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Numerical Study of the Performance and Emission of a Diesel-Syngas Dual Fuel Engine

机译:柴油-合成气双燃料发动机性能和排放的数值研究

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摘要

Based on the theory of direct relation graph (DRG) and the sensitivity analysis, a reduced mechanism for the diesel-syngas dual fuel was constructed. Three small thresholds were applied in the process of the detailed mechanism simplification by DRG, and a skeletal mechanism with 185 elements and the 832 elementary reactions was obtained. According to the framework of the skeletal mechanism, the time-consuming approach of sensitivity analysis was employed for further simplification, and the skeletal mechanism was further reduced to the size of 158 elements and 705 reactions. The Chemkin software with the detailed mechanism was utilized to calculate the effect of syngas addition on the combustion characteristics of diesel combustion. The findings showed that the addition of syngas could reduce the ignition delay time and increase the laminar flame speed. Based on the reduced mechanism and engine parameters, a 3D model of the engine was constructed with the Forte code. The 3D model was adopted to study the effect of syngas addition on the performance and exhaust emissions of the engine and the relevant data of the experiment was used in the calibration of the 3D model.
机译:基于直接关系图理论和敏感性分析,建立了柴油-合成气双燃料的还原机理。在通过DRG简化详细机理的过程中应用了三个小的阈值,并获得了具有185个元素和832个元素反应的骨架机理。根据骨架机制的框架,采用了耗时的敏感性分析方法,进一步简化了骨架机制,将骨架机制进一步缩小为158个元素和705个反应。利用具有详细机理的Chemkin软件来计算合成气添加对柴油机燃烧特性的影响。研究结果表明,合成气的添加可以减少点火延迟时间并提高层流火焰速度。基于简化的机构和发动机参数,使用Forte代码构造了发动机的3D模型。采用3D模型研究合成气添加对发动机性能和废气排放的影响,并将实验的相关数据用于3D模型的校准。

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  • 来源
    《Mathematical Problems in Engineering 》 |2017年第10期| 6825079.1-6825079.12| 共12页
  • 作者

    Feng Shiquan;

  • 作者单位

    Shanghai Maritime Univ, Merchant Marine Coll, Shanghai, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
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