首页> 外文会议>Kinetically controlled IC combustion, 2012. >Experimental Study on Spark Assisted Compression Ignition (SACI) Combustion with Positive Valve Overlap in a HCCI Gasoline Engine
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Experimental Study on Spark Assisted Compression Ignition (SACI) Combustion with Positive Valve Overlap in a HCCI Gasoline Engine

机译:HCCI汽油机上带有正气门重叠的火花辅助压缩点火燃烧实验研究

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The spark-assisted compression ignition (SACI) is widely used to expend the high load limit of homogeneous charge compression ignition (HCCI), as it can reduce the high heat release rate effectively while partially maintain the advantage of high thermal efficiency and low NO_x emission. But as engine load increases, the SACI combustion traditionally using negative valve overlap strategy (NVO) faces the drawback of higher pumping loss and limited intake charge availability, which lead to a restricted load expansion and a finite improvement of fuel economy. In this paper, research is focused on the SACI combustion using positive valve overlap (PVO) strategy. The characteristics of SACI combustion employing PVO strategy with external exhaust gas recirculation (eEGR) are investigated. Two types of PVO strategies are analyzed and compared to explore their advantages and defects, and the rules of adjusting SACI combustion with positive valve overlap are concluded. Based on that, the fuel efficient strategy for SACI combustion at mid-high load is identified. Using the optimized PVO strategy, stable SACI combustion is achieved in a wider load range, with significant improvements on fuel economy and pumping loss.
机译:火花辅助压缩点火(SACI)被广泛用于扩展均质充量压缩点火(HCCI)的高负荷极限,因为它可以有效降低高放热率,同时部分保持高热效率和低NO_x排放的优势。但是随着发动机负荷的增加,传统上使用负气门重叠策略(NVO)的SACI燃烧面临着更高的泵送损失和有限的进气充量可用性的缺点,这导致了有限的负荷膨胀和燃油经济性的有限改善。在本文中,研究集中于使用正气门重叠(PVO)策略的SACI燃烧。研究了采用PVO策略和外部废气再循环(eEGR)的SACI燃烧特性。分析并比较了两种PVO策略,以探讨它们的优缺点,并得出了气门正重叠时调整SACI燃烧的规则。基于此,确定了中高负荷下SACI燃烧的节油策略。使用优化的PVO策略,可以在较宽的负载范围内实现稳定的SACI燃烧,并显着改善了燃油经济性和泵送损耗。

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