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Impact of Diesel-butanol Blends on Performance and Emission of DieselEngine

机译:柴油-丁醇混合物对柴油机性能和排放的影响

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The aim of lowering the pollutants and to enhance the performance of diesel engines has intensified research in diesel engines. The goal of this study was to assess combustion, performance and emission characteristics of diesel engine using diesel-oxygenate blends. In this direction, experimental investigations were carried out on a single cylinder four stroke direct injection water cooled diesel engine using butanol blended fuels in different volume ratios with diesel fuel. The butanol had no solubility or stability problems when blended with diesel fuel. As there was not phase separation in the blends, no additive was added. The experimental investigation was done with four different blends of butanol on volume basis [B0 (0% Butanol and 100% Diesel), B5 (5% Butanol and 95% Diesel), B10 (10% Butanol and 90% Diesel), B15 (15% Butanol and 85% Diesel) and B20 (20% Butanol and 80% Diesel)] to study the impact of using butanol -diesel blends on diesel engine performance, combustion and emissions. The outcome indicates that the brake thermal efficiency increased with an increase in butanol contents in the blended fuels at overall operating conditions. At higher loads, reduced CO emission levels were observed for blends of butanol. HC emissions increased for all blends of butanol 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 emissions with diesel–butanol blends were found to be comparable with neat diesel at low loads due to lower calorific value and high latent heat of vaporization of butanol results in reduced flame temperature and slightly higher NOx at high loads with increased butanol percentage in the blend compared to neat diesel. Butanol showed lowest smoke opacity at high engine loads compared to diesel fuel operation.
机译:降低污染物并提高柴油机性能的目的已经加强了对柴油机的研究。这项研究的目的是评估使用柴油-含氧化合物混合物的柴油机的燃烧,性能和排放特性。在这个方向上,对单缸四冲程直喷水冷柴油机进行了实验研究,该柴油机使用了不同体积比的丁醇混合燃料与柴油。与柴油混合时,丁醇没有溶解性或稳定性问题。由于共混物中没有相分离,因此没有添加添加剂。实验研究是基于丁醇的四种不同的混合物进行的:[B0(0%丁醇和100%柴油),B5(5%丁醇和95%柴油),B10(10%丁醇和90%柴油),B15( 15%的丁醇和85%的柴油)和B20(20%的丁醇和80%的柴油)],研究使用丁醇-柴油混合物对柴油机性能,燃烧和排放的影响。结果表明,在总体运行条件下,制动热效率随混合燃料中丁醇含量的增加而增加。在较高的负荷下,丁醇混合物的CO排放水平降低。与柴油燃料相比,丁醇的所有混合物的HC排放均增加,这是由于燃料消耗量大和汽化潜热较高,这降低了汽缸温度并导致在较低负荷下排放未燃烧的碳氢化合物。柴油-丁醇混合物的NOx排放在低负荷下可与纯柴油相媲美,这是因为其发热量较低,丁醇的汽化潜热较高,会降低火焰温度,而在高负荷下,随着丁醇含量的增加,NOx排放量会稍高与纯柴油相比。与柴油运行相比,丁醇在高发动机负荷下显示出最低的烟不透明度。

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