首页  科学研究  学术论文  2012年
 
Chen SS, Jiang Y, Qiu R, An JT (2012) Chinese Journal Of Chemical Engineering 20(5), 914-922.
文章来源:SKLFS    作者:SKLFS    发布时间:2013-09-21
Chen SS, Jiang Y, Qiu R, An JT (2012) Numerical Study on Laminar Burning Velocity and Flame Stability of Premixed Methane/Ethylene/Air Flames. Chinese Journal Of Chemical Engineering 20(5), 914-922. [In English]
Keywords: laminar burning velocity; flame stability; methane; ethylene; hydrogen-air flames; methane-air; markstein numbers; co addition; combustion; counterflow; ethylene; ignition
Abstract: A numerical study on premixed methane/ethylene/air flames with various ethylene fractions and equivalence ratios was conducted at room temperature and atmospheric pressure. The effects of ethylene addition on laminar burning velocity, flame structure and flame stability under the condition of lean burning were investigated. The results show that the laminar burning velocity increases with ethylene fraction, especially at a large equivalence ratio. More ethylene addition gives rise to higher concentrations of H, O and OH radicals in the flame, which significantly promotes chemical reactions, and a linear correlation exists between the laminar burning velocity and the maximum H + OH concentration in the reaction zone. With the increase of ethylene fraction, the adiabatic flame temperature is raised, while the inner layer temperature becomes lower, contributing to the enhancement of combustion. Markstein length and Markstein number, representative of the flame stability, increase as more ethylene is added, indicating the tendency of flame stability to improve with ethylene addition.
 
 
相关链接
Chen SS, Jiang Y, Qiu R, An JT (2012) Chinese Journal Of Chemical Engineering 20(5), 914-922.
联系我们
安徽省合肥市金寨路96号
中国科学技术大学
火灾科学国家重点实验室
邮政编码:230026
   
Tel:(+86)551 63601651
Fax:(+86)551 63601669
E-mail:sklfs@ustc.edu.cn
Copyright © 1990-2011 State Key Laboratory of Fire Science, University of Science and Technology of China
火灾科学国家重点实验室 版权所有 皖ICP备:002106505 号