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罗振敏等:CH6、CH4、C0与H2对甲烷爆炸压力及动力学特性影响 ·347· [5]Razus D,Brinzea V,Mitu M,et al.Temperature and pressure humidities.Process Saf Environ Prot,2020,140:178 influence on explosion pressures of closed vessel propane -air [17]Su B,Luo Z M,Wang T,et al.Chemical kinetic behaviors at the deflagrations.J Hazard Mater,2010,174(1-3):548 chain initiation stage of CHa/Hz/air mixture.J Hazard Mater. [6]Li D.Zhang Q,Ma Q J,et al.Comparison of explosion 2021,403:123680 characteristics between hydrogen/air and methane /air at the [18]Luo Z M,Liu L T.Impact of the various other inflammable gases stoichiometric concentrations.IntJHydrogen Energy,2015, on the explosion features of low concentration methane.J Saf 40(28):8761 Environ,2019,19(1y167 [7]Zhang L,Wei X L,Yu L X,et al.Deflagration characteristics of a (罗振敏,刘利涛.以氢气为主要成分的其他可燃气体对低浓度 preheated CO-air mixture in a duct.Explos Shock Waves,2010. 甲烷爆炸特性的影响.安全与环境学报,2019,19(1):167) 30(2):191 [19]Luo Z M,Deng J,Guo X B.Microcosmic mechanism of gas (张良,魏小林,余立新,等.管道内一氧化碳和空气预热混合物 explosion based on Gaussian.J Ligoning Tech Univ Nat Sci,2008, 的爆燃特性.爆炸与冲击,2010,30(2):191) 27(3:325 [8J Gao N,Zhang Y S,Hu Y T,et al.Experimental study on methane- (罗振敏,邓军,郭晓波.基于Gaussian的瓦斯爆炸微观反应机 air mixtures explosion limits at normal and elevated initial 理.辽宁工程技术大学学报(自然科学版),2008,27(3):325) temperatures and pressures.Explos Shock Waves,2017,37(3): [20]Liang Y T,Wang L C,Luo H Z,et al.Computational model of 4538 reaction kinetic for gas explosion induced by shock wave.China (高娜,张延松,胡毅亭,等.温度、压力对甲烷空气混合物爆炸 Coal Soc,2017,42(6):1475 极限耦合影响的实验研究.爆炸与冲击,2017,37(3):4538) (梁运涛,王连聪,罗海珠,等.激波诱导瓦斯爆炸反应动力学计 [9]LiRZ,HuangZC,SiR J.Influence of environmental temperature 算模型.煤炭学报,2017,42(6):1475) on gas explosion pressure and its rise rate.Explos Shock Waves, [21]Liang Y T.Wang L C.Luo H Z,et al.Computational model of 2013.33(4):415 reaction kinetic for gas explosion in constant volume combustion (李润之,黄子超,司荣军环境温度对瓦斯爆炸压力及压力上 reactor.J China Coal Soc,2015,40(8):1853 升速率的影响.爆炸与冲击,2013,33(4):415) (梁运涛,王连聪,罗海珠,等.定容燃烧反应器中瓦斯爆炸反应 [10]Yu M G,Wan S J,Xu Y L,et al.Suppressing methane explosion 动力学计算模型.煤炭学报,2015,40(8):1853) overpressure using a charged water mist containing a NaCl [22]Wang L C,Luo H Z,Liang Y T.Effects of water on reaction additive.JNat Gas Sci Eng,2016,29:21 kinetic for gas explosion in shock tube.J China Coal Soc,2014, [11]Luo Z M,Su Y,Chen X K,et al.Effect of BC powder on 39(10):2037 hydrogen/methane/air premixed gas deflagration.Fuel,2019,257: (王连聪,罗海珠,梁运涛.激波管中水对瓦斯爆炸反应动力学 116095 特性的形响.煤炭学报,2014,39(10):2037) [12]Yu M G,Wang X Y,Zheng K,et al.Investigation of methane/air [23]Li X C,Nie B S,Yang C L,et al.Effect of gas concentration on explosion suppression by modified montmorillonite inhibitor. kinetic characteristics of gas explosion in confined space.ChinJ Process Saf Environ Prot,2020,144:337 High Pressure Phys,2017,31(2):135 [13]Mitu M,Brandes E.Influence of pressure,temperature and vessel (李祥春,聂百胜,杨春丽,等.