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Numerical and experimental evaluation on the pooled effect of waste cooking oil biodiesel/diesel blends and exhaust gas recirculation in a twin-cylinder diesel engine

机译:作者:张莹莹,王玮,王玮,王玮,王玮,王玮,王建华

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摘要

Nowadays, worldwide, many countries are engaged in reducing the vehicular exhaust emissions from diesel engines as diesel engines are the main source of power in various transport applications. Biofuels obtained from various feedstocks serve as a better alternative fuel in CI engines because of its emission reducing capabilities. The major drawback in the usage of biofuels in CI engine is the rise in the formation of nitrogen oxides which would be harmful to human health. WCO biofuel was processed using trans-esterification technique and the contents available were analyzed using gas chromatography mass .spectroscopy (GCMS). Four different blends, namly B100, B60, B40, and B20 were made. The physio-chemical properties of the prepared test fuels were identified using ASTM standards. The investigation on the characterisation of performance, combustion, sound and emission of the test engine was done. Fuel combustion modeling was done using ANSYS Fluent for diesel, WCO biofuel and best suited blend obtained from experimental results. From both the simulated and the experimental results, it was found that B20 blend fuel would be best suited to the test engine with a maximum reduction of 17% in unburned hydrocarbon (HC), 30% in carbonmonooxide (CO), 14.08% in smoke, 7.35% in carbondioxide (CO2) and 16.46% increase in NOx emission respectively. With an intention to reduce NOx emission in the selected B20 blend fuel, EGR at three rates, namely (5%, 10%, and 15%) were utilized. Again, the experiments were conducted with varying EGR rates for B20 blend fuel. A good percentage of reduction in NOx was obtained with increase in EGR rates. But other emissions like CO, HC, smoke, and CO2 emissions were found to increase with rise in EGR rates. Thus, a comparison was made with three rates of EGR emission values with all types of test fuels to optimize the EGR rate leading into the inlet charge. 10% EGR rate gave a maximum reduction of 16.34% in NOx emission without affecting much in the emissions like HC, CO, Smoke, and CO2 along with a small drop in performance.
机译:如今,在全球范围内,许多国家正在从事柴油发动机的车辆排放,因为柴油发动机是各种运输应用中的主要电源。由于其排放减少能力,从各种原料获得的生物燃料用作CI发动机中的更好的替代燃料。在CI发动机中使用生物燃料的主要缺点是形成对人体健康有害的氮氧化物的升高。使用反式酯化技术处理WCO生物燃料,并使用气相色谱质量分析可用的内容物。光谱学(GCM)。进行了四种不同的混合物,Namly B100,B60,B40和B20。使用ASTM标准鉴定制备的试验燃料的物理化学性质。完成了对测试引擎的性能,燃烧,声音和排放表征的调查。燃料燃烧建模是使用柴油,WCO生物燃料和从实验结果中获得的最适合混合物进行的ANSYS。从模拟和实验结果中,发现B20混合物燃料最适合于测试发动机,在未燃烧的烃(HC)中最大减少17%,碳酰氧化碳(CO)中的30%,烟雾14.08% ,含有7.35%的碳二氧化碳(CO2)和16.46%的NOx发射增加。有意减少所选择的B20混合物燃料中的NOx排放,使用三个速率的EGR,即(5%,10%和15%)。同样,实验是用不同于B20混合物燃料的EGR速率进行的。通过增加EGR速率,获得了NOx的良好百分比。但是,发现其他排放如CO,HC,烟雾和二氧化碳排放量随着EGR率的上升而增加。因此,用所有类型的试验燃料用三个EGR发射值进行比较,以优化导致入口电荷的EGR速率。 10%EGR速率在NOx排放中最大限度地减少了16.34%,而不会影响HC,CO,烟雾和CO2等排放中的大量性能。

著录项

  • 来源
    《Fuel》 |2021年第1期|119815.1-119815.17|共17页
  • 作者单位

    Mepco Schlenk Engn Coll Dept Mech Engn Sivakasi India|Khon Kaen Univ Fac Engn Mech Engn Khon Kaen Thailand|Khon Kaen Univ Ctr Alternat Energy Res & Dev Khon Kaen Thailand;

    Ho Chi Minh City Univ Technol HUTECH Inst Engn Ho Chi Minh City Vietnam;

    Mepco Schlenk Engn Coll Dept Mech Engn Sivakasi India|Sri Sairam Engn Coll Dept Prod Engn Chennai Tamil Nadu India;

    Sri Sairam Engn Coll Dept Prod Engn Chennai Tamil Nadu India;

    Univ Leeds Inst Transport Studies ITS Leeds W Yorkshire England;

    Khon Kaen Univ Fac Engn Mech Engn Khon Kaen Thailand|Khon Kaen Univ Ctr Alternat Energy Res & Dev Khon Kaen Thailand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    WCO biofuel; Diesel; Exhaust gas recirculation; Performance; Combustion; Emission;

    机译:WCO Biofuel;柴油;废气再循环;性能;燃烧;排放;
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