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Experimental Investigation on DME Assisted Gasoline CAI/HCCI Combustion with Intake Re-Breathing Valve Strategy

机译:DME辅助汽油CAI / HCCI燃烧试验研究进气再呼吸阀策略

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In order to investigate feasibility of DME (Di-methyl ether) assisted gasoline CAI (controlled-auto ignition) combustion, direct DME injection is employed to act as the ignition source to trigger the auto-ignition combustion of premixed gasoline/air mixture with high temperature exhaust gas. Intake re-breathing valve strategy is adopted to obtain internal exhaust recirculation (EGR) that regulates heat release rate and ignitability of the premixed gasoline and air mixture. The effects of intake re-breathing valve timing and 2nd DME injection timing of different split injection ratios were investigated and discussed in terms of combustion characteristics, emission and efficiencies. The analyses showed that re-breathing intake valve timing had a large effect on the operation range of CAI combustion due to EGR and intake temperature variation. The results of 2nd DME injection timing on various 1st / 2nd DME injection ratio indicated that the optimized 2nd DME injection timing depends on 1st / 2nd DME injection ratio. As1st DME injection ratio was increased, more retarded 2nd DME injection timing was required.
机译:为了探讨DME(二甲基醚)辅助汽油CAI(控制 - 自动点火)燃烧的可行性,采用直接DME注射作为点火源,以引发预混合汽油/空气混合物的自燃燃烧温度排气。采用进气再呼吸阀策略来获得调节预混汽油和空气混合物的热释放速率和可燃性的内部排气再循环(EGR)。研究了进气再呼吸气门定时和第二DME注射时间对不同分裂注射比的影响,并在燃烧特征,排放和效率方面进行了讨论。分析表明,由于EGR和进气温度变化,再呼吸进气门正时对CAI燃烧的操作范围具有很大的影响。在各种1 / 2ND DME喷射率上的第二DME注射定时的结果表明优化的第2 DME喷射定时取决于1ST / 2ND DME喷射比。 as1st dme注射率增加,需要更加延迟的第二DME喷射时间。

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