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Syngas (H2/CO) in a Spark-Ignition Direct-Injection Engine. Part 1: Combustion, Performance and Emissions Comparison with CNG

机译:火花点火直喷发动机中的合成气(H2 / CO)。第1部分:与CNG的燃烧,性能和排放比较

摘要

The combustion, performance, and emissions of syngas (H2/CO) in a four-stroke, directinjection, spark-ignition engine were experimentally investigated. The engine was operated at various speeds, ranging from 1500 to 2400 rev/min, with the throttle being held in the wide-open position. The start of fuel injection was fixed at 180�before the top dead center, and the ignition advance was set at the maximal brake torque. The air/fuel ratio was varied from the technically possible lowest excess air ratio (l) to lean operation limits. The results indicated that a wider air/fuel operating ratio is possible with syngas with a very low coefficient of variation. The syngas produced a higher in-cylinder peak pressure and heat-release rate peak and faster combustion than for CNG. However, CNG produced a higher brake thermal efficiency (BTE) and lower brake specific fuel consumption (BSFC).udThe BTE and BSFC of the syngas were on par to those of CNG at higher speeds. For the syngas, the total hydrocarbon emission was negligible at all load conditions, and the carbon monoxide emission was negligible at higher loads and increased under lower load conditions. However, the emission of nitrogen oxides was higher at higher loads withudsyngas.
机译:实验研究了四冲程直喷火花点火发动机中合成气(H2 / CO)的燃烧,性能和排放。发动机以1500至2400转/分钟的各种速度运行,节气门保持在全开位置。燃料喷射开始固定在上止点之前的180°,点火提前设置为最大制动扭矩。空气/燃料比从技术上可能的最低过量空气比(l)到稀薄运行极限变化。结果表明,具有非常低的变化系数的合成气可以实现更大的空燃比。合成气比CNG产生更高的缸内峰值压力和放热速率峰值,燃烧更快。但是,CNG产生了更高的制动热效率(BTE)和更低的制动比燃料消耗(BSFC)。 ud合成气的BTE和BSFC在较高速度下与CNG相当。对于合成气,在所有负载条件下的总碳氢化合物排放量可以忽略不计,而在较高负载条件下的一氧化碳排放量可以忽略不计,而在较低负载条件下则增加。然而,在较高的负荷下, udsyngas的氮氧化物排放量较高。

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