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首页> 外文期刊>SAE International Journal of Engines >Ignition Delay Correlation for Predicting Autoignition of a Toluene Reference Fuel Blend in Spark Ignition Engines
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Ignition Delay Correlation for Predicting Autoignition of a Toluene Reference Fuel Blend in Spark Ignition Engines

机译:点火延迟相关性,用于预测火花点火发动机中甲苯参考燃料混合物的自燃

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摘要

An ignition delay correlation was developed for a toluene reference fuel (TRF) blend that is representative of automotive gasoline fuels exhibiting two-stage ignition. Ignition delay times for the autoignition of a TRF 91 blend with an antiknock index of 91 were predicted through extensive chemical kinetic modeling in CHEMKIN for a constant volume reactor. The development of the correlation involved determining nonlinear least squares curve fits for these ignition delay predictions corresponding to different inlet pressures and temperatures, a number of fuel-air equivalence ratios, and a range of exhaust gas recirculation (EGR) rates. In addition to NO_x control, EGR is increasingly being utilized for managing combustion phasing in spark ignition (SI) engines to mitigate knock. Therefore, along with other operating parameters, the effects of EGR on autoignition have been incorporated in the correlation to address the need for predicting ignition delay in SI engines operating with EGR. Unlike the ignition delay expressions available in literature for primary reference fuel blends, the correlation developed in the present study can predict ignition delay for a TRF blend, a more realistic gasoline surrogate.
机译:已开发出甲苯参考燃料(TRF)混合物的点火延迟相关性,该混合物代表了表现出两阶段点火的汽车汽油燃料。对于恒定体积的反应堆,通过在CHEMKIN中进行广泛的化学动力学建模,可以预测抗爆指数为91的TRF 91混合物自燃的点火延迟时间。相关性的发展涉及为这些点火延迟预测确定非线性最小二乘曲线拟合,这些曲线对应于不同的进气压力和温度,许多燃料-空气当量比以及一系列的排气再循环(EGR)速率。除了NO_x控制外,EGR被越来越多地用于管理火花点火(SI)发动机中的燃烧定相以减轻爆震。因此,连同其他运行参数,已将EGR对自动点火的影响纳入了相关性,以解决预测以EGR运行的SI发动机的点火延迟的需求。与文献中可用于主要参考燃料混合物的点火延迟表达式不同,本研究中开发的相关性可以预测TRF混合物的点火延迟,这是一种更现实的汽油替代品。

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