首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Improvement of Performance and Reduction of Exhaust Emissions by Pilot-Fuel-Injection Control in a Lean-Burning Natural-Gas Dual-Fuel Engine
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Improvement of Performance and Reduction of Exhaust Emissions by Pilot-Fuel-Injection Control in a Lean-Burning Natural-Gas Dual-Fuel Engine

机译:稀薄燃烧天然气双燃料发动机的先导燃油喷射控制提高了性能并减少了废气排放

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The purpose of this study is to determine a pilot injection control strategy for the improvement of dual-fuel combustion with a lean natural gas/air mixture. Experiments were performed using a single cylinder test engine equipped with a common-rail injection system. The injection pressure, timing and quantity were varied at a fixed overall equivalence ratio of 0.5. The results of single-stage-injection experiments show that middle injection timings (-20 to -10 degATDC) produce low emissions of unbumed species, because the pilot-fuel vapor spreads into the natural-gas lean mixture and raises the effective equivalence ratio, which leads to fast flame propagation. Early injection (-35degATDC) is advantageous for low NOx emission; however, increased emissions of unburned species are barriers. Two-stage pilot injection offers improved thermal efficiency and reduced exhaust emissions when early first-stage injection (-45 to -40degATDC) and moderately early second-stage injection are selected. Analysis of the heat release rate data indicates that the second injection controls the start of heat release, while the first-stage injection affects the overall flame propagation speed. Increased ratio of the first-stage injection quantity is useful for low hydrocarbon (HC) and NOx emissions with high thermal efficiency.
机译:这项研究的目的是确定一种先导喷射控制策略,以改善贫天然气/空气混合物的双燃料燃烧。使用装有共轨喷射系统的单缸测试发动机进行实验。喷射压力,时间和数量以固定的总当量比0.5改变。单阶段喷射实验的结果表明,中间喷射正时(-20至-10 degATDC)产生的未燃物排放量低,这是因为引燃燃料蒸汽扩散到稀薄的天然气混合物中并提高了有效当量比,导致火焰快速传播。早期喷射(-35degATDC)有利于NOx的低排放;但是,未燃烧物种的排放增加是障碍。当选择早期的第一阶段喷射(-45至-40degATDC)和适度的第二阶段早期喷射时,两级引燃喷射可提高热效率并减少废气排放。对放热速率数据的分析表明,第二次喷射控制着放热的开始,而第一阶段喷射会影响整体火焰的传播速度。增加第一阶段喷射量的比例对于具有高热效率的低碳氢化合物(HC)和NOx排放非常有用。

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