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Effect of injection strategy on cold start firing, combustion and emissions of a LPG/methanol dual-fuel spark-ignition engine

机译:喷射策略对液化石油气/甲醇双燃料火花点火发动机冷启动点火,燃烧和排放的影响

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The spark ignition (SI) methanol engine is particularly difficult for cold start at low ambient temperature. Adding liquefied petroleum gas (LPG) can ensure a successful cold start of SI methanol engine. Based on a single-cycle fuel injection strategy, the effects of the amount and injection timings of methanol and LPG per cycle were experimentally investigated on cold start firing and emissions of a LPG/methanol dual fuel SI engine. The results show that the minimum amount of LPG injected per cycle is the key factor to determine the reliable firing of LPG/methanol engines at low ambient temperatures. In order to form an ideal mixture in the firing cycle, 300 degrees CA injection interval between methanol and LPG is feasible to be used. Fuel injection parameters have great influences on the HC emissions, which are 74.4% lower under critical firing than that of misfiring mode. By altering injection parameters, unburned methanol shows opposite tendencies with formaldehyde emissions and similar tendencies with HC emissions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对于低环境温度下的冷启动而言,火花点火(SI)甲醇发动机特别困难。添加液化石油气(LPG)可以确保SI甲醇发动机成功冷启动。基于单循环燃料喷射策略,实验研究了每个循环中甲醇和LPG的数量和喷射正时对LPG /甲醇双燃料SI发动机冷启动燃烧和排放的影响。结果表明,每个循环的最小LPG喷射量是确定LPG /甲醇发动机在低环境温度下可靠燃烧的关键因素。为了在燃烧循环中形成理想的混合物,可以使用甲醇和LPG之间的300度CA喷射间隔。燃料喷射参数对HC排放有很大的影响,在临界燃烧条件下,碳氢化合物的排放比在不点火模式下低74.4%。通过更改进样参数,未燃烧的甲醇在甲醛释放方面显示出相反的趋势,而在HC排放方面显示出相似的趋势。 (C)2019 Elsevier Ltd.保留所有权利。

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