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Definition of the optimal content of used cooking oil methyl ester in blends fuelling a turbocharged diesel engine

机译:燃料涡轮增压柴油发动机的混合物中使用的烹饪油甲酯的最佳含量的定义

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摘要

An extended investigation on the application of blends between diesel oil and used cooking oil methyl esters (UCOME) was developed on an automotive turbocharged diesel engine. Two commercial diesel oils were considered as reference fuels, the first with the conventional content of biodiesel (7%), the second with an amount of 15%. Then, increasing levels of UCOME were added, on a volumetric basis (20%, 40%, 55 or 60%), to analyse the influence of biodiesel content on engine behaviour. Three part load engine operating conditions were selected for tests, measuring average engine parameters and indicated pressure diagrams. Their processing allowed to calculate the most important operating, energy and environmental engine quantities, rate of heat release and related combustion parameters. A proper management of the exhaust gas recirculation circuit, variable nozzle turbine and injection system was applied thanks to the availability of an open electronic control unit.An optimal UCOME content (40%) was identified, leading to highest values of brake thermal efficiency (with maximum increase around 5% referring to baseline fuels) and lowest levels of NO_x emissions. For this blend, the analysis of combustion parameters outlined that the use of the renewable fuel corresponded to an enhanced premixed combustion phase, while reducing combustion duration. Lower local temperature levels, related to the decrease of Lower Heating Value, other local effects and biodiesel degree of unsaturation justify NO_x reduction. Furthermore, soot emissions were always reduced when increasing biodiesel content, while combustion stability was not affected. All these outcomes were observed with and without EGR.
机译:在汽车涡轮增压柴油发动机上开发了对柴油和用烹饪油甲酯(MUCOME)的混合物在施用中施加的延长研究。两种商业柴油被认为是参考燃料,首先具有常规生物柴油(7%)的含量,第二次含量为15%。然后,增加了增加的ucce水平,体积(20%,40%,55或60%),分析生物柴油含量对发动机行为的影响。选择三部分负载发动机操作条件进行测试,测量平均发动机参数和指示的压力图。他们的处理允许计算最重要的操作,能量和环境发动机数量,热释放速率和相关的燃烧参数。由于开放式电子控制单元的可用性,施加了对废气再循环电路,可变喷嘴涡轮和喷射系统的适当管理。鉴定了最佳影响含量(40%),导致制动热效率的最高值(与最大增加约5%,指的是基线燃料)和最低水平的NO_X排放。对于这种混合物,概述了燃烧参数的分析,即使用可再生燃料的使用对应于增强的预混合燃烧阶段,同时降低燃烧持续时间。较低局部温度水平,与较低的加热值降低有关,其他局部效应和未饱和度的生物柴油程度证明了NO_X的降低。此外,在增加生物柴油含量时,烟灰排放总是减少,而燃烧稳定性不受影响。没有EGR观察到所有这些结果。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第7期|106098.1-106098.13|共13页
  • 作者

    G. Zamboni; M. Capobianco;

  • 作者单位

    Internal Combustion Engines Group (ICEG) Department of Mechanical Energy Management and Transportation Engineering (DIME) University of Genoa via Montallegro 1 16145 Genoa Italy;

    Internal Combustion Engines Group (ICEG) Department of Mechanical Energy Management and Transportation Engineering (DIME) University of Genoa via Montallegro 1 16145 Genoa Italy;

  • 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

    Biodiesel; Combustion; Efficiency; Internal combustion engine; NO_x emission; Soot emission;

    机译:生物柴油;燃烧;效率;内燃机;no_x排放;烟灰排放;

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