封闭空间内瓦斯浓度对瓦斯爆炸 volume on explosion characteristics of ethanol air mixtures in 反应动力学特性的影响.高压物理学报,2017,31(2):135) closed spherical vessels.Fuel,2017,203:460 [24]Luo Z M,Hao QQ,Wang T,et al.Experimental study on the [14]Qi S,Du Y,Zhang P L,et al.Effects of concentration, deflagration characteristics of methane-ethane mixtures in a closed temperature,humidity,and nitrogen inert dilution on the gasoline duct.Fel,2020,259:116295 vapor explosion.J Hazard Mater,2017,323:593 [25]Varghese R J,Kolekar H,Kishore V R,et al.Measurement of [15]Luo Z M,Liu L T,Cheng F M,et al.Effects of a carbon laminar bumning velocities of methane-air mixtures simultaneously monoxide-dominant gas mixture on the explosion and flame at elevated pressures and elevated temperatures.Fuel,2019,257: propagation behaviors of methane in air.Loss Prev Process Ind, 116120 2019,58:8 [26]Rozenchan G,Zhu D L,Law C K,et al.Outward propagation, [16]Wang T.Zhou Y,Luo ZM,et al.Flammability limits behavior of burning velocities,and chemical effects of methane flames up to methane with the addition of gaseous fuel at various relative 60 atm.Proc Combust Inst,2002.29(2):1461Razus  D,  Brinzea  V,  Mitu  M,  et  al.  Temperature  and  pressure influence  on  explosion  pressures  of  closed  vessel  propane – air deflagrations. J Hazard Mater, 2010, 174(1-3): 548 [5] Li  D,  Zhang  Q,  Ma  Q  J,  et  al.  Comparison  of  explosion characteristics  between  hydrogen  /  air  and  methane  /  air  at  the stoichiometric  concentrations. Int J Hydrogen Energy,  2015, 40(28): 8761 [6] Zhang L, Wei X L, Yu L X, et al. Deflagration characteristics of a preheated  CO-air  mixture  in  a  duct. Explos Shock Waves,  2010, 30(2): 191 (张良, 魏小林, 余立新, 等. 管道内一氧化碳和空气预热混合物 的爆燃特性. 爆炸与冲击, 2010, 30(2):191) [7] Gao N, Zhang Y S, Hu Y T, et al. Experimental study on methane￾air  mixtures  explosion  limits  at  normal  and  elevated  initial temperatures  and  pressures. Explos Shock Waves,  2017,  37(3): 4538 (高娜, 张延松, 胡毅亭, 等. 温度、压力对甲烷-空气混合物爆炸 极限耦合影响的实验研究. 爆炸与冲击, 2017, 37(3):4538) [8] Li R Z, Huang Z C, Si R J. Influence of environmental temperature on  gas  explosion  pressure  and  its  rise  rate. Explos Shock Waves, 2013, 33(4): 415 (李润之, 黄子超, 司荣军. 环境温度对瓦斯爆炸压力及压力上 升速率的影响. 爆炸与冲击, 2013, 33(4):415) [9] Yu M G, Wan S J, Xu Y L, et al. Suppressing methane explosion overpressure  using  a  charged  water  mist  containing  a  NaCl additive. J Nat Gas Sci Eng, 2016, 29: 21 [10] Luo  Z  M,  Su  Y,  Chen  X  K,  et  al.  Effect  of  BC  powder  on hydrogen/methane/air premixed gas deflagration. Fuel, 2019, 257: 116095 [11] Yu M G, Wang X Y, Zheng K, et al. Investigation of methane/air explosion  suppression  by  modified  montmorillonite  inhibitor. Process Saf Environ Prot, 2020, 144: 337 [12] Mitu M, Brandes E. Influence of pressure, temperature and vessel volume  on  explosion  characteristics  of  ethanol  /  air  mixtures  in closed spherical vessels. Fuel, 2017, 203: 460 [13] Qi  S,  Du  Y,  Zhang  P  L,  et  al.  