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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal efficiency improvement of PODE/Gasoline dual-fuel RCCI high load operation with EGR and air dilution
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Thermal efficiency improvement of PODE/Gasoline dual-fuel RCCI high load operation with EGR and air dilution

机译:具有EGR和空气稀释的PODE /汽油双燃料RCCI高负荷运行的热效率提高

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摘要

In recent years, polyoxymethylene dimethyl ethers (PODE) is used for reactivity gradient enlargement in direct injection engines due to its high Cetane Number (CN). In the current study, thermal efficiency improvement of PODE/Gasoline dual-fuel reactivity controlled compression ignition (RCCI) high load operation with exhausted gas recirculation (EGR) and air dilution is experimentally investigated, together with a zero-dimension (0-D) thermodynamic analysis. The experimental result shows that 15% gross indicated thermal efficiency (ITEg) improvement can be achieved through both air dilution and EGR dilution. Air dilution under fixed intake pressure shows significant effects on ITEg improvements. EGR dilution under fixed equivalence ratio (Phi) slightly reduces the ITEg. Further study with fixed the total charge heat capacity reveals that at lean conditions, the total charge heat capacity has greater influence on the combustion processes and ITEg than equivalence ratio. Comparing the experimental results with the thermodynamic modelling results, it indicates that combustion efficiency is an important factor that determines the ITEg with air/EGR dilution. Further analysis reveals that air dilution greatly improves the CO oxidation owing to the increased oxygen concentration, which obviously improves the combustion efficiency and ITEg.
机译:近年来,由于其高十六烷值(CN),聚甲醛二甲基醚(PODE)用于直接喷射发动机的反应性梯度扩大。在目前的研究中,具有用尽的气体再循环(EGR)和空气稀释的PODE /汽油双燃料反应性控制压缩点火(RCCI)高负荷操作的热效率提高,以及空气稀释,以及零维度(0-D)热力学分析。实验结果表明,通过空气稀释和EGR稀释,可以实现15%的总指出的热效率(ITEG)改进。固定进气压力下的空气稀释显示出对ITEG改进的显着影响。在固定等效率(PHI)下EGR稀释略微减少ITEG。进一步研究固定的总电荷热容量显示,在贫条件下,总电荷热容量对燃烧过程和ITEG的影响比等价率更大。将实验结果与热力学建模结果进行比较,表明燃烧效率是用空气/ EGR稀释来确定ITEG的重要因素。进一步的分析表明,由于氧气浓度增加,空气稀释极大地改善了共氧化,这显然可以提高燃烧效率和ITEG。

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