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首页> 外文期刊>Fuel >Impact of thermal barrier coating application on the combustion, performance and emissions of a diesel engine fueled with waste cooking oil biodiesel-diesel blends
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Impact of thermal barrier coating application on the combustion, performance and emissions of a diesel engine fueled with waste cooking oil biodiesel-diesel blends

机译:隔热涂层的应用对废厨用生物柴油与柴油混合燃料供油的柴油机的燃烧,性能和排放的影响

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摘要

Biodiesel fuel was produced from waste cooking oil by transesterification process. B20 and B50 blends of biodiesel-petroleum diesel were prepared. These blends and D2 fuels were tested in a single cylinder CI engine. Performance, combustion and emission values of the engine running with the mentioned fuels were recorded. Then the piston and both exhaust and intake valves of the test engine were coated with layers of ceramic materials. The mentioned parts were coated with 100 μm of NiCrAl as lining layer. Later the same parts were coated with 400 μm material of coating that was the mixture of 88% of ZrO_2, 4% of MgO and 8% of Al_2O_3. After the engine coating process, the same fuels were tested in the coated engine at the same operation condition. Finally, the same engine out parameters were obtained and compared with those of uncoated engine parameters in order to find out how this modification would change the combustion, performance and emission parameters. Results showed that the modification of the engine with coating process resulted in better performance, especially in considerably lower brake specific fuel consumption (Bsfc) values. Besides, emissions of the engine were lowered both through coating process and biodiesel usage excluding the nitrogen oxides (NO_x) emission. In addition, the results of the coated engine are better than the uncoated one in terms of cylinder gas pressure, heat release rate (HRR) and heat release (HR).
机译:生物柴油燃料是通过酯交换工艺从废弃的食用油中生产的。制备了生物柴油-石油柴油的B20和B50混合物。这些混合气和D2燃料在单缸CI发动机中进行了测试。记录了使用上述燃料运行的发动机的性能,燃烧和排放值。然后,将测试引擎的活塞以及排气门和进气门都涂上一层陶瓷材料。提到的零件涂有100μm的NiCrAl作为衬里层。之后,将相同的零件用400μm的涂层材料涂层,该材料是88%的ZrO_2、4%的MgO和8%的Al_2O_3的混合物。在发动机涂覆过程之后,在相同的运行条件下在涂覆的发动机中测试了相同的燃料。最后,获得了相同的发动机输出参数,并将其与未涂覆的发动机参数进行比较,以了解这种修改将如何改变燃烧,性能和排放参数。结果表明,采用涂层工艺对发动机进行改进可以带来更好的性能,尤其是可以大大降低制动器的比油耗(Bsfc)值。此外,通过涂覆工艺和生物柴油的使用,不仅减少了氮氧化物(NO_x)的排放,还降低了发动机的排放。此外,在气缸气压,放热率(HRR)和放热(HR)方面,涂层发动机的结果要优于未涂层发动机。

著录项

  • 来源
    《Fuel》 |2014年第15期|334-340|共7页
  • 作者

    Selman Aydin; Cenk Sayin;

  • 作者单位

    Department of Mechanical Engineering, Faculty of Engineering, Hakkari University, Hakkari 30000, Turkey;

    Department of Mechanical Engineering, Faculty of Technology, Marmara University, Istanbul 34722, Turkey;

  • 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

    Combustion; Thermal barrier coating; Diesel engine; Biodiesel;

    机译:燃烧;隔热涂层;柴油发动机;生物柴油;

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