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Effect of Injection Timing on Combustion, Performance and Emissions of Lean-burn Syngas (H2/CO) in Spark-Ignition Direct-Injection Engine

机译:喷射正时对火花点火直喷发动机稀燃合成气(H2 / CO)燃烧,性能和排放的影响

摘要

This article is aimed at exploring syngas as an alternative fuel for the modern gas engines. It presents the experimental results on the effect of start of injection on combustion, performance and emissions of a direct-injection spark-ignition engine powered by syngas of H2/CO composition. The engine was operated with wide open throttle at minimum advance to achieve maximum brake torque. Two different start of injections were selected to represent before and after inlet valve closing and the excess air ratio (λ) was set at 2.3. The engine operation at start of injection = 120° before top dead center was found to be best for combustion and performance at speed up to 2100 r/min. At engine speed higher than 2100 r/min, this start of injection does not permit maximum performance due to injection duration limitation. Hence, early injection at start of injection = 180° before top dead center was adopted at higher speed with better combustion and performance. Therefore, best performance of syngas in direct-injection spark-ignition engine could be attained by setting start of injection at 120° before top dead center for lower speeds and at 180° before top dead center for speed greater than 2100 r/min. Even though fast combustion of syngas suggested late injection for better combustion, performance and emissions, its lower calorific value resulted in operational limitations for direct-injection system particularly at higher speeds maintaining air–fuel ratio close to the stoichiometry.
机译:本文旨在探讨合成气作为现代燃气发动机的替代燃料。它介绍了喷射开始对由H2 / CO合成气驱动的直喷式火花点火发动机的燃烧,性能和排放的影响的实验结果。发动机在节气门全开的情况下以最小提前量运行,以实现最大制动扭矩。选择两个不同的喷射开始来代表进气门关闭之前和之后,并且过量空气比率(λ)设置为2.3。喷射开始时的发动机运转= 120°,发现上止点之前是最佳燃烧和性能,最高转速可达2100 r / min。在发动机转速高于2100 r / min时,由于喷射持续时间的限制,这种喷射开始无法实现最佳性能。因此,在上止点之前在喷射开始时= 180°的早期喷射以较高的速度被采用,具有更好的燃烧和性能。因此,对于较低的速度,通过将喷射开始设置在上止点之前的120°处,并将速度大于2100 r / min的上止点之前的180°设置,可以在直喷式火花点火发动机中获得最佳的合成气性能。尽管合成气的快速燃烧建议延迟喷射以改善燃烧,性能和排放,但其较低的发热量导致直接喷射系统的运行受到限制,尤其是在较高速度下,保持空燃比接近化学计量比。

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