An Experimental Investigation of S.I. Engine Operation on Gaseous Fuels Lean Mixtures

Hailin Li, G. Karim
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引用次数: 22

Abstract

The operation of S.I. engines on lean or diluents containing gaseous fuel-air mixtures is attractive in principle since it can provide improved fuel economy, reduced tendency to knock and low NO x emissions combined with a possible improvement to the operational life of the engine. However, the overall flame propagation rates then tend to drop sharply as the operational mixture is excessively leaned or diluted with CO 2 or N 2 . The paper presents experimental data obtained in a single cylinder, variable compression ratio, S.I., CFR engine when operated on a number of gaseous fuels and some of their mixtures. A gradual leaning of the operating mixture can affect adversely in turn, emissions of CO and unburned fuel and cyclic variation. The extent of deterioration in these operating parameters is shown to correlate well with the corresponding values of the combustion period, a key combustion indicator. Similar effects were observed when adding diluents to stoichiometric CH 4 -air mixtures. The addition of H 2 to CH 4 tends to accelerate the flame propagation and improve combustion stability but enhances the formation of NO x, especially for lean mixtures operation. A discussion of the possible reasons for the trends observed is presented together with outlining some possible measures to obtain low NO x emissions while keeping satisfactory rates of flame propagation.
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气体燃料稀薄混合物内燃机运行的实验研究
S.I.发动机在含有气体燃料-空气混合物的稀稀或稀释剂上运行,原则上是有吸引力的,因为它可以提供更好的燃油经济性,减少爆震和低nox排放,并可能提高发动机的使用寿命。然而,当操作混合物过度倾斜或被CO 2或n2稀释时,整体火焰传播速率会急剧下降。本文介绍了在单缸变压缩比、s.i.、CFR发动机上对多种气体燃料及其混合物运行的实验数据。逐渐倾斜的操作混合物反过来会对CO和未燃烧燃料的排放和循环变化产生不利影响。这些操作参数的恶化程度与燃烧周期(一个关键的燃烧指标)的相应值密切相关。当向化学计量的甲烷-空气混合物中加入稀释剂时,也观察到类似的效果。在ch4中加入h2会加速火焰的传播,提高燃烧稳定性,但会促进nox的生成,特别是在稀薄混合物中。讨论了观察到的趋势的可能原因,并概述了一些可能的措施,以获得低nox排放,同时保持令人满意的火焰传播速度。
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