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Effect of fuel preheating with blended fuels and exhaust gas recirculation on diesel engine operating parameters

机译:混合燃料的燃料预热和废气再循环对柴油机运行参数的影响

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摘要

This study investigates the influence of preheating on fuel properties of biodiesel and its blends on the performance of a diesel engine. Subsequently, the effectiveness of exhaust gas recirculation (EGR) rate for reducing the NOxemission has also been explored. At 102°C, fuel-preheating temperature, the average percentage reductions of kinematic viscosity and density of JOME was 49% and 4.3%, respectively with decrease (17.4%) in brake specific fuel consumption (BSFC) and increase (23%) of brake thermal efficiency (BTHE). The comparative study of all fuels with diesel revealed the fact that the blended fuel (40% biodiesel – 40PBD) with preheating (102°C), is seen to be most efficient when operated without EGR mode. At full load engine testing with same test fuel, BSFC reduces by 19%, BTHE increases by 16%, the exhaust gas temperature (EGT) drops by 6% with slight increase in volumetric efficiency (2%). The carbon monoxide and unburned hydrocarbon emission was reduced by 19.5% and 4.8%, respectively while oxides of nitrogen (NOx) emission was increased by 17.5% compared to diesel fuel. The inclusion of the EGR rate of 30% for 40PBD test fuel, meaningfully decreases the average NOxemission by 68.8% with almost insignificant change in engine BSFC and BTHE.
机译:这项研究调查了预热对生物柴油及其混合物的燃料特性对柴油机性能的影响。随后,还研究了排气再循环(EGR)速率对减少NOx排放的有效性。在102°C的燃料预热温度下,JOME的运动粘度和密度的平均降低百分比分别为49%和4.3%,其中制动比油耗(BSFC)降低了(17.4%),而制动油耗增加了(23%)制动热效率(BTHE)。对所有柴油燃料的比较研究表明,在没有EGR模式下运行时,预热(102°C)的混合燃料(40%生物柴油– 40PBD)被认为是最有效的。在使用相同测试燃料的满负荷发动机测试中,BSFC降低19%,BTHE降低16%,排气温度(EGT)降低6%,体积效率略有提高(2%)。与柴油相比,一氧化碳和未燃烧碳氢化合物的排放量分别减少了19.5%和4.8%,而氮氧化物(NOx)的排放量增加了17.5%。对于40PBD测试燃料,包含30%的EGR率,可显着降低平均NOx排放量68.8%,而发动机BSFC和BTHE的变化几乎不明显。

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