INVESTIGATION OF THE LAMINAR BURNING VELOCITY AND EXHAUST CHARACTERISTICS OF METHANE-AMMONIA-HYDROGEN TERNARY BLENDS

被引:0
作者
Nasim, Md Nayer [1 ]
Nawaz, Behlol [1 ]
Das, Shubhra Kanti [1 ]
Landis, Joshua [1 ]
Shaalan, Amr [2 ]
Noah Van Dam [1 ]
Trelles, Juan Pablo [1 ]
Assanis, Dimitris [2 ]
Mack, J. Hunter [1 ]
机构
[1] Univ Massachusetts Lowell, Lowell, MA 01854 USA
[2] SUNY Stony Brook, Stony Brook, NY 11794 USA
来源
PROCEEDINGS OF ASME 2023 ICE FORWARD CONFERENCE, ICEF2023 | 2023年
关键词
Hydrogen; Ammonia; Natural gas; Laminar burning velocity; Fourier transform infrared (FTIR) spectroscopy; Emissions; MIXTURES; AIR;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Even though usage of hydrogen (H-2) in the energy sector has gained a considerable amount of traction over the last decade, its high flame speed restricts its feasibility as a drop-in replacement for existing fuels in applications such as internal combustion engines and gas turbines. In order to address some potential issues, ammonia (NH3) can be used in conjunction with hydrogen, as its slow reaction kinetics offset that of H-2 without compromising decarbonization efforts. However, simply replacing natural gas (primarily methane, CH4) with hydrogen/ammonia blends is not trivial due to compatibility issues associated with bulk combustion characteristics. In this study, methane-ammonia-hydrogen ternary blends are comprehensively investigated in terms of laminar burning velocity, flame morphology, stability, and emissions in order to understand transitional regimes between fossil-based approaches and carbon-free alternatives. This work presents the analysis of the combustion properties of different ammonia/methane/hydrogen blends at varied equivalence ratios in an optically accessible constant volume combustion chamber (CVCC) coupled with Z-type schlieren visualization. The emissions from each experimental trial were analyzed using a Fourier Transform Infrared (FTIR) Spectroscopy system for detailed speciation. Furthermore, a computational approach was implemented to validate the laminar burning velocity results using an established mechanism already tested for ternary blends.
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页数:9
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