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Parametric investigation of pre-injection on the combustion, knocking and emissions behaviour of a large marine four-stroke dual-fuel engine

机译:大型船舶四冲程双燃料发动机燃烧预注射,爆震和排放行为的参数调查

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摘要

This study aims at the parametric investigation of a large marine four-stroke dual-fuel engine in order to identify the pre-injection effects on the engine combustion, knocking and emissions parameters. A model was employed that was developed by integrating a 1-D engine model in AVL-BOOST and a 3-D CFD model in CONVERGE. The MAN 51/60DF marine engine is modelled and the simulation results were validated against experimental data. Subsequently, parametric runs for various pre-injection timings and mass ratios are performed and the simulation results are analysed and discussed. The derived in-cylinder pressure oscillations at determined points are employed to calculate the knock index (KI), which was used as an evaluation indicator for the knocking intensity. A number of pre-injection strategies with varying timing and fuel mass ratios are studied. This study results reveal that a lower knock trend and NOx emissions can be achieved by early pre-injection timing and increasing pre-injection fuel mass ratio. In addition, the medium pre-injection interval increases the engine IMEP while reducing the NOx and total hydrocarbon emissions. Larger pre-injection mass ratio reduce the KI and NOx emissions, but reduces IMEP and causes the wetted-wall phenomenon. Besides, the excessive pre-injection intervals and pre-injection mass ratio result in a change in combustion mode from the conventional diesel compression ignition mode to a two-stage auto-ignition mode. This study provides a better understanding of the underlying interactions of involved parameters and proposes pre-injection solutions to improve the engine performance, emissions and knocking behaviour.
机译:本研究旨在对大型海洋四冲程双燃料发动机进行参数调查,以确定对发动机燃烧,爆震和排放参数的预注射效果。采用模型,该模型是通过在AVL-Boost和3-D CFD模型中积分1-D发动机模型而开发的。 MAN 51 / 60DF海洋发动机是建模的,仿真结果针对实验数据验证。随后,执行用于各种预喷射定时和质量比的参数运行,并分析和讨论模拟结果。在确定的点处的衍生内圆柱压力振荡用于计算爆震指数(Ki),其用作敲击强度的评估指标。研究了许多具有不同定时和燃料质量比的预喷射策略。该研究结果表明,通过早期预喷射正时和增加预喷射燃料质量比可以实现较低爆震趋势和NOx排放。另外,介质预注入间隔增加了发动机IMEP,同时减少NOx和总烃排放。更大的预注射质量比减少了KI和NOx排放,但减少了IMEP并导致湿润的墙壁现象。此外,过量的预喷射间隔和预喷射质量比从传统的柴油压缩点火模式到两级自动点火模式的燃烧模式的变化。本研究提供了更好地理解涉及参数的潜在相互作用,并提出预注入解决方案以改善发动机性能,排放和爆震行为。

著录项

  • 来源
    《Fuel》 |2020年第1期|118744.1-118744.16|共16页
  • 作者单位

    Dalian Maritime Univ Marine Engn Coll Dalian 116026 Peoples R China;

    Dalian Maritime Univ Marine Engn Coll Dalian 116026 Peoples R China|Univ Strathclyde Maritime Safety Res Ctr Dept Naval Architecture Ocean & Marine Engn 100 Montrose St Glasgow G4 0LZ Lanark Scotland;

    Univ Strathclyde Maritime Safety Res Ctr Dept Naval Architecture Ocean & Marine Engn 100 Montrose St Glasgow G4 0LZ Lanark Scotland;

  • 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

    Large marine DF engine; Pre-injection Strategies; Knocking; Combustion; Emissions;

    机译:大型海洋DF发动机;预注射策略;敲燃;燃烧;排放;

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