Effects  of  concentration, temperature, humidity, and nitrogen inert dilution on the gasoline vapor explosion. J Hazard Mater, 2017, 323: 593 [14] Luo  Z  M,  Liu  L  T,  Cheng  F  M,  et  al.  Effects  of  a  carbon monoxide-dominant  gas  mixture  on  the  explosion  and  flame propagation behaviors of methane in air. J Loss Prev Process Ind, 2019, 58: 8 [15] Wang T, Zhou Y, Luo Z M, et al. Flammability limits behavior of methane  with  the  addition  of  gaseous  fuel  at  various  relative [16] humidities. Process Saf Environ Prot, 2020, 140: 178 Su B, Luo Z M, Wang T, et al. Chemical kinetic behaviors at the chain  initiation  stage  of  CH4 /H2 /air  mixture. J Hazard Mater, 2021, 403: 123680 [17] Luo Z M, Liu L T. Impact of the various other inflammable gases on  the  explosion  features  of  low  concentration  methane. J Saf Environ, 2019, 19(1): 167 ( 罗振敏, 刘利涛. 以氢气为主要成分的其他可燃气体对低浓度 甲烷爆炸特性的影响. 安全与环境学报, 2019, 19(1): 167) [18] Luo  Z  M,  Deng  J,  Guo  X  B.  Microcosmic  mechanism  of  gas explosion based on Gaussian. J Liaoning Tech Univ Nat Sci, 2008, 27(3): 325 (罗振敏, 邓军, 郭晓波. 基于 Gaussian 的瓦斯爆炸微观反应机 理. 辽宁工程技术大学学报 (自然科学版), 2008, 27(3):325) [19] Liang  Y  T,  Wang  L  C,  Luo  H  Z,  et  al.  Computational  model  of reaction kinetic for gas explosion induced by shock wave. J China Coal Soc, 2017, 42(6): 1475 (梁运涛, 王连聪, 罗海珠, 等. 激波诱导瓦斯爆炸反应动力学计 算模型. 煤炭学报, 2017, 42(6):1475) [20] Liang  Y  T,  Wang  L  C,  Luo  H  Z,  et  al.  Computational  model  of reaction kinetic for gas explosion in constant volume combustion reactor. J China Coal Soc, 2015, 40(8): 1853 (梁运涛, 王连聪, 罗海珠, 等. 定容燃烧反应器中瓦斯爆炸反应 动力学计算模型. 煤炭学报, 2015, 40(8):1853) [21] Wang  L  C,  Luo  H  Z,  Liang  Y  T.  Effects  of  water  on  reaction kinetic for gas explosion in shock tube. J China Coal Soc, 2014, 39(10): 2037 (王连聪, 罗海珠, 梁运涛. 激波管中水对瓦斯爆炸反应动力学 特性的影响. 煤炭学报, 2014, 39(10):2037) [22] Li X C, Nie B S, Yang C L, et al. Effect of gas concentration on kinetic characteristics of gas explosion in confined space. Chin J High Pressure Phys, 2017, 31(2): 135 (李祥春, 聂百胜, 杨春丽, 等. 封闭空间内瓦斯浓度对瓦斯爆炸 反应动力学特性的影响. 高压物理学报, 2017, 31(2):135) [23] Luo  Z  M,  Hao  Q  Q,  Wang  T,  et  al.  Experimental  study  on  the deflagration characteristics of methane-ethane mixtures in a closed duct. Fuel, 2020, 259: 116295 [24] Varghese  R  J,  Kolekar  H,  Kishore  V  R,  et  al.  Measurement  of laminar burning velocities of methane-air mixtures simultaneously at elevated pressures and elevated temperatures. Fuel, 2019, 257: 116120 [25] Rozenchan  G,  Zhu  D  L,  Law  C  K,  et  al.  Outward  propagation, burning  velocities,  and  chemical  effects  of  methane  flames  up  to 60 atm. Proc Combust Inst, 2002, 29(2): 1461 [26] 罗振敏等: C2H6、C2H4、CO 与 H2 对甲烷爆炸压力及动力学特性影响 · 347 ·
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