms of shock waves were measured by piezoresistive pressure sensors mounted on the sidewall of the structures. From the measured data, distribution formulas on positive pressure impulse and action time of shock wave in the underground bunker under deep drilling explosion conditions were studied. The results show that values of representing characteristic parameters of shock waves are mainly related to the reinforcement ratio of the covering layer, the proportional blast height of the charge, the proportional blast distance and the proportional diameter of the cross section of the structure. Correlation coefficients of fitted algorithms are greater than 0.8, and average errors are less than 20%; therefore the engineering models can provide load basis for analysis and design of underground structures against blast damage.

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刘飞,任新见,何翔.不同炸高爆炸条件地下工程内冲击波传播规律的工程算法[J].含能材料,2020,28(11):1076-1082.
LIU Fei, REN Xin-jian, HE Xiang. Engineering Algorithm of Shock Wave Propagation Law in Underground Bunker at Various Depths of Explosion[J]. Chinese Journal of Energetic Materials,2020,28(11):1076-1082.

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History
  • Received:September 18,2019
  • Revised:June 16,2020
  • Adopted:June 04,2020
  • Online: June 08,2020
  • Published: November 25,2020