globalchange  > 过去全球变化的重建
DOI: 10.3390/en12112168
WOS记录号: WOS:000472635900135
论文题名:
An Experimental and Numerical Study on Supported Ultra-Lean Methane Combustion
作者: Lin, Ho-Chuan1; Chen, Guan-Bang2; Wu, Fang-Hsien2; Li, Hong-Yeng1; Chao, Yei-Chin1
通讯作者: Chao, Yei-Chin
刊名: ENERGIES
ISSN: 1996-1073
出版年: 2019
卷: 12, 期:11
语种: 英语
英文关键词: mitigation ; climate change ; ultra-lean methane flame ; lean flames ; methane-air combustion ; PIV ; GRI-Mech 3.0
WOS关键词: PREMIXED FLAMES ; COUNTERFLOW
WOS学科分类: Energy & Fuels
WOS研究方向: Energy & Fuels
英文摘要:

With a much larger global warming potential (GWP) and much shorter lifespan, the reduction of methane emissions offers an additional opportunity and a relatively quick way of mitigating climate change in the near future. However, the emissions from coal mining in the form of ventilation air methane (VAM), usually in ultra-lean concentration, pose the most significant technical challenge to the mitigation of methane emission. Therefore, a better understanding of ultra-lean methane combustion is essential. With three 5 mm x 50 mm rectangle cross-section slot jets, a novel sandwich-type triple-jet burner is proposed to provide stable combustion of an ultra-lean methane-air mixture with equivalence ratios from 0.3 to 0.88, and 0.22 in extreme conditions. The ultra-lean methane flame in the center of the triple-jet burner is supported by the two lean outer flames at an equivalence ratio phi = 0.88. The flow field and combustion chemical reactions are predicted by detailed numerical simulation with GRI-Mech 3.0 reaction mechanisms. Two-dimensional numerical results are validated with those obtained by experimental particle image velocimetry (PIV), as well as visual flame height and temperature measurements. An ultra-lean methane-air mixture has to burn with external support. In addition, the ultra-lean flame is non-propagating with a relatively low temperature. The ultra-lean center flame is seen to start from the outer flame and incline perfectly to the post-flame temperature and OH concentration profiles of the outer lean flame. The adjacent stronger flame provides heat and active radicals, such as OH and HO2, from the post-flame region and in the wall proximity of the gap between the adjacent flame and the central ultra-lean jet to initiate and maintain the combustion of the central ultra-lean flame. The outstanding wall-proximity radical of HO2 is found to be the main contributor to the initiation and stabilization of the central ultra-lean flame by providing a low-temperature oxidation of fuel through the following reaction: HO2 + CH3 double left right arrow OH + CH3O. The major chemical reaction paths contributing to fuel decomposition and oxidation of the supported ultra-lean center flame are also identified and delineated.


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被引频次[WOS]:4   [查看WOS记录]     [查看WOS中相关记录]
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/139931
Appears in Collections:过去全球变化的重建

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作者单位: 1.Natl Cheng Kung Univ, Dept Aeronaut & Astronaut, Tainan 701, Taiwan
2.Natl Cheng Kung Univ, Res Ctr Energy Technol & Strategy, Tainan 701, Taiwan

Recommended Citation:
Lin, Ho-Chuan,Chen, Guan-Bang,Wu, Fang-Hsien,et al. An Experimental and Numerical Study on Supported Ultra-Lean Methane Combustion[J]. ENERGIES,2019-01-01,12(11)
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