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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effects of applying EGR with split injection strategy on combustion performance and knock resistance in a spark assisted compression ignition (SACI) engine
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Effects of applying EGR with split injection strategy on combustion performance and knock resistance in a spark assisted compression ignition (SACI) engine

机译:应用EGR分流注射策略对火花辅助压缩点火(SACI)发动机燃烧性能和抗冲击性的影响

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Spark assisted compression ignition (SACI) is a proven method for extending the load range and controlling the combustion phase of homogeneous charge compression ignition (HCCI) while maintaining high thermal efficiency. However, the occurrence of abnormal combustion, such as knock, limits the improvement of efficiency in SACI combustion. In this study, the effects of a coupling strategy, which combines internal/external exhaust gas recirculation (i & e-EGR) and split injection, on knock suppression in SACI mode were investigated in a high compression-ratio, single-cylinder gasoline engine with a fully variable valve system. During the experiment, the mass of intake air remained constant while e-EGR was added. The results show that the coupling strategy combines the advantages of e-EGR and split injection, providing an effective method for resisting knock and improving engine efficiency. The results also demonstrate that applying e-EGR to SACI combustion significantly decreases the knock intensity by effectively reducing the in-cylinder temperature. In addition, the effect of split injection on knock suppression is related to the initial in-cylinder temperature and fuel stratification. With high initial in-cylinder temperature, the relationship between knock probability and split injection timing is non-monotonic. However, with low initial in-cylinder temperature, the capacity of resisting knock monotonically increases with the delay of secondary injection timing.
机译:火花辅助压缩点火(SACI)是一种延伸负载范围并控制均匀电荷压缩点火(HCCI)的燃烧阶段的经过验证的方法,同时保持高热效率。然而,异常燃烧的发生,例如爆震,限制了SACI燃烧效率的提高。在该研究中,在高压缩 - 比单缸汽油发动机中研究了结合内部/外部废气再循环(I&E-E-E和E-E和E-E-E和E-E-E和E-E-E和E-E-E和E-E-E和E-E-E和E-E-E和E-E-E-E和E-E-E和E-E-E和E-E-E-E和E-E-E和E-E-E和E-E-E-E和E-E-E-E和E-E-E-E和E-E-E&E-E-E和E-E-E-E和E-E-E-E和E-E-E-E和E-E-E-E和E-E-E和E-E-E-E和E-EGL)和分离注射的耦合策略的影响。采用完全可变的阀门系统。在实验期间,加入E-EGR时,进气量的质量保持恒定。结果表明,耦合策略结合了E-EGR和分流注射的优点,提供了一种有效的抵抗爆震和提高发动机效率的方法。结果还证明将E-EGR与SACI燃烧应用通过有效降低缸内温度来显着降低爆震强度。此外,分离喷射对爆震抑制的影响与初始缸内温度和燃料分层有关。具有高初始缸内温度,爆震概率与分离注射正时之间的关系是非单调的。然而,在初始柱塞温度下,抗冲击能力单调随着次级喷射正时的延迟而增加。

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