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A Comparative Study of HCCI and ATAC Combustion Characteristics Based on Experimentation and Simulations - Influence of the Fuel Octane Number and Internal EGR on Combustion

机译:基于实验和模拟的HCCI和ATAC燃烧特性的对比研究 - 燃料辛烷值和内部EGR对燃烧的影响

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Controlled Autoignition (CAI) combustion processes can be broadly divided between a CAI process that is applied to four-stroke engines and a CAI process that is applied to two-stroke engines. The former process is generally referred to as Homogeneous Charge Compression Ignition (HCCI) combustion and the later process as Active Thermo-Atmosphere Combustion (ATAC). The region of stable engine operation differs greatly between these two processes, and it is thought that the elucidation of their differences and similarities could provide useful information for expanding the operation region of HCCI combustion. In this research, the same two-stroke engine was operated under both the ATAC and HCCI combustion processes to compare their respective combustion characteristics. The results indicated that the ignition timing was less likely to change in the ATAC process in relation to changes in the fuel octane number than it was in the HCCI combustion process. It was also observed that the combustion state and the operation range of HCCI combustion approached those of ATAC under the application of internal exhaust gas recirculation.
机译:控制自燃(CAI)燃烧过程可以广泛地划分应用于四冲程发动机的CAI工艺和应用于两冲程发动机的CAI工艺。前一种方法通常被称为均匀电荷压缩点火(HCCI)燃烧和后来的方法作为活性热气氛燃烧(ATAC)。稳定发动机操作区域在这两个过程之间具有大大不同,并且认为它们的差异和相似度阐明可以提供用于扩展HCCI燃烧的操作区域的有用信息。在该研究中,在ATAC和HCCI燃烧过程中操作相同的双冲程发动机以比较它们各自的燃烧特性。结果表明,点火正时不太可能在与HCCI燃烧过程中的燃料辛烷值的变化相关的ATAC过程中的变化。还观察到,在内部废气再循环中,HCCI燃烧的燃烧状态和HCCI燃烧的操作范围接近ATAC的燃烧。

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