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Performance and emission characteristics of compression-ignition engine handling biodiesel blends with electronic fumigation

机译:压燃式发动机处理电子熏蒸生物柴油混合物的性能和排放特性

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摘要

Many research works are being carried out to enhance the performances of internal combustion engines to meet out the current energy demand and to reduce the emission with the alternate fuels. In this experimental investigation, the performances and emission characteristics of compression ignition engine were studied by using electronic fuel fumigation method. The lemongrass biodiesel blended with 20% of biodiesel and 80% of diesel (B20) was used as primary fuel and 1-propanol is used as secondary fuel for fumigation. The Kirlosker, single cylinder four stroke, direct injection, and water cooled engine was taken for conduction of tests. The speed of the engine is maintained constant and the engine load was varied in the range of 0%–100% and fumigation injection timing is varied in the range of 1 ms, 3 ms and 5 ms to study the engine parameters. It is studied that the brake thermal efficiency of fumigation fuel at 5 ms is 6.7% higher than diesel and at 3 ms is 3.1% higher than the diesel fuel at 100% load. The specific fuel consumption at 5 ms is 16 % higher than the reference diesel fuel. The 5 ms 1-propanol fumigation produces the maximum HC and CO with minimum smoke and NO because of lower combustion temperature and incomplete combustion. The SFC of fumigation fuel at 5 ms is 18.6% higher than diesel at 100% load and 23 % higher than diesel at 80% load. The net heat release of fumigation fuel (1-propanol) at 1 ms produces 2% higher than the reference diesel at crank angle of 360°. The fumigation fuel (1-propanol) injection timing at 5 ms produces more percentage of CO at different load conditions. It is also studied that the minimum level of CO is 0.38 % at 40% load condition. The fumigation fuel at 5 ms injection timing produces minimum percentage of CO2 at different load conditions. The minimum level of CO2 is 9.3% at 80% load condition. The other emissions are also analyzed and recorded the levels based on the load condition.
机译:为了提高内燃机的性能以满足当前的能源需求并减少替代燃料的排放,正在进行许多研究工作。在本实验研究中,采用电子燃料熏蒸方法研究了压燃式发动机的性能和排放特性。柠檬草生物柴油与20%的生物柴油和80%的柴油(B20)混合在一起用作主要燃料,而1-丙醇则用作熏蒸的辅助燃料。进行了Kirlosker,单缸四冲程,直接喷射和水冷发动机的测试。发动机转速保持恒定,发动机负载在0%–100%范围内变化,熏蒸喷射正时在1 ms,3 ms和5 ms范围内变化,以研究发动机参数。研究表明,熏蒸燃料在5毫秒时的制动热效率比柴油高6.7%,在3毫秒时比100%负荷的柴油高3.1%。 5 ms时的比油耗比参考柴油高16%。由于较低的燃烧温度和不完全燃烧,5 ms的1-丙醇熏蒸可产生最大的HC和CO,同时产生最少的烟气和NO。熏蒸燃料在5毫秒时的SFC比100%负载的柴油高18.6%,比80%负载的柴油高23%。熏蒸燃料(1-丙醇)在1毫秒时的净热释放比360度曲轴转角处的参考柴油高2%。 5 ms处的熏蒸燃料(1-丙醇)喷射正时在不同负载条件下产生更多百分比的CO。还研究了在40%负载条件下的最低CO含量为0.38%。在5 ms的喷射正时,熏蒸燃料在不同的负载条件下产生的CO2百分比最低。在80%的负载条件下,CO2的最低含量为9.3%。还根据负载条件分析并记录其他排放水平。

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