参考文献/References:
[1]CSB. Investigation report:combustible dust hazard study:2006-H-1[R].U.S. Chemical Safety and Hazard Investigation Board(CSB),2006.
[2]张小良. 粉尘爆炸的四个误区[J]. 现代职业安全,2014(11):51.
[3]VORDERBRUEGGEN J B.Imperial sugar refinery combustible dust explosion investigation[J].Process Safety Progress,2011,30(1):66-81.
[4]张二强,张礼敬,陶刚,等. 粉尘爆炸特征和预防措施探讨[J]. 中国安全生产科学技术,2012,8(2):88-92.
ZHANG E Q, ZHANG L J,TAO G,et al. Preliminary study on characteristics and preventive measures of the dust explosion[J]. Journal of Safety Science and Technology,2012,8(2):88-92.
[5]薄涛,谭迎新. 粉尘爆炸事故预防及其扑救对策研究[J]. 武警学院学报,2008,24(4):46-49.
BO T,TAN Y X. The solutions to preventing and rescuing dust explosions[J].Journal of Chinese Peoples Armed Police Force Academy,2008,24(4):46-49.
[6]刘邦先,周乃如,朱凤德. 粮食粉尘爆炸及防护[J]. 粮食与油脂,2005(1):10-12.
LIU B X,ZHOU N R,ZHU F D. Grain dust explosion and dust explosion suppression[J]. Journal of Grain and Oil,2005(1):10-12.
[7]张一博,谭迎新. 激波诱导铝粉二次爆炸的试验研究[J]. 中国安全科学学报,2012,22(10):61-64.
ZHANG Y B,TAN Y X. Experimental study on secondary explosion of aluminum dust detonated by shock wave[J]. China Safety Science Journal,2012,22(10):61-64.
[8]王海福,冯顺山.防爆学原理[M].北京:北京理工大学出版社,2004:41-43.
[9]苑春苗. 惰化条件下镁粉爆炸性参数的理论与实验研究[D]. 沈阳:东北大学,2009:4-5.
YUAN C M. Theoritical and experimental study on explosibility parameters of Mg powers in inerting conditions[D]. Shenyang:Northeastern University,2009:4-5.
[10]顾兆林. 风扬粉尘:近地层湍流与气固两相流[M]. 北京:科学出版社,2010.
[11]李好,张锬,杜兵,等. 充氮环境下淀粉爆炸特性的实验研究[J]. 消防科学与技术,2016,35(2):166-170.
LI H,ZHANG T,DU B,et al. Experimental investigation of starch dust explosion characteristics in nitrogen atmosphere[J]. Fire Science and Technology,2016,35(2):166170.
[12]张金锋,刘鑫. 氮气惰化抑制7氨基头孢烷酸粉尘爆炸试验研究[J]. 安全与环境学报,2016,16(3):42-45.
ZHANG J F,LIU X.Research on the nitrogen inerting suppression of explosion of 7-ACA powder[J]. Journal of Safety and Environment,2016,16(3):42-45.
[13]RYZHIK A B. Conditions of the thermal explosion of disperse magnesium in media with with an insufficiency of oxidizer[J]. Combustion,Explosion,and Shock Waves,1978, 14(3):394-396.
[14]RYZHIK A B. Ignition of suspensions of aluminum-magnesium alloy powders in nitrogen-oxygen media[J]. Combustion,Explosion,and Shock Waves,1978,14(2):258260.
[15]钟英鹏. 镁粉爆炸特性实验研究及其危险性评价[D]. 沈阳:东北大学,2008.
ZHONG Y P. Experimental research on magnesium dust explosion and its risk assessment[D]. Shenyang:Northeastern University,2008.
[16]苑春苗,李刚,李畅. 惰化气氛下镁粉尘的最低着火温度研究[C]//2010(沈阳)国际安全科学与技术学术研讨会论文集.沈阳:东北大学,2010:749-753.
YUAN C M,LI G,LI C. Minimum ignition temperature of magnesium powers in inerting conditions[C]//Proceedings of 2010(Shenyang) International Colloquium on Safety Science and Technology.Shenyang:Northeas tern University,2010:749-753.
