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首页> 外文期刊>International Journal of Automotive Technology >COMBUSTION CHARACTERISTICS OF HYDROTREATED VEGETABLE OIL - DIESEL BLEND UNDER EGR AND SUPERCHARGED CONDITIONS
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COMBUSTION CHARACTERISTICS OF HYDROTREATED VEGETABLE OIL - DIESEL BLEND UNDER EGR AND SUPERCHARGED CONDITIONS

机译:egr和增压条件下加氢处理植物油 - 柴油混合物的燃烧特性

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This paper investigates the effects of Hydrotreated vegetable oil-diesel blend to combustion characteristics under various ambient oxygen concentrations and ambient pressure. Combustion characteristics were investigated using heat release rate analysis, two color method, soot concentration measurement and NOx concentration measurement. The experiments were carried out on a rapid compression expansion machine to simulate the ambient condition of a CI engine at TDC. Synthetic gas with oxygen concentrations of 21 %, 15 % and 10 % were used to simulate EGR conditions. A single hole injector was used with five different fuels: commercial diesel, HVO-commercial diesel blends and HVO. The results showed that increasing HVO blending percentages decreased ignition delay, flame temperature, soot concentration and NOx concentration. Heat release at oxygen concentration of 10 % dramatically dropped due to a shortened ignition delay, which resulted in less combustion. A decreased oxygen concentration from applied EGR conditions not only increased ignition delay, heat release, flame temperature and NOx concentration, but also increased soot concentration. A combination of EGR and supercharged conditions by increasing ambient pressure and decreasing oxygen concentrations resulted in increased heat release, decreased flame temperature, ignition delay and soot concentration, compared to EGR conditions.
机译:本文研究了加氢植物油 - 柴油混合物在各种环境氧浓度和环境压力下燃烧特性的影响。使用热释放率分析研究了燃烧特性,两种颜色方法,烟灰浓度测量和NOx浓度测量。在快速压缩膨胀机上进行实验,以模拟TDC的CI发动机的环境状况。氧浓度为21%,15%和10%的合成气用于模拟EGR条件。单孔注射器与五种不同的燃料一起使用:商业柴油,HVO-商业柴油混合物和HVO。结果表明,增加HVO混合百分比降低点火延迟,火焰温度,烟灰浓度和NOx浓度。由于缩短的点火延迟,氧浓度为10%的热释放,导致燃烧较少。来自施加的EGR条件的氧浓度降低不仅增加了点火延迟,热释放,火焰温度和NOx浓度,而且还增加了烟灰浓度。与EGR条件相比,通过增加环境压力和降低氧浓度的氧气和氧浓度降低导致氧气浓度增加,降低火焰温度,点火延迟和烟灰浓度。

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