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Development of a Predictive Model for Knock Intensity in a Spark-Ignition Engine with Gasoline-Ethanol-nButanol Blend Fuel by Using Rapid Compression Machine

机译:用快速压缩机通过汽油 - 乙醇 - Nbutanol混合燃料在火花点火发动机中爆震强度预测模型的发展

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In this study, we developed a predictive model for knock intensity in spark-ignition (SI) engine with gasoline-ethanol-nbutanol (GEnB) blend fuel, which is being considered as an alternative fuel for conventional gasoline in South Korea, to understand the potential improvement of engine performance with the introduction of GEnB blend fuel. First, the ignition delay of the stoichiometric mixture of GEnB blend fuel and air was measured on a pressure of 10-30 bar and a temperature of 721-831 K by using rapid compression machine (RCM). Then, we derived the empirical correlation of the ignition delay with which the Livengood-Wu integration along pressure-temperature profile in RCM gives the best prediction for the start of combustion. The ignition delay correlation was applied to 0-D two-zone SI engine model, and we predicted the knocking intensity of GEnB blend fuels by using Livengood-Wu integration and Bougrine’s knocking intensity model. The model was validated by comparing the research octane number (RON) calculated from the model with the reference based on the cooperative fuel research (CFR) engine experiment. Consequently, it was found that the knocking prediction model properly predict RON of various GEnB blend fuels. The developed model was manipulated to predict the potential improvement of knock-limited region of modern SI engine with GEnB blend fuel, and we found that the knock-limited nIMEP increases by 1.86% as alcohol content increases by 1% of ethanol equivalent alcohol content.
机译:在这项研究中,我们开发了一种用于汽油 - 乙醇 - Nbutanol(Genb)混合燃料的火花点火(Si)发动机中的爆震强度的预测模型,该燃料被认为是韩国传统汽油的替代燃料,了解通过引入Genb混合物燃料,发动机性能的潜在改善。首先,通过使用快速压缩机(RCM)在10-30巴的压力和721-831k的压力下测量GenB混合物和空气的化学计量混合物的点火延迟。然后,我们衍生出点火延迟的经验相关性,其中Livengood-Wu沿RCM中的压力 - 温度曲线的集成延迟给出了对燃烧开始的最佳预测。将点火延迟相关性应用于0-D双区Si发动机模型,我们通过使用Livengood-Wu集成和Bougrine的敲击强度模型来预测GenB混合燃料的爆震强度。通过将根据模型计算的研究辛烷值(RON)与基于协作燃料研究(CFR)发动机实验的参考,通过比较了该模型进行了验证。因此,发现爆震预测模型适当地预测各种GenB混合燃料的罗恩。制定模型被操纵以预测Genb混合物燃料的现代Si发动机截止区的潜在改善,并且我们发现,随着醇含量增加的乙醇等同醇含量的1%增加,爆震有限的羽绒率增加1.86%。

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