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Effects of DME Fumigation on HSDI Engine Fuelled with Ethanol

机译:DME熏蒸对HSDI发动机升降乙醇的影响

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摘要

A new method for using ethanol in diesel engine was developed to achieve high thermal efficiency and drastically low NOx emissions. In the study, ethanol was injected directly into engine cylinder around top dead center and was ignited by DME homogenous charge compression ignition combustion. A modified diesel engine was used to carry out the test and the combustion and regulated emission characteristics at different DME ratio (DME %) were evaluated. The results show that the overall heat release process and ignition timing depends significantly on DME %. At small DME %, the combustion displays a peculiar two-stage heat release. The first stage is associated with DME low temperature kinetic reaction, while the second stage is mainly ethanol premixed combustion, and its shape is an approximative isosceles triangle. Moreover, adoption of small DME retards the ethanol combustion phase and decrease ROHR and PRR but increase cycle-to-cycle variation. With optimal DME% NOx emissions are remarkably lower than those of base engine as BMEP is less than 0.27MPa. The effective thermal efficiency is comparable to that of diesel engine.
机译:开发了一种在柴油机中使用乙醇的新方法,以实现高热效率和急剧低的NOx排放。在该研究中,将乙醇直接注入到顶部死点周围的发动机缸中,并被DME均匀电荷压缩点火燃烧点燃。使用改进的柴油发动机进行测试,并评估不同DME比(DME%)的燃烧和调节的发射特性。结果表明,总热释放过程和点火正时显着取决于DME%。在小DME%,燃烧显示特殊的两级热释放。第一阶段与DME低温动力反应相关,而第二阶段主要是乙醇预混燃烧,其形状是近似的等腰三角形。此外,采用小型DME延迟乙醇燃烧相和降低roHR和PRR,但增加了循环到循环变化。随着BMEP小于0.27MPa,最佳DME%NOx排放量显着低于基本发动机。有效的热效率与柴油发动机的热效率相当。

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