共 32 条
- [1] YANG Qianyi, SHI Biming, ZHANG Leilin, Et al., Study on the explosion propagation law of coal dust with different moisture content induced by gas explosion[J], China Safety Production Science and Technology, 15, 3, pp. 25-29, (2019)
- [2] PEI Bei, ZHANG Ziyang, PAN Rongkun, Et al., Flame propagation characteristics of coal dust explosion induced by different intensity shock waves[J], Journal of China Coal Society, 46, 2, pp. 498-506, (2021)
- [3] LIU Dan, SI Rongjun, Experimental study on the participation of sedimentary coal dust in gas explosion induced by impact airflow[J], Coal Science and Technology, 42, 11, (2014)
- [4] YANG Shuzhao, DU Xuesheng, Experimental study on flame propagation of gas coal dust coupled secondary explosion[J], Journal of Henan University of Engineering (Natural Science Edition), 32, 1, pp. 20-23, (2020)
- [5] WEI Cunjuan, TAN Yingxin, HU Shuangqi, Et al., Experimental study on the induction of gas coal dust secondary explosions by gas explosions[J], Chinese Journal of Safety Sciences, 24, 12, (2014)
- [6] NIU Y, ZHANG L, SHI B M., Experimental study on the explosion-propagation law of coal dust with different moisture contents induced by methane explosion[J], Powder Technology, 361, pp. 507-511, (2020)
- [7] HOU Z, WANG D, ZHU Y., Experimental study on pressure wave-induced explosion of different types of deposited coal dust[J], Process Safety and Environmental Protection, 172, pp. 825-835, (2023)
- [8] TANG Qijian, QIN Ruxiang, DAI Guanglong, The influence of So-te average diameter on coal powder and its explosion characteristics in gas atmosphere[J], Journal of China Coal Society, 46, 2, pp. 489-497, (2021)
- [9] GONG Guangdong, LIU Qingming, HU Yongli, Et al., Experiment on explosion characteristics of coal dust in pipelines[J], Journal of China Coal Society, 35, 4, pp. 609-612, (2010)
- [10] LI Runzhi, Numerical simulation of gas explosion induced sedimentary coal dust explosion[J], Explosion and Shock, 30, 5, pp. 529-534, (2010)