Experimental and numerical methods for studying the flame structure

被引:0
作者
K. Kohse-Höinghaus
A. Brockhinke
机构
[1] Bielefeld University,Department of Chemistry
来源
Combustion, Explosion, and Shock Waves | 2009年 / 45卷
关键词
flame structure; oxygenates; molecular beam mass spectrometry; laser diagnostics flames; numerical modeling;
D O I
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学科分类号
摘要
Laminar premixed flames under laboratory conditions often at reduced pressures are of great interest for combustion chemistry and environmental pollution. Recently, there has been considerable progress in studying the combustion of hydrocarbons, oxygenates, and their mixtures. Methods of laser diagnostics, including cavity ring-down spectroscopy and laser induced fluorescence, combined with a number of mass spectrometry techniques for in situ studies of flames allow measurements of concentrations of major species and intermediate products in flames. The structure of fuel molecules and the effect of fuel composition on the structure of intermediate products were studied from the viewpoint of formation of undesired and potentially harmful combustion products in hydrocarbon and oxygenate flames. Chemiluminescence was studied using data on collisional energy transfer. Low-temperature combustion of strongly diluted mixtures in a flow type reactor was investigated.
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页码:349 / 364
页数:15
相关论文
共 239 条
[31]  
McIlroy A.(2007)Combustion dynamics linked to flame behavior in a partially premixed swirled industrial burner Proc. Combust. Inst. 31 99-2612
[32]  
Qi F.(2005)Advanced gasoline engine development using optical diagnostics and numerical modeling Proc. Combust. Inst. 30 2605-28
[33]  
Huang C.(2002)Analysis of process parameters for steady operation in methane mild combustion technology Proc. Combust. Inst. 29 1-1632
[34]  
Wei L.(2004)Combustion dynamics and control: progress and challenges Appl. Thermal Eng. 24 1619-3408
[35]  
Yang B.(2007)Chemiluminescence sensor for local equivalence ratio of reacting mixtures of fuel and air (FLAMESEEK) Proc. Combust. Inst. 31 3401-45
[36]  
Taatjes C. A.(2005)Controlling mechanisms for low NO Combust. Flame 140 34-389
[37]  
Hansen N.(2005) emissions in a non-premixed stagnation point reverse flow combustor Combust. Flame 140 385-150
[38]  
McIlroy A.(2007)Basic aspects of OH (A), CH (A) and C Combust. Flame 150 137-6672
[39]  
Taatjes C. A.(2005) (d) chemiluminescence in the reaction zone of laminar methane-air premixed flames Appl. Optics. 44 6660-445
[40]  
Hansen N.(2000)A note on chemiluminescence in low-pressure hydrogen and methanenitrous oxide flames Appl. Phys. B 70 435-533