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Combustion behaviours and emission characteristics of a retrofitted NG/gasoline duel-fuel SI engine with various proportions of NG-gasoline blends

机译:具有不同比例的NG汽油混合气的NG /汽油双燃料SI发动机的改装性能和排放特性

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摘要

A baseline gasoline engine was retrofitted into a natural gas (NG)/gasoline duel-fuel engine through increasing a NG injection system at its intake manifold. The combustion behaviours and emission characteristics of the engine with different proportions of NG-gasoline blends were investigated. Numerical simulation and experiments verification were performed on a 4-cylinder SI engine. The results show that the combustion behaviours and emission characteristics of natural gas/gasoline dual fuel engine are between gasoline and natural gas. The maximum in-cylinder pressure (MCP), the maximum heat release rate (MHRR) and maximum pressure rise rate (MPRR) decrease with the increase of NG ratio and combustion phases (CA10 and CA50) are retarded, this implies that the adding natural gas to the gasoline can effectively improve the knocking resistance of the engine, which allows to improve the thermal efficiency by increasing compression ratio. The maximum combustion temperature (MCT) and the total overall equivalence ratio increases with the increase of NG ratio, leading to an increase in NO and soot emissions but their increasing proportion of NO and soot emissions at 50% of NG ratio (by energy) is respectively less than 8.7% and 17.3 with respect to the pure gasoline mode, but at the same time, there is an increase in indicated thermal efficiency (ITE) and a decrease in CO, CO2 and HC, this implies that trading off thermal efficiency and NOx emissions by operating the engine with 50% of NG and 50% of gasoline (by energy) without causing further cost and complexity.
机译:通过增加进气歧管的NG喷射系统,将基线汽油发动机改装为天然气(NG)/汽油双燃料发动机。研究了不同比例的NG-汽油混合气发动机的燃烧特性和排放特性。在4缸SI发动机上进行了数值模拟和实验验证。结果表明,天然气/汽油双燃料发动机的燃烧特性和排放特性介于汽油和天然气之间。随着NG比的增加,最大缸内压力(MCP),最大放热率(MHRR)和最大压力上升率(MPRR)降低,并且燃烧阶段(CA10和CA50)受阻,这意味着自然添加汽油中的汽油可以有效地改善发动机的抗爆震性,从而可以通过增加压缩比来提高热效率。最高燃烧温度(MCT)和总的总当量比随NG比例的增加而增加,导致NO和烟尘排放量增加,但当NG比例为50%时,它们的NO和烟尘排放比例增加(按能量计)为相对于纯汽油模式,分别低于8.7%和17.3,但是同时,指示热效率(ITE)有所增加,而CO,CO2和HC减少,这意味着要权衡热效率和通过使用50%的NG和50%的汽油(通过能源)运行发动机来排放NOx,而不会造成进一步的成本和复杂性。

著录项

  • 来源
    《Fuel》 |2020年第15期|116957.1-116957.10|共10页
  • 作者

  • 作者单位

    Tianjin Univ Sci & Technol Tianjin 300222 Peoples R China|Key Lab Integrated Design & Line Monitoring Light Tianjin 300222 Peoples R China;

  • 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

    NG ratio; NG/gasoline blends; Retrofitted duel-fuel SI engine; Combustion behaviours; Emission characteristics;

    机译:NG比天然气/汽油混合物;改装双燃料SI发动机;燃烧行为;排放特性;

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