首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >A Comprehensive Model for the Auto-Ignition Prediction in Spark Ignition Engines Fueled With Mixtures of Gasoline and Methane-Based Fuel
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A Comprehensive Model for the Auto-Ignition Prediction in Spark Ignition Engines Fueled With Mixtures of Gasoline and Methane-Based Fuel

机译:汽油和甲烷混合燃料供油的火花点火发动机自动点火预测的综合模型

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The introduction of natural gas (NG) in the road transport market is proceeding through bifuel vehicles, which, endowed of a double-injection system, can run either with gasoline or with NG. A third possibility is the simultaneous combustion of NG and gasoline, called double-fuel (DF) combustion: the addition of methane to gasoline allows to run the engine with stoichiometric air even at full load, without knocking phenomena, increasing engine efficiency of about 26% and cutting pollutant emissions by 90%. The introduction of DF combustion into series production vehicles requires, however, proper engine calibration (i.e., determination of DF injection and spark timing maps), a process which is drastically shortened by the use of computer simulations (with a 0D two zone approach for in-cylinder processes). An original knock onset prediction model is here proposed to be employed in zero-dimensional simulations for knock-safe performances optimization of engines fueled by gasoline-NG mixtures or gasoline-methane mixtures. The model takes into account the negative temperature coefficient (NTC) behavior of fuels and has been calibrated using a considerable amount of knocking in-cylinder pressure cycles acquired on a Cooperative Fuel Research (CFR) engine widely varying compression ratio (CR), inlet temperature, spark advance (SA), and fuel mixture composition, thus giving the model a general validity for the simulation of naturally aspirated or supercharged engines. As a result, the auto-ignition onset is predicted with maximum and mean error of 4.5 and 1.4 crank angle degrees (CAD), respectively, which is a negligible quantity from an engine control standpoint.
机译:天然气(NG)通过双燃料汽车进入道路运输市场,这种燃料具有双重喷射系统,既可以使用汽油也可以使用天然气。第三种可能性是天然气和汽油同时燃烧,称为双燃料(DF)燃烧:向汽油中添加甲烷可使发动机即使在满负荷情况下也能以化学计量空气运行,而不会出现爆震现象,从而使发动机效率提高约26 %,减少污染物排放90%。将DF燃烧引入批量生产车辆中需要进行正确的发动机校准(即确定DF喷射和火花正时图),该过程由于使用计算机模拟而大大缩短了(对于零排放,采用0D两区方法-气缸过程)。本文提出了一种原始的爆震开始预测模型,该模型将用于零维模拟中,以优化汽油-NG混合物或汽油-甲烷混合物供油发动机的爆震安全性能。该模型考虑了燃料的负温度系数(NTC)行为,并已使用在合作燃料研究(CFR)发动机上获得的大量爆震缸内压力循环进行了校准,该发动机的压缩比(CR),进气温度变化很大,点火提前(SA)和燃油混合物的成分,从而使该模型对于自然吸气或增压发动机的仿真具有一般有效性。结果,自动点火的开始被预测为分别具有4.5和1.4曲轴角度(CAD)的最大误差和平均误差,从发动机控制的角度来看,这是可以忽略的量。

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