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A computational study of operating range extension in a natural gas SI engine with the use of hydrogen

机译:使用氢气的天然气SI发动机工作范围扩展的计算研究

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The performance of a natural gas fueled spark ignition engine was studied to investigate the effect of hydrogen enrichment on the engine operating range and combustion characteristics. A validated multi-dimensional CFD model coupled with detailed chemical kinetics mechanism was used to study the combustion process in Hydrogen/CNG engine. Results indicated that misfiring occurs in equivalence ratios of about 0.61, 0.48 and 0.42 for hydrogen fractions of 0%, 30% and 50% respectively. Also, combustion durations were 70, 47 and 45 degrees crank angle for hydrogen fractions of 0%, 30% and 50% respectively with same equivalence ratio (Phi = 0.625). Regarding the emission, the maximum amount of break specific NOx was detected around (Phi = 0.83 (lambda = 1.2), and this point is almost independent of the hydrogen fraction. It was found that hydrogen fraction decreases the emissions of CO, and HC and CO2. Adding 30% hydrogen reduced CO2 emission by10.2% while 50% hydrogen fraction led to 22.7% CO2 reduction. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了以天然气为燃料的火花点火式发动机的性能,以研究富氢对发动机工作范围和燃烧特性的影响。经过验证的多维CFD模型与详细的化学动力学机理相结合,用于研究氢气/ CNG发动机的燃烧过程。结果表明,对于0%,30%和50%的氢分数,当量比分别为约0.61、0.48和0.42时发生了不点火。同样,当氢当量比例分别为0%,30%和50%时,燃烧持续时间分别为70、47和45度曲柄角(Phi = 0.625)。关于排放,检测到最大断裂比NOx约为(Phi = 0.83(λ= 1.2),这一点几乎与氢分数无关,发现氢分数减少了CO,HC和HC的排放。 CO2。添加30%的氢气可减少20.2%的CO2排放,而50%的氢气含量可减少22.7%的CO2版权所有(C),Hydrogen Energy Publications,LLC。Elsevier Ltd.保留所有权利。

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