首页> 外文期刊>Journal of thermal analysis and calorimetry >Effects of equivalence and fuel ratios on combustion characteristics of an RCCI engine fueled with methane/n-heptane blend
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Effects of equivalence and fuel ratios on combustion characteristics of an RCCI engine fueled with methane/n-heptane blend

机译:用甲烷/正庚烷共混物燃料燃料燃料燃料特性对等效和燃料比的影响

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Rising fuel costs and efforts for reducing greenhouse gases have led researchers to propose optimized models of combustion which have high efficiency and low emissions. Reactivity controlled compression ignition (RCCI) engines are attractive due to their high efficiency and low NOx and soot emissions over a wide range of operating conditions. In this study, methane and n-heptane are used as low and high reactive fuels, respectively, to create suitable fuel stratification within the cylinder. Modeling is carried out by AVL FIRE coupled with a chemical kinetics solver to investigate the effects of fuel ratio, initial temperature and equivalence ratio on the combustion performance and emission characteristics. Methane/n-heptane ratios are varied according to the energy ratio of each fuel while total input energy and total equivalence ratios are fixed. By increasing methane energy ratio from 65% to 85% in the constant intake temperature and pressure, the mixture Octane number increases, which would lead to an increase in ignition delay up to 5 crank angles. As a result, IMEP would be enhanced and also NOx emission decreases because of lower combustion temperature. By increasing intake temperature, the maximum in-cylinder pressure, heat release rate and NOx emission would increase significantly while soot emission decreases, and also ringing intensity increases up to 10%. On the other hand, increasing intake temperature reduces volumetric efficiency; as a result, IMEP is reduced by 11%. Also by increasing equivalence ratio from 0.35 to 0.55 in a constant energy ratio, noticeable growth in the maximum amount of pressure and temperature could be achieved; consequently, NOx emission would increase significantly, IMEP increases by 43%, and ISFC decreases by 30%. The results indicate that these parameters have significant effects on the heavy-duty RCCI engine performance and emissions.
机译:降低温室气体的燃料成本和努力的努力引领了研究人员提出了具有高效率和低排放的燃烧型号。反应性受控压缩点火(RCCI)发动机由于其高效率和低NOx和烟灰排放而在各种操作条件下进行吸引力。在该研究中,甲烷和正庚烷分别用作低和高反应性燃料,以在汽缸内产生合适的燃料分层。建模由AVL Fire与化学动力学求解器相结合,以研究燃料比,初始温度和等效比对燃烧性能和排放特性的影响。根据每个燃料的能量比,甲烷/正庚烷比变化,而总输入能量和总等值比是固定的。通过将甲烷能量比增加在恒定的进气温度和压力下的65%至85%,混合物辛烷值增加,这将导致点火延迟增加到5次曲柄角度。结果,由于燃烧温度较低,IMEP将增强,并且由于燃烧温度较低。通过增加进气温度,最大圆柱体压力,热释放率和NOx排放在烟灰发射减少时会显着增加,并且振铃强度增加高达10%。另一方面,增加进气温度降低了体积效率;结果,IMEP减少了11%。同样通过在恒定能比中增加0.35至0.55的等效比,可以实现最大压力和温度的显着生长;因此,NOx排放将显着增加,IMEP增加43%,ISFC降低30%。结果表明,这些参数对重型RCCI发动机性能和排放具有显着影响。

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