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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >A numerical analysis of the emissions characteristics of biodiesel blended fuels
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A numerical analysis of the emissions characteristics of biodiesel blended fuels

机译:生物柴油混合燃料排放特性的数值分析

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摘要

Computer simulations were conducted to study the combined effects of methyl soyate (biodiesel) blends with no.2 diesel fuel on diesel engine (D.I.) performance. Diesel engine emissions and heat release rates were some of the parameters studied.The results from the computer simulations were compared against previously published results (Choi et al., 1997) from engine tests conducted on a single cylinder version of the Caterpillar 3400 series heavy duty diesel engine. The experiments andsimulations were performed over a range of injection timings allowing particulate versus NOx trade-off curves to be generated. Phillips 66 certified no.2 diesel fuel was used as the baseline; mixtures of 20 percent and 40 percent by volume of methylsoyate with the baseline no.2 diesel fuel were used as the biodiesel blends.The multidimensional KIVA-II code (ERC version 2.4) was used to better understand the factors controlling the formation of NOx and soot. KIVA -II modeled the high load, single injection combustion of the baseline #2 diesel fuel and the biodiesel blends.The code was changed to account for different fuel effects and the computational results were then compared against the experimental data. It is concluded that the increased NOx observed with the use of biodiesel fuels (in spite of their lower heats ofcombustion) is due to increased local temperatures as a result of enhanced fuel/air mixing and increased spray penetration. The increased spray penetration results from the higher fuel viscosity of the biodiesel blended fuels which leads to reducedinjection durations.
机译:通过计算机模拟研究了大豆酸甲酯(生物柴油)与2号柴油燃料的混合物对柴油发动机性能的综合影响。柴油发动机排放和热释放率是研究的一些参数。将计算机模拟的结果与先前发表的在 Caterpillar 3400 系列重型柴油发动机的单缸版本上进行的发动机测试结果(Choi 等人,1997 年)进行了比较。实验和模拟在一系列注入时间内进行,从而生成颗粒物与氮氧化物的权衡曲线。以Phillips 66认证的2号柴油为基准;使用20%和40%体积的甲基大豆酸酯与基线2号柴油燃料的混合物作为生物柴油混合物。多维KIVA-II代码(ERC版本2.4)用于更好地了解控制NOx和烟尘形成的因素。KIVA -II 模拟了基线 #2 柴油燃料和生物柴油混合物的高负荷、单喷射燃烧。更改代码以考虑不同的燃料效应,然后将计算结果与实验数据进行比较。得出的结论是,使用生物柴油燃料观察到的氮氧化物增加(尽管它们的燃烧热较低)是由于燃料/空气混合增强和喷雾渗透增加导致局部温度升高。喷雾渗透力的增加是由于生物柴油混合燃料的燃料粘度较高,从而导致喷射持续时间缩短。

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