[17]AMYOTTE P R, PEGG M J,KHAN F I,et al. Moderation of dust explosions[J]. Journal of Loss Prevention in the Process Industries,2007,20(4/5/6):675-687.
[18]李亚男. 磷酸二氢铵对金属粉尘的爆炸抑制研究[D]. 太原:中北大学,2015.
[19]陈曦,陈先锋,刘晅亚. 惰化条件下铝粉爆燃火焰传播特性研究[C]//2015消防工程技术国际学术研讨会论文集.天津:公安部科技信息化局、公安部天津消防研究所,2015:10.
[20]王玉杰,陈曦,陈先锋,等. 碳酸氢钠粉体粒径对铝粉火焰传播特性的影响[J]. 中国安全科学学报,2016,26(3):53-58.
WANG Y J,CHEN X,CHEN X F,et al. Effect of sodium bicarbonate particle size on characteristics of aluminum dust flame propagation[J]. China Safety Science Journal,2016,26(3):53-58.
[21]李立东. 铝粉爆炸泄放及抑制实验研究[D].大连:大连理工大学,2013.
LI L D.Experiments on explosion venting and suppression of aluminum dust [D].Dalian:Dalian University of Technology,2013.
[22]伍毅,袁旌杰,蒯念生等. 碳酸盐对密闭空间粉尘爆炸压力影响的试验研究[J]. 中国安全科学学报,2010,20(10):92-96.
WU Y,YUAN J J,KUAI N S,et al. Effect of carbonates on dust explosion pressure in closed vessel[J]. China Safety Science Journal,2010,20(10):92-96.
[23]任一丹,刘龙,袁旌杰,等. 粉尘爆炸中惰性介质抑制机理及协同作用[J]. 消防科学与技术,2015,34(2):158-162.
REN Y D,LIU L,YUAN J J,et al. Inhibition mechanisms and synergy effects of solid inerrtants in dust explosion[J]. Fire Science and Technology,2015,34(2):158-162.
[24]黄寅生,戴晓静,曹卫国. 磷酸二氢盐与SiO2粉体抑制煤尘爆炸的试验研究[J]. 中国安全科学学报,2013,23(3):57-61.
HUANG Y S,DAI X J,CAO W G. Experimental study on coal dust explosion suppression with dihydrogen phosphate salts and SiO2 powers[J]. China Safety Science Journal,2013,23(3):57-61.
[25]蒯念生,李建明,陈志. 基于本质安全原理的镁粉爆炸风险控制研究[J]. 消防科学与技术,2010,29(5):369-372.
KUAI N S,LI J M,CHEN Z. Study on the risk control of magnesium dust explosion based on inherent safety principles[J]. Fire Science and Technology,2010,29(5):369-372.
[26]付羽,李刚,孙飞,等. 镁粉粉末惰化性能实验研究[C]//2008(沈阳)国际安全科学与技术学术研讨会论文集.沈阳:东北大学,2008:602-607.
FU Y,LI G, SUN F, et al.Experimental study on magnesium powder inerting performance[C]//Proceedings of 2008(Shenyang) International Colloquium on Safety Science and Technology.Shenyang:Northeastern University,2008:602-607.
[27]张锬,李好,黄卫星. 粉尘爆炸复合型固体惰化剂的实验研究[J]. 消防科学与技术,2016,35(7):910-912.
ZHANG T,LI H,HUANG W X. Experimental investigation of compound solid inertant on dust explosion[J]. Fire Science and Technology,2016,35(7):910-912.
[28]闫兴清. 高静态动作压力下粉尘爆炸泄放特性研究[D]. 大连:大连理工大学,2014.
YAN X Q.Characteristics of dust explosion venting at elavated static activation overpressures[D].Dalian:Dalian University of Technology,2014.
[29]AMYOTTE P R, ECKHOFF R K. Dust explosion causation, prevention and mitigation: an overview[J]. Journal of Chemical Health & Safety,2010,17(1):15-28.
[30]National Fire Protection Association,USA. Standard on explosion protection by deflagration venting:NFPA 68[S]. USA,2007.
