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Effect of Air-fuel Ratio on the Combustion Characteristics of Syngas (H2:CO) in Direct-injection Spark-ignition Engine

机译:空燃比对直接喷射火花点火发动机合成气(H2:CO)燃烧特性的影响

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This paper presents experimental results of the effect of air-fuel ratio on the combustion characteristics of a direct-injection spark-ignition engine fuelled with a syngas of H2/CO composition of equal molar ratio. The engine was operated at fully open throttle and the start of fuel injection (SOI) was set at 180° before top dead center (BTDC). The spark advance was set to the minimum advance for a maximum brake torque. The experiment was conducted at lean mixture conditions with engine speed ranging from 1500 to 2400 rev/min. The results show that syngas operated under wider operation excess air ratio (X) as compared to CNG at the same engine speed. The minimum ignition advance for maximum brake torque and combustion duration were observed to increase with an increase in X. The effect of air-fuel ratio was more visible on the initial stage of the combustion at lower speeds while it is visible on the rapid burning stage at higher speeds. Moreover, the combustion duration was increased with an increase in engine speed.Syngas; direct-injection; spark-ignition; combustion; air-fuel ratio
机译:本文介绍了空燃比对带有相等摩尔比的H2 / Co组成的合成气的直喷火花点火发动机燃烧特性的实验结果。发动机以完全开口节流阀操作,燃料喷射开始(SOI)的开始在顶部死点(BTDC)之前在180°设定。 Spark提前设置为最大制动扭矩的最小前进。该实验在贫混合物条件下进行,发动机速度范围为1500至2400°/ min。结果表明,与相同发动机速度相比,与CNG相比,合成气在更宽的运行过度的空气比(X)下操作。观察到最大制动扭矩和燃烧持续时间的最小点火前进提前增加,随着X的增加而增加。在燃烧的初始阶段,在较低的速度下,空燃比的效果更加明显,而在快速燃烧阶段可见在更高的速度下。此外,燃烧持续时间随着发动机Speed.syngas的增加而增加;直喷;火花点火;燃烧;空燃比

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