以三元共混物及乙醇为燃料的直喷柴油机性能研究

Q3 Engineering
Selvan P, Sudalaiyandi Kandasamy, Jones Joseph Jebaraj Dharmaraj
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引用次数: 0

摘要

<div class="section abstract"><div class="htmlview段落">本研究旨在考察亚麻籽和麻疯树油作为生物柴油与柴油结合使用的有效性和环境影响。这些油通过一种称为反式酯化的过程进行转化,并以E10-B20、E15-B20和E20-B20的构型制备了乙醇、生物柴油和柴油的三种混合物。加入乙醇以改善燃烧性能。这些新型混合物的性能在一台计算机控制的单缸水冷柴油发动机上进行了测试,以测量制动功率和排放。研究发现,三元生物柴油混合物产生的NO<sub>x</sub>二氧化碳排放量比普通柴油要高。在性能方面,E10-B20混合燃料降低了制动油耗,并将制动热效率提高了6.1%。与普通柴油相比,E15-B20混合燃料在重载条件下的未燃烧碳氢化合物含量显著降低了约50%。此外,在重负荷工况下,与E15-B20混合柴油相比,NOx值也降低了28.15%。这些三元共混物在保持相当性能的同时具有优越的发射特性,因此强烈推荐使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Investigation of Direct Injection Diesel Engine Characteristics Fuelled with Ternary Blends and Additive as Ethanol
This study aims to examine the effectiveness and environmental impact of using linseed and jatropha oil as biodiesels in combination with diesel. These oils were transformed through a process called trans-esterification, and three blends of ethanol, biodiesel, and diesel were prepared in E10-B20, E15-B20, and E20-B20 configurations. Ethanol was added to improve the combustion properties. The performance of these novel blends was tested in a computerized single-cylinder water-cooled diesel engine to measure brake power and emissions. It was found that the ternary biodiesel mixtures produced lower NOx and CO emissions than regular diesel fuel. In terms of performance, the E10-B20 blend reduced brake-specific fuel consumption and increased brake thermal efficiency by 6.1% to diesel. The E15-B20 blend showed a significant reduction of about 50% in unburnt hydrocarbons when compared to regular diesel at heavy load conditions. Additionally, the NOx value also decreased by 28.15% compared to the E15-B20 blend with regular diesel at heavy load conditions. These ternary blends have superior emission characteristics while maintaining comparable performance, making their use highly recommended.
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来源期刊
SAE Technical Papers
SAE Technical Papers Engineering-Industrial and Manufacturing Engineering
CiteScore
1.00
自引率
0.00%
发文量
1487
期刊介绍: SAE Technical Papers are written and peer-reviewed by experts in the automotive, aerospace, and commercial vehicle industries. Browse the more than 102,000 technical papers and journal articles on the latest advances in technical research and applied technical engineering information below.
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