[31]European Committee for Standardization.Dust explosion venting protective systems:BS EN 14491—2006[S]. Brussels: British Standard Institute,2006.
[32]ISMAILA A,ANDREWS G E,ABDULLAHI I,et al. Venting as a means of mitigating explosions: the need to revised European and USA (NFPA68) guidance for explosion venting[J]. Archives of Applied Science Research, 2012(1):155-168.
[33]TASCóN A, AGUADO P J, RAMíREZ A. Dust explosion venting in silos:a comparison of standards NFPA 68 and EN 14491[J]. Journal of Loss Prevention in the Process Industries, 2009, 22(2):204-209.
[34]喻健良,闫兴清. 高静态动作压力下粉尘爆炸泄放标准的可靠性[J]. 东北大学学报(自然科学版),2015,36(9):1316-1320.
YU J L,YAN X Q. Reliability of dust explosion venting standards under elevated static activation overpressures[J]. Journal of Northeastern University (Nature Science),2015,36(9):1316-1320.
[35]HOLBROW P, LUNN G A, TYLDESLEY A. Dust explosion protection in linked vessels: guidance for containment and venting[J]. Journal of Loss Prevention in the Process Industries, 1999, 12(3):227-234.
[36]HOLBROW P, ANDREWS S, LUNN G A. Dust explosions in interconnected vented vessels[J]. Journal of Loss Prevention in the Process Industries, 1996, 9(1):91-103.
[37]LUNN G A, HOLBROW P, ANDREWS S, et al. Dust explosions in totally enclosed interconnected vessel systems[J]. Journal of Loss Prevention in the Process Industries, 1996,9(1):45-58.
[38]王健. 粮食粉尘爆炸的实验研究与数值模拟[D]. 沈阳:东北大学,2010.
WANG J. Experimental investigation and numerical simulation of grain dust explosion[D]. Shenyang:Northeastern University,2010.
[39]KASMANI R M,ANDREWS G E,PHYLAKTOU H N,et al. Vented gas explosion in a cylindrical vessel with a vent duct[C]//SKEVIS G. Proceedings of the 3rd European Combustion Meeting.Greece:Greek Section of the Combustion Institute,2007.
[40]张庆武,蒋军成,喻源,等. 基于支持向量机的导管泄爆容器压力峰值预测[J]. 爆炸与冲击,2014,34(6):748-753.
ZHANG Q W,JIANG J C,YU Y,et al. Prediction of peak pressure in the explosionvented vessel with a venting duct based on support vector machine[J]. Explosion and Shock Waves,2014,34(6):748-753.
[41]喻健良,闫兴清,李迪. 采用泄爆管的粉尘爆炸在泄放过程中的压力特性[J]. 爆炸与冲击,2012,32(6):669-672.
YU J L,YAN X Q,LI D. Pressure characteristics in dust explosion relief process by using a relief pipe[J]. Explosion and Shock Waves,2012,32(6):669-672.
[42]闫兴清,喻健良,李迪. 导管泄放粉尘爆炸过程中二次爆炸现象研究[J]. 安全与环境学报,2013,13(2):219-222.
YAN X Q,YU J L,LI D. Secondary explosion during aluminum dust explosion venting with a relief duct[J]. Journal of Safety and Environment,2013,13(2):219-222.
[43]AMROGOWICZ J, KORDYLEWSKI W. Effectiveness of dust explosion suppression by carbonates and phosphates[J]. Combustion & Flame,1991,85(3):520-522.
[44]谢波,王克全. 工业粉尘爆炸抑制技术研究现状及存在的问题[J]. 矿业安全与环保,2000,27(1):13-15.
XIE B,WANG K Q.Study status of industrial dust explosion suppression techniques and existent problems[J]. Mining Safety & Environmental Protection,2000,27(1):13-15.
[45]左前明,程卫民,汤家轩. 粉体抑爆剂在煤矿应用研究的现状与展望[J]. 煤炭技术,2010,29(11):78-80.
ZUO Q M,CHENG W M,TANG J X. Current status and prospects of application and research of power coal mine explosion suppression agent[J]. Coal Technology,2010,29(11):78-80.
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