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BEHAVIOR PREDICTION MODEL IN GAS FUELED SPARK IGNITION INTERNAL COMBUSTION ENGINES TURBOCHARGED FOR GENSET APPLICATION

机译:发电机组涡轮增压火花点火内燃发动机的性能预测模型

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In this paper, a mathematical model is performed in order to analyze the effect of the methane number (MN) on knock tendency when spark ignition internal combustion engine operate with gaseous fuels produced from different thermochemical processes. The model was validated with experimental data reported in literature and the results were satisfactory. A general correlation for estimating the autoignition time of gaseous fuels in function of cylinder temperature, and pressure, equivalence ratio and methane number of the fuel was carried out. Livengood and Wu correlation is used to predict autoignition in function of the crank angle. This criterium is a way to predict the autoignition tendency of a fuel/air mixture under engine conditions and consider the ignition delay. A chemical equilibrium model which considers 98 chemical species was used in this research in order to simulate the combustion of the gaseous fuels at differents engine operating conditions. The effect of spark advance, equivalence ratio, methane number (MN), charge (inlet pressure) and inlet temperature (manifold temperature) on engine knocking is evaluated. This work, explore the feasibility of using syngas with low methane number as fuel for commercial internal combustion engines.
机译:在本文中,执行数学模型以分析当火花点火内燃机使用由不同热化学过程产生的气态燃料运行时甲烷值(MN)对爆震趋势的影响。用文献报道的实验数据验证了该模型,结果令人满意。对汽缸温度,燃料的压力,当量比和甲烷数的函数进行气态燃料自燃时间的估算进行了一般的关联。使用Livengood和Wu相关性来预测曲柄角函数中的自燃。该标准是一种在发动机工况下预测燃料/空气混合物自燃趋势并考虑点火延迟的方法。为了研究在不同发动机工况下气体燃料的燃烧,本研究使用了考虑了98种化学物质的化学平衡模型。评估了火花提前量,当量比,甲烷数(MN),充气量(进气压力)和进气温度(歧管温度)对发动机爆震的影响。这项工作探索了使用低甲烷数的合成气作为商用内燃机燃料的可行性。

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