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A study of autoignition and combustion in two-stroke ATAC engine - compression ignition characteristics of low carbon alternative fuels

机译:低碳替代燃料两冲程ATAC发动机 - 压缩点火特性的自燃与燃烧研究

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ATAC (Active Thermo-Atmosphere Combustion) is autoignition combustion in two-stroke engines, which occurs by diluting trapped Fuel-Air mixture with residual gas to maintain a high temperature at low load operation. In this study, two-stroke ATAC engine testing was carried out to obtain fundamental knowledge for controlling the autoignition and combustion characteristics in this premixed charge compression-ignition combustion engine. The influences of delivery ratio, equivalence ratio and engine speed (i.e., compression speed) on autoignition timing, autoignition temperature and combustion duration were investigated. It was found that the ATAC autoignition temperature and combustion duration did not depend on the delivery ratio and equivalence ratio, but were determined by the individual fuel characteristics. Increasing the compression speed reduced the ATAC autoignition temperature a little. ATAC autoignition occurred at the crank angle when the mass-averaged temperature of the mixture of residual gas and trapped Fuel-Air mixture reached a certain temperature, characteristic to the fuel used. In other words, the autoignition timing depended on the mass-averaged temperature at port closing timing. But at certain delivery ratios, autoignition did not occur, even though the temperature at this timing was in the autoignition region. This point must be investigated further.
机译:ATAC(活性热气氛燃烧)是两冲程发动机中的自燃燃烧,其通过稀释捕获的燃料 - 空气混合物与残留气体稀释以保持高负荷操作的高温。在这项研究中,进行了两冲程ATAC发动机测试,以获得用于控制该预混电荷压缩点火燃烧发动机中的自燃和燃烧特性的基础知识。研究了对自燃定时,自燃温度和燃烧持续时间对自燃定时的输送比率,等效比和发动机速度(即压缩速度)的影响。发现ATAC自燃温度和燃烧持续时间不依赖于输送比率和等效比,而是由单独的燃料特性确定。增加压缩速度降低了ATAC自燃温度。当残留气体混合物和被捕获的燃料 - 空气混合物的混合物的质量平均温度达到一定温度时,在曲柄角发生ATAC自身的自动化,与所用燃料的特征有特征。换句话说,自燃定时依赖于端口闭合正时的质量平均温度。但在某些交付比率下,即使在自燃区域中的温度下,也不会发生自燃。必须进一步调查这一点。

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