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Investigation of Alternative Ignition System Impact on External EGR Dilution Tolerance in a Turbocharged Homogeneous Direct Injected Spark Ignited Engine

机译:替代点火系统对涡轮增压均质直喷火花点火式发动机外部EGR稀释耐受性影响的研究

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Dilution of a stoichiometric spark ignited (SI) charge with exhaust gas recirculation (EGR) has been shown to improve thermal efficiency and fuel consumption through improved combustion phasing and heat transfer losses at the knock limit in conjunction with a reduction of heat transfer losses and pumping losses at throttled conditions. However, combustion stability can be adversely affected by EGR dilution. The degradation in combustion stability can be mitigated by selecting an ignition system that can successfully propagate a self-sustaining flame kernel in the presence of a high concentration of diluent and increase the apparent burn rate. This investigation examines improvements to EGR dilution tolerance and brake specific fuel consumption (BSFC) for multiple alternative ignition systems at various engine operating points while maintaining a stoichiometric air-fuel ratio. The work was performed on a high compression ratio (CR) turbocharged 4-cylinder direct injection (DI) engine with cooled external EGR. Two configurations of an inductive ignition system were evaluated in addition to four alternative ignition technologies with no attempt to optimize the combustion system hardware. The use of alternative ignition technologies in this investigation show the potential to realize improvements in EGR dilution tolerance and fuel consumption compared to current production technology, normalizing for the parasitic power loss of each ignition system. The results show that utilizing advanced ignition technologies can improve BSFC by 2.4% at the conditions tested.
机译:通过排气再循环(EGR)稀释化学计量的火花点火(SI)装料,可通过在爆震极限时改善燃烧定相和传热损失,同时减少传热损失和泵送来改善热效率和燃料消耗。节流条件下的损失。但是,燃烧稳定性可能受到EGR稀释的不利影响。燃烧稳定性的降低可以通过选择一种点火系统来缓解,该点火系统可以在高浓度稀释剂存在下成功地传播自持火焰核,并提高表观燃烧速率。这项调查研究了在各种发动机工作点,同时保持化学计量空燃比的情况下,多种替代点火系统对EGR稀释耐受性和制动比燃油消耗(BSFC)的改进。这项工作是在具有压缩外部EGR的高压缩比(CR)涡轮增压4缸直喷(DI)发动机上进行的。除了四种替代点火技术外,还评估了感应点火系统的两种配置,而未尝试优化燃烧系统硬件。在这项研究中使用替代点火技术表明,与当前的生产技术相比,有可能实现EGR稀释耐受性和燃油消耗的改善,从而标准化了每个点火系统的寄生功率损耗。结果表明,在测试条件下,使用先进的点火技术可以将BSFC提高2.4%。

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