Developing a versatile detail mechanism for NH<sub>3</sub> combustion

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초록

Ammonia (NH3) is a carbon-free fuel. Therefore, many researchers have proposed detailed mechanisms for NH3, yet the existing mechanisms have widely varied combinations of reactions and were validated using different experimental datasets. Thus, this study suggests developing a NH3 mechanism by exploring the vast reaction pool of the five existing mechanisms. Several reaction combinations from the reaction pool were tested to validate the experimental datasets. The developed mechanism showed the lowest mean squared error (MSE) among the referenced mechanisms for predicting the ignition delay times (IDT). Furthermore, the MSE of the laminar burning velocity (LBV) prediction was less than those of the three referenced mechanisms. Although the mechanism was developed by employing only NH3 fuel mixtures, the estimated IDT and LBV of NH3/H-2 fuel mixtures showed low MSE. Analyses of many tested sample mechanisms revealed that the rate coefficients of NH3 combustion reactions should be further elucidated for enhanced prediction.

키워드

Detailed chemical mechanism; Ignition delay time; Laminar burning velocity; NH3 combustion; LAMINAR BURNING VELOCITY; AMMONIA/AIR PREMIXED FLAMES; KINETIC MECHANISM; ELEVATED PRESSURE; IGNITION ENGINE; N-HEPTANE; OXIDATION; PROPAGATION; NH3/H-2/AIR; CHEMISTRY
제목
Developing a versatile detail mechanism for NH<sub>3</sub> combustion
저자
Kwon, Serang; Im, Seong-kyun
DOI
10.1007/s12206-024-0249-z
발행일
2024-03
유형
Article
저널명
Journal of Mechanical Science and Technology
권
38
호
3
페이지
1585 ~ 1599