毕明树

个人信息Personal Information

教授

博士生导师

硕士生导师

任职 : 教育部安全科学与工程类教学指导委员会 副主任委员

性别:男

毕业院校:大连理工大学

学位:博士

所在单位:化工学院

办公地点:大连理工大学化工学院化工机械与安全系H楼419

联系方式:0411-84986600

电子邮箱:bimsh@dlut.edu.cn

扫描关注

论文成果

当前位置: 中文主页 >> 科学研究 >> 论文成果

Hydrogen cloud explosion evaluation under inert gas atmosphere

点击次数:

论文类型:期刊论文

发表时间:2018-11-01

发表刊物:FUEL PROCESSING TECHNOLOGY

收录刊物:SCIE

卷号:180

页面范围:96-104

ISSN号:0378-3820

关键字:Hydrogen cloud explosion evaluation; Inert gas; Markstein length; Explosion pressure attenuation; Third-body effect

摘要:This paper is aimed at evaluating the hydrogen cloud explosion under inert gas atmosphere experimentally and numerically. The results demonstrate that only under Ar, N-2 and CO2 atmosphere, the lean and stoichiometric hydrogen flame tends to be unstable. The Markstein length of Ar, N-2 and CO2 is less than zero and the decreasing order is Ar, N-2 and CO2. Except for CO2, the average flame propagation velocity, maximum explosion pressure, maximum pressure rise rate, positive pressure impulse and explosion pressure attenuation decrease monotonously in the order of He, Ar and N-2. For various equivalence ratios and inert gases, the explosion pressure releases into the far field at the sound speed and attenuates with distance. Due to the fact that the explosion pressure is closely related to laminar burning velocity, the explosion pressure suppression by inert gas is revealed by analyzing the factors affecting laminar burning velocity. As equivalence ratio increases, the adiabatic flame temperature plays a more important role in affecting laminar burning velocity than thermal diffusivity. For different inert gases, the effect of thermal diffusivity on laminar burning velocity is obviously greater than adiabatic flame temperature. Besides, the third-body effect of various inert gases increases gradually until Phi = 1.4. and then decreases with increasing equivalence ratio. For a given equivalence ratio; the increasing order of third-body effect is He, Ar and CO2.