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首页> 外文期刊>International Journal of Energy and Power Engineering >Performance and Emissions of a Methane Fueled V-Twin Four Stroke Spark Ignited Engine
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Performance and Emissions of a Methane Fueled V-Twin Four Stroke Spark Ignited Engine

机译:甲烷燃料的V型双冲程四冲程火花点火式发动机的性能和排放

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This paper discusses the on-going study of a modified two-cylinder V-twin engine used to research and analyze natural gas combustion. The purpose of the experimentation is to determine the feasibility of Natural Gas as an alternative fuel for automotive and stationary power generation applications. During testing the engine was operated under various loads and RPMs. The compression ratio (CR) of the engine was increased from 9.0:1 to 13.8:1 with the expectation of improved fuel combustion and improved emissions. The Exhaust Gas Recirculation (EGR) and air-fuel ratio (AFR) were also varied to determine optimal levels that would improve emissions without compromising excessive power (hp). Lean limit analysis was conducted to understand the effect of increased AFR on combustion and emissions. Results from testing confirmed an emissions benefit of going from low compression to high compression. The Total Hydrocarbons (THC) decreased 25%, Carbon Monoxide levels decrease by 48% and the Oxides of Nitrogen (NOx) decreased by 20%. A low percentage of EGR, between 3-6 %, helped reduce Oxides of Nitrogen (NOx) emissions from over 830 ppm to less than 450 ppm, an improvement of almost 50%, with less than a 2% increase in THC and CO. Power (hp) actually improved by about 1.5% with 3% EGR. Increasing the AFR proved to decrease emissions but at a cost of power and the lean limit of the engine was found to be between 22 and 23 AFR. At 22 AFR the THC emissions decreased by 40%, CO emission by 90% and NOx emissions by almost 50%, but the power decreased by over 35%.
机译:本文讨论了用于研究和分析天然气燃烧的改进型两缸V型双缸发动机的持续研究。实验的目的是确定天然气作为汽车和固定式发电应用替代燃料的可行性。在测试期间,发动机在各种负载和RPM下运行。发动机的压缩比(CR)从9.0:1增加到13.8:1,以期改善燃料燃烧和排放。还对废气再循环(EGR)和空燃比(AFR)进行了更改,以确定可以在不损害过大功率(hp)的情况下提高排放的最佳水平。进行了贫油极限分析,以了解增加的AFR对燃烧和排放的影响。测试结果证实了从低压缩到高压缩的排放益处。总碳氢化合物(THC)降低了25%,一氧化碳含量降低了48%,氮氧化物(NOx)降低了20%。较低的EGR百分比(介于3%至6%之间)有助于将氮氧化物(NOx)排放量从830 ppm以上减少至450 ppm以下,提高了近50%,而四氢甲烷和一氧化碳的增加量不到2%。使用3%的EGR时,功率(hp)实际上提高了约1.5%。事实证明,增加AFR可以减少排放,但要付出一定的动力,引擎的稀薄极限在22至23 AFR之间。在22 AFR下,THC排放降低了40%,CO排放降低了90%,NOx排放降低了近50%,但功率降低了35%以上。

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