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Experimental combustion analysis of a hsdi diesel engine fuelled with palm oil biodiesel-diesel fuel blends

机译:以棕榈油生物柴油 - 柴油混合燃料为燃料的hsdi柴油机的实验燃烧分析

摘要

Differences in the chemical nature between petroleum diesel fuels and vegetable oils-based fuels lead to differences in their physical properties affecting the combustion process inside the engine. In this work a detailed combustion diagnosis was applied to a turbocharged automotive diesel engine operating with neat palm oil biodiesel (POB), No. 2 diesel fuel and their blends at 20 and 50% POB by volume (B20 and B50 respectively). To isolate the fuel effect, tests were executed at constant power output without carrying out any modification of the engine or its fuel injection system. As the POB content in the blend increased, there was a slight reduction in the fuel/air equivalence ratio from 0.39 (B0) to 0.37 (B100), an advance of injection timing and of start of combustion. Additionally, brake thermal efficiency, combustion duration, maximum mean temperature, temperature at exhaust valve opening and exhaust gas efficiency decreased; while the peak pressure, exergy destruction rate and specific fuel consumption increased. With diesel fuel and the blends B20 and B50 the same combustion stages were noticed. However, as a consequence of the differences pointed out, the thermal history of the process was affected. The diffusion combustion stage became larger with POB content. For B100 no premixed stage was observed.
机译:石油柴油燃料和植物油基燃料之间的化学性质差异会导致其物理性质差异,从而影响发动机内部的燃烧过程。在这项工作中,详细的燃烧诊断应用于以纯棕榈油生物柴油(POB),2号柴油及其混合气(分别为POB的20%和50%)运行的涡轮增压汽车柴油机(分别为B20和B50)。为了隔离燃料影响,在不对发动机或其燃料喷射系统进行任何修改的情况下,以恒定功率输出进行了测试。随着共混物中POB含量的增加,燃油/空气当量比从0.39(B0)略微降低至0.37(B100),这是喷射正时提前和燃烧开始的原因。此外,制动器的热效率,燃烧持续时间,最高平均温度,排气门打开时的温度和排气效率降低了;而峰值压力,火用破坏率和比燃料消耗增加。对于柴油燃料和混合物B20和B50,注意到了相同的燃烧阶段。然而,由于所指出的差异,该过程的热历史受到影响。随着POB含量的增加,扩散燃烧阶段变大。对于B100,未观察到预混合阶段。

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