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首页> 外文期刊>International Journal of Environmental Science and Technology >Improving incomplete combustion and reducing engine-out emissions in reactivity controlled compression ignition engine fueled by ethanol
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Improving incomplete combustion and reducing engine-out emissions in reactivity controlled compression ignition engine fueled by ethanol

机译:改善不完全燃烧和减少乙醇燃料的反应性控制压缩点火发动机的发动机排放

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In this paper, various fuels with different reactivities were implemented as a strategy to optimize the heat release rate which could be a dominant combustion controller in an internal combustion engine. Using a blend of ethanol and gasoline fuels is one of the best approaches to decrease heat release rate, as well as prolonging combustion duration and retarding combustion phasing. Application of ethanol fuel, however, may lead to misfire and unstable combustion in reactivity controlled compression ignition engines. A multi-dimensional model coupled with a detailed chemical kinetic mechanism was applied to investigate the effects of single and double injections within misfire zones in a research engine using iso-octane, n-heptane, and ethanol fuels. A parametric approach is employed to analyze the engine model behavior through varying energy fraction of fuels through both single and double injections strategies. Three performance maps of engine at varying total fuel energy with different ratios of the port to direct fuel injections have been simulated. The first map is related to using net iso-octane and n-heptane fuels; the other two maps are related to the use of 20% and 40% ethanol fuels instead of net iso-octane fuel, respectively. The results highlight that double injection strategy with the injection timing between 27 degrees and 47 degrees before top dead center is capable of improving misfire points also effective on reducing both nitrogen oxide formation and ringing intensity, as well as improving engine gross indicated efficiency.
机译:在本文中,实施了具有不同反应性的各种燃料作为优化在内燃机中可以是主要燃烧控制器的散热速率的策略。使用乙醇和汽油燃料的混合物是降低热释放速率的最佳方法之一,以及延长燃烧持续时间和延迟燃烧相位。然而,乙醇燃料的应用可能导致反应性控制压缩点火发动机中的失火和不稳定燃烧。应用具有详细化学动力学机理的多维模型用于研究使用异辛烷,正庚烷和乙醇燃料在研究发动机中的单一和双注射在失火区内的影响。采用参数方法来通过单一和双注射策略改变燃料的能量分数来分析发动机模型行为。已经模拟了具有不同比率的不同燃料能量的发动机的三种性能图,已经模拟了端口与直接燃料喷射的不同燃料能量。第一个地图与使用净异辛烷和正庚烷燃料有关;另外两张地图与20%和40%乙醇燃料的用途代替净异辛烷燃料。结果突出显示在顶死中心之前27度和47度的喷射正时的双注射策略能够改善失火点,还有效降低氮氧化物形成和振铃强度,以及提高发动机总粗略的效率。

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