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首页> 外文期刊>Energy Conversion & Management >Combustion, performance and emission analysis of a natural gas-hydrous ethanol dual-fuel spark ignition engine with internal exhaust gas recirculation
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Combustion, performance and emission analysis of a natural gas-hydrous ethanol dual-fuel spark ignition engine with internal exhaust gas recirculation

机译:内部废气再循环天然气 - 含水乙醇双燃料火花点火发动机的燃烧,性能和排放分析

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摘要

This manuscript presents a deep analysis of natural gas-hydrous ethanol dual-fuel combustion in a spark ignition engine with a modified compression ratio and an advanced intake valve opening strategy to promote intemal exhaust gas recirculation (iEGR). Both fuels were port-fuel injected and two different liquid fuel replacements by compressed natural gas (CNG) were tested (18 and 45% by energy). Combustion, performance and pollutant emissions were investigated under stoichiometric air-fuel conditions at 4 bar of net indicated mean effective pressure (IMEP) and 1800 rpm. Results show that dual-fuel mode improves fuel conversion efficiency when compared to CNG-only operation, due to lower carbon monoxide (CO) and unburnt hydrocarbons (HCs) emissions as well as to a better combustion phasing. The use of iEGR, despite deteriorating the combustion process as expected (ignition delay, combustion duration and combustion stability), improves efficiency because of a decrease in pumping losses and wall heat transfer, as well as pollutant emissions reduction. Nitrogen oxide (NOx) emissions increase with dual-fuel operation. However, the influence of iEGR was found to be more significant under dual-fuel mode than under single-fuel operation, with NOx reductions of up to 70% and fuel conversion efficiency improvements of around 2.5%.
机译:该稿件在火花点火发动机中提出了对具有改进的压缩比的天然气 - 含水乙醇双燃料燃烧的深入分析,并进行了改进的压缩比和先进的进气门开启策略,以促进内部排气再循环(IGR)。两种燃料都是燃料燃料注射,并通过压缩天然气(CNG)进行两种不同的液体燃料置换(通过能量18%和45%)。在4巴的化学计量空气 - 燃料条件下调查燃烧,性能和污染物排放,表明平均有效压力(IMEP)和1800rpm。结果表明,由于仅由仅CNG的操作,双燃料模式提高了燃料转换效率,由于较低的一氧化碳(CO)和UNBURNT烃(HCS)排放以及更好的燃烧序列。尽管燃烧过程如预期的(点火延迟,燃烧持续时间和燃烧稳定性)劣化,但由于泵浦损耗和壁热传递的降低,以及污染物排放减少,尽管燃烧过程劣化了燃烧过程。用双燃料操作增加氮氧化物(NOx)排放量。然而,在双燃料模式下发现碘的影响比单燃料模式更为显着,NOx降低高达70%,燃料转换效率提高约2.5%。

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