首页> 外文期刊>International Journal of Automotive Technology >ENHANCEMENT OF NOx-PM TRADE-OFF IN A DIESEL ENGINE ADOPTING BIO-ETHANOL AND EGR
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ENHANCEMENT OF NOx-PM TRADE-OFF IN A DIESEL ENGINE ADOPTING BIO-ETHANOL AND EGR

机译:采用生物乙醇和EGR的柴油发动机中NOx-PM交换的增强

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摘要

For realizing a premixed charge compression ignition (PCCI) engine, the effects of bio-ethanol blend oil and exhaust gas recirculation (EGR) on PM-NOx trade-off have been investigated in a single cylinder direct injection diesel engine with the compression ratio of 17.8. In the present experiment, the ethanol blend ratio and the EGR ratio were varied focusing on ignition delay, premixed combustion, diffusive combustion, smoke, NOx and the thermal efficiency. Very low levels of 1.5 [g/kWh] NOx and 0.02 [g/kWh] PM, which is close to the 2009 emission standards imposed on heavy duty diesel engines in Japan, were achieved without deterioration of the thermal efficiency in the PCCI engine operated with the 50% ethanol blend fuel and the EGR ratio of 0.2. It is found that this improvement can be achieved by formation of the premixed charge condition resulting from a longer ignition delay. A marked increase in ignition delay is due to blending ethanol with low cetane number and large latent heat, and due to lowering in-cylinder gas temperature on compression stroke based on the EGR. It is noticed that smoke can be reduced even by increasing the EGR ratio under a highly premixed condition.
机译:为了实现预混合增压压燃式(PCCI)发动机,在单缸直喷柴油机中,研究了生物乙醇混合油和废气再循环(EGR)对PM-NOx权衡的影响。 17.8。在本实验中,改变了乙醇混合比和EGR比例,着重于点火延迟,预混燃烧,扩散燃烧,烟气,NOx和热效率。在不降低运行的PCCI发动机的热效率的前提下,实现了非常低的1.5 [g / kWh] NOx和0.02 [g / kWh] PM排放水平,接近于日本对重型柴油发动机的2009年排放标准。 50%乙醇混合燃料,EGR率为0.2。已经发现,这种改善可以通过形成由较长的点火延迟引起的预混合装料条件来实现。点火延迟的显着增加归因于混合低十六烷值和大潜热的乙醇,以及由于基于EGR的压缩冲程降低了缸内气体温度。注意到即使在高度预混合的条件下,即使增加EGR率也可以减少烟雾。

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