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首页> 外文期刊>Applied Energy >Effects of pilot injection strategies on the flame temperature and soot distributions in an optical CI engine fueled with biodiesel and conventional diesel
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Effects of pilot injection strategies on the flame temperature and soot distributions in an optical CI engine fueled with biodiesel and conventional diesel

机译:先导喷射策略对以生物柴油和常规柴油为燃料的光学CI发动机的火焰温度和烟尘分布的影响

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摘要

Among the many types of alternative fuels, biodiesel has emerged as an eco-friendly fuel for the compression-ignition engines. Investigations into biodiesel combustion have been performed with various aspects and methodologies. In this study, the effects of the pilot injection strategies on the flame temperature and soot distribution were investigated experimentally and numerically using an optical Cl engine fueled with biodiesel. The endoscopy system captured the spray development and combustion processes in the cylinder. In addition, obtained pictures were used to estimate the flame temperature and soot distribution using a post-processing program. Furthermore, the KIVA/CHEMKIN code was used to enhance the analysis of the pilot combustion characteristics. These numerical results allowed information that cannot be obtained from physical experiments. The experimental conditions were composed of various pilot injection timings and quantities. In the present experiment, the experimental conditions were fixed with the exception of the injection strategy that was used. The experimental results showed that the flame temperature decreased as the pilot fuel mass increased. Additionally, it was also found that biodiesel combustion generated a higher flame temperature and lower soot concentrations compared to neat diesel combustion. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在多种替代燃料中,生物柴油已成为压燃发动机的一种环保燃料。已经以各种方面和方法对生物柴油燃烧进行了研究。在这项研究中,使用生物柴油为燃料的光学Cl发动机,通过实验和数值研究了先导喷射策略对火焰温度和烟尘分布的影响。内窥镜系统捕获了气缸中的喷雾形成和燃烧过程。此外,使用后处理程序将获得的图片用于估算火焰温度和烟灰分布。此外,KIVA / CHEMKIN代码用于增强对引燃特性的分析。这些数值结果使得无法从物理实验中获得信息。实验条件由各种预喷射定时和数量组成。在本实验中,实验条件是固定的,所使用的注射策略除外。实验结果表明,火焰温度随着引燃燃料质量的增加而降低。此外,还发现与纯柴油燃烧相比,生物柴油燃烧产生更高的火焰温度和更低的烟so浓度。 (C)2015 Elsevier Ltd.保留所有权利。

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