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Combustion and emission characteristics of RCEM and common rail diesel engine working with diesel fuel and ethanol/hydrous ethanol injected in the intake and exhaust port: Assessment and comparison

机译:RCEM和普通轨道柴油发动机燃烧和排放特性与进气口柴油燃料和乙醇/含水乙醇一起注射的乙醇/乙醇:评估与比较

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摘要

In this article, experiments are performed to evaluate and compare the combustion and emission characteristics of a rapid compression-expansion machine (RCEM) and a common rail diesel engine run with diesel fuel and ethanol/hydrous ethanol injection individually in the exhaust and intake manifold. The RCEM is run under diesel engine conditions with two different temperatures, which are 120 degrees C and 180 degrees C to simulate the intake and exhaust state. The flame ionization detector (FID) and gas chromatography (GC) are used to estimate the amount of ethanol introduced in the engine cylinder. The results for RCEM display that the ignition delay significantly diminishes by about 50% with enlarging the mixture temperature of ethanol while the NOx and soot formation enlarge. Regarding the diesel engine results, the proportion of ethanol introduced in the engine cylinder is approximately 80%, 43%, and 47% at ethanol injection duration of 2620 mu s, 3488 mu s, and 4497 mu s, respectively. The peak cylinder pressure, heat release rate, and flame temperature are reduced for pure ethanol injection exhaust mode compared to the intake approach. Moreover, the ignition delay increases as the water content in the aqueous ethanol solution increased. From the combustion and exhaust emission results, it can be deduced that the exhaust mode is recommended, particularly at the low concentration of ethanol in the mixtures, which could be exploited in the commercial combustion applications.
机译:在本文中,进行实验以评估快速压缩 - 膨胀机(RCEM)的燃烧和排放特性,以及在排气和进气歧管中单独使用柴油燃料和乙醇/含水乙醇喷射的共同轨道柴油发动机。 RCEM在柴油发动机条件下运行,具有两个不同的温度,这些温度为120℃和180摄氏度以模拟进气和排气状态。火焰离子化检测器(FID)和气相色谱(GC)用于估计发动机缸中引入的乙醇的量。 RCEM显示的结果显示点火延迟明显减少约50%,扩大乙醇的混合温度,而NOx和烟灰形成放大。关于柴油发动机的结果,在发动机汽缸中引入的乙醇的比例分别为2620μm,3488μm和4497μs的乙醇注射持续时间约为80%,43%和47%。与进气方法相比,纯乙醇注射排气模式降低了峰缸压力,热释放率和火焰温度。此外,随着乙醇水溶液的水含量增加,点火延迟增加。从燃烧和排气结果来看,可以推导出建议排气模式,特别是在混合物中的低浓度为乙醇,这可以在商业燃烧应用中进行利用。

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