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Combustion and Emission Characteristics in a DME Premixed Charge Compression Ignition Diesel Engine

机译:DME预混电荷压缩点火点火柴油发动机中的燃烧和排放特性

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Premixed charge compression ignition (PCCI) combustion has been shown to be a promising combustion technique to improve the combustion process and simultaneously reduce both Nitrogen oxides (NO_x) and particulate matter (PM) emissions. The combination of port dimethyl ether (DME) induction and in-cylinder diesel direct-injection compression ignition (DICI) combustion was studied in a YTR 2105 engine. The main purposes of this paper were to investigate the effects of DME introduction on the combustion and emission characteristics of a diesel engine. Results obtained revealed that PCCI combustion process was composed of the homogeneous charge compression ignition (HCCI) combustion and conventional diffusion combustion. As the DME quantity was increased, the start of combustion (SOC) was advanced. The peak values of in-cylinder pressure and mass averaged temperature increased as well as the maximum heat release rate of DME HCCI combustion. But the maximum heat release rate of diesel diffusion combustion decreased. Meanwhile, the cycle-to-cycle variations of the maximum in-cylinder pressure and IMEP in the DME-diesel engine were higher than those in conventional diesel engine and the coefficient of variation (COV) of maximum in-cylinder pressure and IMEP increased with a rise of DME induction quantity. The equivalent specific fuel consumption decreased with an increase in DME quantity. NO_x emission slightly reduced; while smoke and PM missions drastically decreased with a rise of DME induction quantity. PM emission was extremely low at high DME induction quantity.
机译:预混合电荷压缩点火(PCCI)燃烧已被证明是一种有前途的燃烧技术,以改善燃烧过程,同时减少氮氧化物(NO_X)和颗粒物质(PM)排放。在YTR 2105发动机中研究了端口二甲醚(DME)诱导和缸内燃烧缸内燃烧的组合和气缸柴油直喷压缩点火(DICI)燃烧。本文的主要目的是探讨DME引入对柴油发动机燃烧和排放特性的影响。得到的结果显示,PCCI燃烧过程由均匀电荷压缩点火(HCCI)燃烧和常规扩散燃烧组成。随着DME数量的增加,燃烧的开始(SOC)是先进的。缸内压力和质量平均温度的峰值增加以及DME HCCI燃烧的最大散热速率。但柴油扩散燃烧的最大热释放速率降低。同时,DME-柴油发动机中最大缸内压力和IMEP的循环变化高于传统的柴油发动机和最大缸内压力的变化系数(COV)和IMEP增加DME诱导量的升高。等效的特定燃料消耗随着DME量的增加而降低。 NO_X发射略微减少;虽然烟雾和PM任务随着DME诱导数量的增加而大幅下降。 PM在高DME诱导量下发射极低。

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