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Combustion Homogeneity and Emission Analysis during the Transition from CI to HCCI for FACE I Gasoline

机译:从CI到HCCI过渡期间的燃烧均匀性和排放分析脸上的汽油

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Low temperature combustion concepts are studied recently to simultaneously reduce NO_X and soot emissions. Optical studies are performed to study gasoline PPC in CI engines to investigate in-cylinder combustion and stratification. It is imperative to perform emission measurements and interpret the results with combustion images. In this work, we attempt to investigate this during the transition from CI to HCCI mode for FACE I gasoline (RON = 70) and its surrogate, PRF70. The experiments are performed in a single cylinder optical engine that runs at a speed of 1200 rpm. Considering the safety of engine, testing was done at lower IMEP (3 bar) and combustion is visualized using a high-speed camera through a window in the bottom of the bowl. From the engine experiments, it is clear that intake air temperature requirement is different at various combustion modes to maintain the same combustion phasing. While a fixed intake air temperature is required at HCCI condition, it varies at PPC and CI conditions between FACE I gasoline and PRF70. Three zones are identified 1) SOI = -180 to -80 CAD (aTDC) is HCCI zone 2) SOI = -40 to -20 CAD (aTDC) is PPC zone 3) After SOI = -15 CAD (aTDC) is CI zone. Combustion duration, ignition delay, start of combustion and CA90 (crank angle at which 90% of fuel burnt) are comparable between FACE I gasoline and PRF70. The combustion images show a prominent soot flame at CI condition, while only blue coloured premixed flames are visible at PPC condition for both the fuels. PRF70 seems to have a pronounced premixed effect when compared to FACE I gasoline at early injections, showing a decreased level of stratification. NO_X emission and soot concentration decreases from CI condition and attains a constant zero value at HCCI condition for both FACE I gasoline and PRF70. CO and CO_2 emissions matches between FACE I gasoline and PRF70 at PPC and CI condition, while CO emission is lower for PRF70 at HCCI condition.
机译:最近研究了低温燃烧概念,同时降低了NO_X和烟灰排放。进行光学研究以研究CI发动机中的汽油PPC,以研究气缸燃烧和分层。必须执行排放测量并用燃烧图像解释结果。在这项工作中,我们试图在从CI转换到HCI模式的转换期间,用于脸部I汽油(RON = 70)及其代理,PRF70。实验在单个气缸光学发动机中进行,该发动机以1200rpm的速度运行。考虑到发动机的安全性,测试在较低的IMEP(3巴)下进行,并且通过碗底部的窗户使用高速相机可视化燃烧。从发动机实验中,显然在各种燃烧模式下,进气温需求是不同的,以保持相同的燃烧相位。虽然HCCI条件需要固定的进气温温度,但它在面部I汽油和PRF70之间的PPC和CI条件下变化。鉴定了三个区域1)SOI = -180至-80 CAD(ATDC)是HCCI区2)SOI = -40至-20 CAD(ATDC)是PPC区3)之后SOI = -15 CAD(ATDC)是CI区之后。燃烧持续时间,点火延迟,燃烧的开始和CA90(曲柄角,燃料烧伤的90%的曲柄角)在面部I汽油和PRF70之间是可比的。燃烧图像在CI条件下显示出突出的烟雾火焰,而仅在燃料的PPC条件下可见蓝色预混火焰。与面部I汽油在早期注射时,PRF70似乎具有明显的预混合效果,显示分层水平降低。 NO_X发射和烟灰浓度从CI条件下降,并在HCCI条件下持续零值,用于双面I汽油和PRF70。在PPC和CI条件FACE我汽油和PRF70之间CO和CO_2排放火柴,而CO排放是在HCCI条件PRF70更低。

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