{"title":"MACROSCOPIC SPRAY CHARACTERISTICS OF DIESEL AND BIODIESEL-DIESEL BLEND: AN EXPERIMENTAL COMPARISON","authors":"A. N. Shah, Ge Shan, H. Chao","doi":"10.25211/JEAS.V29I1.535","DOIUrl":null,"url":null,"abstract":"The qualitative aspects of the fuel spray particularly spray length and cone angle play a significant role not only in the temporal sequence of clean and efficient combustion, but also in the control of engine exhaust emissions and efficiency optimization. This paper investigates the effect of injection duration and ambient pressure on spray development, spray tip penetration (L) and cone angle ( β ) of biodiesel-diesel (20%/80%:v/v) blend (B20) and diesel, and hence compares the quality of the fuels. Both ‘L’ and ‘ β ’ play a key role in the fuel evaporation and mixing of fuel with air in the combustion chamber. It was found that the injection pressure, spray tip penetration and cone angle of the fuels increased with the increase in injection duration. Furthermore, the injection pressure of B20 was higher than that of diesel because of its higher incompressibility, which increased the droplet momentum and tip penetration. The ambient pressure displayed a stronger impact on ‘L’ and ‘ β ’ of the fuels, compared with injection duration. The ‘L’ was increased, while ‘ β ’ decreased with the decrease in P amb due to the decrease in resistance to penetration velocity. The shapes of spray images of two fuels were almost similar. However, B20 exhibited larger ‘L’ and ‘ β ’ due to higher initial velocity and mass of droplet, compared with diesel. This indicates that relative to diesel fuel, B20 has a stronger impact on the spray performance, and thus improves both ‘L’ and ‘ β ’. During the earlier phase of time after start of injection, the relative difference between two fuels in terms of their spray tip penetration was smaller. This difference augmented, and then became roughly stable. Before the commencement of a comparatively steady phase of time after the start of injection, the test fuels revealed an appreciable relative difference in terms of their ‘ β ’.","PeriodicalId":167225,"journal":{"name":"Journal of Engineering and Applied Sciences , University of Engineering and Technology, Peshawar","volume":"7 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2010-06-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Engineering and Applied Sciences , University of Engineering and Technology, Peshawar","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.25211/JEAS.V29I1.535","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
The qualitative aspects of the fuel spray particularly spray length and cone angle play a significant role not only in the temporal sequence of clean and efficient combustion, but also in the control of engine exhaust emissions and efficiency optimization. This paper investigates the effect of injection duration and ambient pressure on spray development, spray tip penetration (L) and cone angle ( β ) of biodiesel-diesel (20%/80%:v/v) blend (B20) and diesel, and hence compares the quality of the fuels. Both ‘L’ and ‘ β ’ play a key role in the fuel evaporation and mixing of fuel with air in the combustion chamber. It was found that the injection pressure, spray tip penetration and cone angle of the fuels increased with the increase in injection duration. Furthermore, the injection pressure of B20 was higher than that of diesel because of its higher incompressibility, which increased the droplet momentum and tip penetration. The ambient pressure displayed a stronger impact on ‘L’ and ‘ β ’ of the fuels, compared with injection duration. The ‘L’ was increased, while ‘ β ’ decreased with the decrease in P amb due to the decrease in resistance to penetration velocity. The shapes of spray images of two fuels were almost similar. However, B20 exhibited larger ‘L’ and ‘ β ’ due to higher initial velocity and mass of droplet, compared with diesel. This indicates that relative to diesel fuel, B20 has a stronger impact on the spray performance, and thus improves both ‘L’ and ‘ β ’. During the earlier phase of time after start of injection, the relative difference between two fuels in terms of their spray tip penetration was smaller. This difference augmented, and then became roughly stable. Before the commencement of a comparatively steady phase of time after the start of injection, the test fuels revealed an appreciable relative difference in terms of their ‘ β ’.
燃油喷射的质量方面,特别是喷射长度和锥角,不仅对清洁高效燃烧的时间序列起着重要的作用,而且对发动机尾气排放的控制和效率的优化也起着重要的作用。本文研究了喷射时间和环境压力对生物柴油-柴油(20%/80%:v/v)混合物(B20)和柴油的喷雾发展、喷雾尖端穿透度(L)和锥角(β)的影响,从而比较了燃料的质量。“L”和“β”在燃料蒸发和燃烧室内燃料与空气的混合中起着关键作用。结果表明,随着喷射时间的延长,燃油的喷射压力、喷嘴突度和锥角均增大。此外,由于B20的不可压缩性更高,其喷射压力高于柴油,这增加了液滴动量和尖端穿透。与喷射时间相比,环境压力对燃料的“L”和“β”的影响更大。随着P的减小,对穿透速度的阻力减小,' L '增大,' β '减小。两种燃料的喷雾图像形状几乎相似。与柴油相比,B20由于液滴的初始速度和质量较大,其“L”和“β”值较大。这表明,相对于柴油,B20对喷雾性能的影响更大,从而提高了“L”和“β”。在喷射开始后的较早阶段,两种燃料在喷尖穿透方面的相对差异较小。这种差异逐渐增大,然后变得大致稳定。在喷射开始后的一个相对稳定的阶段开始之前,测试燃料的“β”显示出明显的相对差异。