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Combustion investigation of ternary blend mixture of biodiesel/n-butanol/diesel: CI engine performance and emission control

机译:生物柴油/正丁醇/柴油/柴油/柴油/柴油三元混合物的燃烧研究:CI发动机性能和排放控制

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摘要

This study aims to analyze the effects of a novel ternary blend of n-butanol and castor oil methyl ester (COME) with petro-diesel on combustion, engine performance and emission characteristics of four stroke single cylinder diesel engine and to obtain optimum blending proportion which can simultaneously reduce UHC, CO, and NOx without affecting engine performance. A quick and simple approach involving a single zone combustion model coupled with double and triple Wiebe functions has been successfully applied to analyze combustion behavior of binary and ternary fuel blends respectively. Neat diesel was used as a baseline fuel to compare combustion, performance and emission characteristics with binary and ternary fuel blends (B30, B20Bu10, B10Bu20 and B15Bu15). Apparent heat release rate (AHRR) calculated from the model is in good agreement (RMSE = 1.33) with experimental values. Peak AHRR values (J/degrees CA) for fuel blends B30, B20Bu10, B15Bu15, B10Bu20 and neat diesel were found to be 26.1, 29.4, 32.7, 37.1, and 36.1 respectively. The ignition delay period was not affected for B30 blend however it was observed to be increased by 2.89-3.35 degrees CA for n-butanol blended fuels. Results of B30 fuel blend showed reduction in BTE by 1-3% with increase in greenhouse gas emissions. The results of ternary fuel blend (B15Bu15) showed improvement in engine performance characteristics whereas NOx emission was reduced in the range of 20-60% compared to B30. Detrimental effect on engine performance, emission characteristics and combustion behavior was observed for B10Bu20. Therefore, B15Bu15 was considered as an optimum fuel blend.
机译:本研究旨在分析新叔丁醇和蓖麻油甲酯(蓖麻油甲基酯(Fly)对石油柴油的燃烧,发动机性能和排放特性的新型三元共混物的影响,并获得最佳混合比例可以同时减少UHC,CO和NOx而不影响发动机性能。已经成功地应用了一种快速而简单的方法,涉及与双和三维Wiebe功能耦合的单个区域燃烧模型,分别分析二元和三元燃料混合的燃烧行为。纯净的柴油被用作基线燃料,以比较燃烧,性能和发射特性与二元和三元燃料混合物(B30,B20Bu10,B10Bu20和B15Bu15)。从模型计算的表观热释放速率(AHRR)与实验值良好的一致性(RMSE <= 1.33)。发现燃料混合物B30,B20Bu10,B15Bu15,B10Bu20和整洁柴油的峰值AHRR值(J / DEVERS CA)分别为26.1,29.4,32.7,37.1和36.1。对于N-丁醇混合燃料,观察到B30混合物的点火延迟期不受B30混合物的影响。对于正丁醇混合燃料,它被观察到增加2.89-3.35摄氏度。 B30燃料混合物的结果显示出BTE减少1-3%,温室气体排放量增加。三元燃料混合物(B15Bu15)的结果显示出发动机性能特征的改善,而与B30相比,NOx排放在20-60%的范围内。对于B10Bu20,观察到对发动机性能,发射特性和燃烧行为的不利影响。因此,B15BU15被认为是最佳燃料混合物。

著录项

  • 来源
    《Renewable & Sustainable Energy Reviews》 |2021年第3期|110468.1-110468.18|共18页
  • 作者单位

    Pandit Deendayal Petr Univ Ctr Biofuel & Bioenergy Studies Gandhinagar 382007 Gujarat India|Pandit Deendayal Petr Univ Mech Engn Dept Gandhinagar 382007 Gujarat India;

    Pandit Deendayal Petr Univ Ctr Biofuel & Bioenergy Studies Gandhinagar 382007 Gujarat India|Pandit Deendayal Petr Univ Mech Engn Dept Gandhinagar 382007 Gujarat India;

    Pandit Deendayal Petr Univ Ctr Biofuel & Bioenergy Studies Gandhinagar 382007 Gujarat India|Pandit Deendayal Petr Univ Chem Engn Dept Gandhinagar 382007 Gujarat India;

    McMaster Univ Sch Engn Practice & Technol Hamilton ON Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CI engine; Ternary blend; Wiebe function; Combustion modeling; Emission;

    机译:CI发动机;三元混合物;Wiebe功能;燃烧建模;排放;
  • 入库时间 2022-08-18 23:35:59

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