Impact of various lambda values on engine performance, combustion and emissions of a SI engine fueled with methanol-gasoline blends at full engine load

Selçuk Sarıkoç
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引用次数: 3

Abstract

The aim of this study is to investigate experimentally the effects of methanol-gasoline fuel blend on engine performance, combustion process, and exhaust emissions of a spark ignition (SI) engine under various lambda values at full engine load. Firstly, the methanol was blended with gasoline by volume fraction of 20%, which renamed as M20. The experiments were performed a constant engine speed at 2000 rpm and full load conditions. Then, the M20 fuel blend effects on the engine performance, combustion and exhaust emission characteristics were compared with pure gasoline fuel in terms of brake engine torque, brake specific fuel consumption (BSFC), thermal efficiency, combustion process, CO, CO 2 , HC and NO emissions at three different lambda values such as 0.8, 1, 1.2. It was found that the addition of methanol substantially affected the engine performance, combustion process, and exhaust emissions at various lambda values. The methanol properties such as higher oxygen content, octane number, laminar flame speed (LFS), latent heat vaporization, and lower calorific value, and also the variation of the air-fuel ratio of the test fuels substantially influenced on the test results. Furthermore, these properties considerably affected the combustion characteristics such as ignition delay (ID), and combustion duration (CD). According to obtained results, the highest engine performance was observed for gasoline at λ=1. The M20 test fuel was exhibited a better combustion process when at λ=0.8 among other lambdas compared to gasoline. However, the best emission performance was obtained at λ=1 for the M20. Thus, the M20 test fuel can be used as a fuel considering the combustion and exhaust emissions. Overall, the engine performance, combustion, and exhaust emission characteristics are considerably affected by the variety of air-fuel ratio, oxygen content, octane number, LFS, and latent heat vaporization properties.
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不同lambda值对发动机性能的影响,燃烧和排放的SI发动机燃料的甲醇-汽油混合物在发动机满负荷
本研究的目的是实验研究甲醇-汽油混合燃料对发动机性能、燃烧过程和火花点火(SI)发动机在各种lambda值下的排气排放的影响。首先,将甲醇与汽油按20%的体积分数混合,更名为M20。实验是在2000转/分的恒定发动机转速和满载条件下进行的。然后,从制动发动机扭矩、制动比油耗(BSFC)、热效率、燃烧过程、CO、CO 2、HC和NO排放(lambda值分别为0.8、1、1.2)三个方面,比较了M20混合燃料与纯汽油燃料对发动机性能、燃烧和排气排放特性的影响。研究发现,甲醇的加入对发动机性能、燃烧过程和不同lambda值下的废气排放有很大影响。甲醇的高氧含量、辛烷值、层流火焰速度(LFS)、潜热汽化、低热值等特性以及试验燃料空燃比的变化对试验结果有较大影响。此外,这些特性显著影响燃烧特性,如点火延迟(ID)和燃烧持续时间(CD)。根据所得结果,在λ=1时,汽油发动机的性能达到最高。在λ=0.8时,与汽油相比,M20试验燃料的燃烧效果更好。而M20在λ=1时的发射性能最好。因此,考虑到燃烧和废气排放,可以使用M20试验燃料作为燃料。总的来说,发动机性能、燃烧和废气排放特性受空燃比、氧含量、辛烷值、LFS和潜热汽化特性的影响很大。
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