乙醇(乙醇和二乙基乙醚)-柴油混合燃料柴油发动机应用-一个可行的解决方案

N. Banapurmath, Kh, al Sv, L. RanganathaSwamy, rashekar Tk
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引用次数: 20

摘要

为了改善柴油机的燃烧,减少污染物排放,提高柴油机的性能,柴油机的研究日益深入。本研究的目的是了解使用含氧燃料(混合剂)的柴油发动机的燃烧、性能和排放特性。为此,在单缸四冲程水冷直喷柴油机上,采用不同体积比的乙醇和乙醚混合燃料与柴油进行了试验研究。采用四种不同的乙醇(E0 -纯柴油、E5、E10、E15和E20)和乙醚(DEE0 -纯柴油、DEE5、DEE10、DEE15和DEE20)混合物进行试验研究,以评估使用乙醇和乙醚-柴油混合物对柴油机性能、燃烧和排放的影响。此外,在乙醇柴油混合物中加入2%乙酸乙酯,以保持均匀性,防止两种液体之间的界面张力。在相同的额定转速和压缩比下,不同的混合燃料和纯柴油,测量了各种发动机参数,如制动热效率和燃油消耗,燃烧参数,如峰值气缸压力和废气排放,如烟雾不透明度,碳氢化合物,CO和NOx。结果表明,在整体工况下,随着混合燃料中乙醇和DEE含量的增加,制动热效率有所提高。在高负荷下,观察到乙醇和DEE的混合物在高负荷下降低了CO排放水平。与柴油相比,所有乙醇和DEE混合燃料的HC排放都增加了,因为燃料消耗高,汽化潜热高,这会降低汽缸温度,导致在较低负荷下排放未燃烧的碳氢化合物。在较低负荷下,与柴油相比,乙醇和DEE混合物的氮氧化物排放量略有减少。此外,由于乙醇和DEE蒸发的低热值和高潜热导致火焰温度降低和NOx排放降低。在较高的发动机负荷下,与柴油相比,氮氧化物排放量几乎相同。与柴油相比,乙醇和DEE在发动机高负荷运行时的烟雾排放量最低。
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Alcohol (Ethanol and Diethyl Ethyl Ether)-Diesel Blended Fuels for Diesel Engine Applications-A Feasible Solution
The objective of improving the combustion, reducing the pollutants and to enhance the performance of diesel engines have intensified research in diesel engines. The goal of this study was to percept the combustion, performance and emission characteristics of diesel engine using oxygenated fuels (blending agents). In view of this, experimental investigations were carried out on a single cylinder four stroke direct injection water cooled diesel engine using ethanol and diethyl ether blended fuels in different volume ratios with diesel fuel. The experimental investigation was performed with four different blends of ethanol (E0 -neat diesel, E5, E10, E15 and E20)and diethyl ether (DEE0 - neat diesel, DEE5,DEE10, DEE15 and DEE20) to assess the impact of using ethanol and diethyl ether-diesel blends on diesel engine performance, combustion and emissions. In addition, 2% Ethyl acetate has been added to ethanol diesel blend to retain homogeneity and prevent the interfacial tension between two liquids. For the same rated speed and compression ratio, different blended fuels as well as pure diesel, various engine parameters such as brake thermal efficiency and fuel consumption, combustion parameters such as peak cylinder pressure and exhaust emissions such as smoke opacity, hydrocarbon, CO, and NOx, were measured. The results indicate that the brake thermal efficiency increased with an increase in ethanol and DEE contents in the blended fuels at overall operating conditions. At higher loads, reduced CO emission levels were observed for blends of ethanol and DEE at high load. HC emissions increased for all blends of ethanol and DEE compared with diesel fuel due to high fuel consumption and high latent heat of vaporization which lowers cylinder temperatures and causes the emission of unburned hydrocarbons at lower load. NOx emission slightly reduced with ethanol and DEE blends compared to diesel at lower loads. Further, due to lower calorific value and high latent heat of vaporization of ethanol and DEE results in reduced flame temperature and lower NOx emissions. The NOx emission is almost identical compared to diesel at higher engine loads. Ethanol and DEE showed lowest smoke emissions at high engine loads compared to diesel fuel operation.
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