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Analysis of Transition from HCCI to CI via PPC with Low Octane Gasoline Fuels Using Optical Diagnostics and Soot Particle Analysis

机译:使用光学诊断和烟灰颗粒分析,通过PPC从HCCI转变为CI的转型分析,烟灰颗粒分析

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In-cylinder visualization, combustion stratification, and engine-out particulate matter (PM) emissions were investigated in an optical engine fueled with Haltermann straight-run naphtha fuel and corresponding surrogate fuel. The combustion mode was transited from homogeneous charge compression ignition (HCCI) to conventional compression ignition (CI) via partially premixed combustion (PPC). Single injection strategy with the change of start of injection (SOI) from early to late injections was employed. The high-speed color camera was used to capture the in-cylinder combustion images. The combustion stratification was analyzed based on the natural luminosity of the combustion images. The regulated emission of unburned hydrocarbon (UHC), carbon monoxide (CO) and nitrogen oxides (NO_X) were measured to evaluate the combustion efficiency together with the in-cylinder rate of heat release. Soot mass concentration was measured and linked with the combustion stratification and the integrated red channel intensity of the high-speed images for the soot emissions. The nucleation nanoscale particle number and the particle size distribution were sampled to understand the effect of combustion mode switch.
机译:在用Haltermann直接运行石脑油燃料和相应的替代燃料的光学发动机中研究了缸内可视化,燃烧分层和发动机输出颗粒物质(PM)排放。通过部分预混合的燃烧(PPC)将燃烧模式从均匀电荷压缩点火(HCCI)转变为常规压缩点火(CI)。采用从早期注射到晚期注射开始的单一注射策略(SOI)。高速彩色相机用于捕获缸内燃烧图像。基于燃烧图像的天然亮度分析燃烧分层。测量未燃烧的烃(UHC),一氧化碳(CO)和氮氧化物(NO_X)的调节发射,以评估燃烧效率以及缸内的热释放速率。测量烟灰质量浓度并与燃烧分层和用于烟灰排放的高速图像的集成红色通道强度。取样成核纳米级粒子数和粒度分布以了解燃烧模式开关的效果。

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