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首页> 外文期刊>Fuel >Evaluating performance and emissions of a CI engine fueled with n-octanol/diesel and n-butanol/diesel blends under different injection strategies
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Evaluating performance and emissions of a CI engine fueled with n-octanol/diesel and n-butanol/diesel blends under different injection strategies

机译:在不同的注射策略下评估用N-Octanol /柴油和正丁醇/柴油/柴油混合物的CI发动机的性能和排放

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摘要

Considering climate change and energy crisis, the high-carbon alcohol has become a popular substitute fuel for diesel engines. In this study, diesel (D100), n-octanol/diesel (D50O50), and n-butanol/diesel (D50B50) blends were tested in a single-cylinder CI engine to evaluate the effects of n-octanol and n-butanol on the engine combustion characteristics, performance, and emissions formation. During the testing, the engine was operated at two engine loads (30% and 50%) with two injection pressures (40 and 60 MPa) at 1200 rpm. Both single injection and split injection strategies were used. Experimental results suggest that D50O50 and D50B50could result in serious knocking combustion under certain conditions with the single injection strategy. In contrast, the split injection strategy can lower the peak pressure and peak heat release rate, and consequently mitigating the knocking tendency for D50O50 and D50B50. Besides, noticeable two-stage combustion was observed for D100 and D50O50 due to the NTC behavior of diesel and n-octanol. Generally, because of the lower fuel reactivity of n-octanol and n-butanol, the ignition delay periods of D50O50 and D50B50 were significantly extended with the single injection; however, the difference in ignition delay was not evident with split injection strategy. Moreover, D50O50 can exhibit the highest thermal efficiency with proper injection pressure, and combustion phasing, etc. NOx and black carbon can be simultaneously reduced by D50O50 with split injection at an injection pressure of 60 MPa. Nevertheless, adding n-octanol and n-butanol increased the HC emissions due to their lower fuel reactivity at all tested conditions.
机译:考虑到气候变化和能源危机,高碳醇已成为柴油发动机的流行替代燃料。在该研究中,在单缸CI发动机中测试柴油(D100),N-辛醇/柴油(D50O50)和正丁醇/柴油机(D50B50)共混物,以评估N-Octanol和正丁醇的影响发动机燃烧特性,性能和排放形成。在测试期间,发动机在两个发动机负载(30%和50%)以1200rpm的两个注射压力(40和60mPa)操作。使用单一注射和分裂注射策略。实验结果表明,D50O50和D50B50可将在单一注射策略的某些条件下导致严重爆震燃烧。相反,分裂注射策略可以降低峰值压力和峰值热释放速率,从而减轻D50O50和D50B50的爆震趋势。此外,由于柴油和正辛醇的NTC行为,观察到D100和D50O50的显着的两级燃烧。通常,由于N-辛醇和正丁醇的燃料反应性较低,D50O50和D50B50的点火延迟时段随着单一注射而显着延伸;然而,点火延迟的差异并不明显,分裂注射策略并不明显。此外,D50O50可以表现出具有适当的注射压力的最高热效率,燃烧分阶段等。NOx和黑碳可以通过D50O50同时降低,在60MPa的注射压力下分流注射。然而,由于它们在所有测试条件下,添加N-辛醇和正丁醇增加了HC排放量。

著录项

  • 来源
    《Fuel》 |2021年第15期|119085.1-119085.10|共10页
  • 作者

    Li Jing; Yu Wenbin; Yang Wenming;

  • 作者单位

    Nanjing Tech Univ Sch Mech & Power Engn Nanjing 211816 Peoples R China;

    Shandong Univ Sch Energy & Power Engn Jinan 250061 Peoples R China;

    Natl Univ Singapore Dept Mech Engn Fac Engn Singapore 117575 Singapore;

  • 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

    Blend fuel; N-octanol; N-butanol; Diesel engine; Injection strategy;

    机译:混合燃料;正辛醇;正丁醇;柴油发动机;注射策略;

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