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Ethanol/N-Heptane Dual-Fuel Partially Premixed Combustion Analysis through Formaldehyde PLIF

机译:乙醇/正庚烷双燃料通过甲醛PLIF部分预混合燃烧分析

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As a result of recent focus on the control of Low Temperature Combustion (LTC) modes, dual-fuel combustion strategies such as Reactivity Controlled Compression Ignition (RCCI) have been developed. Reactivity stratification of the auto-igniting mixture is thought to be responsible for the increase in allowable engine load compared to other LTC combustion modes such as Homogenous Charge Compression Ignition (HCCI). The current study investigates the effect of ethanol intake fuel injection on in-cylinder formaldehyde formation and stratification within an optically accessible engine operated with n-heptane direct injection using optical measurements and zero-dimensional chemical kinetic models. Images obtained by Planar Laser Induced Fluorescence (PLIF) of formaldehyde using the third harmonic of a pulsed Nd: YAG laser indicate an increase in formaldehyde heterogeneity as measured by the fluorescence signal standard deviation. The experimental observations are complemented by a discussion regarding definitions of "reactivity".
机译:由于近期对低温燃烧(LTC)模式的控制,已经开发了反应性控制压缩点火(RCCI)等双燃料燃烧策略。与其他LTC燃烧模式(如均匀电荷压缩点火(HCCI)相比,被认为是对允许发动机负荷的增加负责的反应性分层。目前的研究调查了使用光学测量和零维化学动力学模型在用正庚烷直接喷射操作的光学可接近发动机内乙醇进气口对汽缸甲醛形成和分层的影响。使用脉冲Nd的第三次谐波的平面激光诱导的甲醛(PlIF)获得的图像:YAG激光表明通过荧光信号标准偏差测量的甲醛异质性增加。通过关于“反应性”的定义的讨论,实验观察互补。

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