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Exploring the potential of ethanol, CNG, and syngas as fuels for lean spark-ignition combustion - An experimental study

机译:探索乙醇,压缩天然气和合成气作为稀薄火花点火燃烧燃料的潜力-实验研究

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摘要

In this study, experiments were carried out on a single-cylinder Cooperative Fuel Research (CFR) engine with different fuel-air equivalence ratio (φ) and compression ratio to explore its performance and emissions using four different fuels, E10, natural gas, ethanol, and syngas, at 1200rev/min and 75kPa intake pressure. The compression ratio was varied from 9 to 11 for E10 and syngas, and from 9 to 13 for natural gas and ethanol. The combustion characteristics were analyzed on the basis of enabling lean flame propagation. It was found that higher compression ratio resulted in higher engine efficiency and improved lean burn capability for all fuels studied. However, the use of ethanol, natural gas, and syngas helped to extend the lean misfire limit. Syngas enabled combustion at considerably lean operating conditions and achieved the leanest misfire limit. Spark ignition combustion with natural gas showed better lean combustion capability than gasoline and ethanol. Ethanol offered a wider lean limit than E10 and achieved higher fuel conversion efficiency than E10 and natural gas. Combustion with E10 was limited by end gas knock at high compression ratio, which necessitated spark retard and reduced engine efficiency and performance.
机译:在这项研究中,对具有不同燃油-空气当量比(φ)和压缩比的单缸协作式燃油研究(CFR)发动机进行了实验,以探索使用四种不同的燃料(E10,天然气,乙醇)的性能和排放,合成气,进气压力为1200rev / min和75kPa。 E10和合成气的压缩比从9到11,天然气和乙醇的压缩比从9到13。在允许稀薄火焰传播的基础上分析了燃烧特性。结果发现,较高的压缩比可提高发动机效率,并改善所有研究燃料的稀薄燃烧能力。但是,乙醇,天然气和合成气的使用有助于扩大稀燃失火极限。合成气可在相当稀薄的运行条件下燃烧,并达到最稀薄的失火极限。天然气的火花点火燃烧显示出比汽油和乙醇更好的稀薄燃烧能力。乙醇比E10具有更窄的稀薄极限,并且比E10和天然气具有更高的燃料转换效率。 E10的燃烧受到高压缩比下的最终气体爆震的限制,这需要火花延迟并降低发动机效率和性能。

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