Sensitivity of Emissions to Uncertainties in Residual Gas Fraction Measurements in Automotive Engines: A Numerical Study

IF 1.5 Q3 ENGINEERING, CHEMICAL Journal of Combustion Pub Date : 2018-05-02 DOI:10.1155/2018/7237849
S. Aithal
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引用次数: 3

Abstract

Initial conditions of the working fluid (air-fuel mixture) within an engine cylinder, namely, mixture composition and temperature, greatly affect the combustion characteristics and emissions of an engine. In particular, the percentage of residual gas fraction (RGF) in the engine cylinder can significantly alter the temperature and composition of the working fluid as compared with the air-fuel mixture inducted into the engine, thus affecting engine-out emissions. Accurate measurement of the RGF is cumbersome and expensive, thus making it hard to accurately characterize the initial mixture composition and temperature in any given engine cycle. This uncertainty can lead to challenges in accurately interpreting experimental emissions data and in implementing real-time control strategies. Quantifying the effects of the RGF can have important implications for the diagnostics and control of internal combustion engines. This paper reports on the use of a well-validated, two-zone quasi-dimensional model to compute the engine-out NO and CO emission in a gasoline engine. The effect of varying the RGF on the emissions under lean, near-stoichiometric, and rich engine conditions was investigated. Numerical results show that small uncertainties (~2–4%) in the measured/computed values of the RGF can significantly affect the engine-out NO/CO emissions.
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汽车发动机残余气体测量中排放对不确定性的敏感性:数值研究
发动机气缸内工作流体(空气-燃料混合物)的初始条件,即混合物的成分和温度,对发动机的燃烧特性和排放有很大的影响。特别是,与引入发动机的空气-燃料混合物相比,发动机气缸中残余气体分数(RGF)的百分比可以显著改变工作液的温度和组成,从而影响发动机的排放。精确测量RGF既麻烦又昂贵,因此很难准确表征任何给定发动机循环中的初始混合成分和温度。这种不确定性可能导致在准确解释实验排放数据和实施实时控制策略方面的挑战。量化RGF的影响对内燃机的诊断和控制具有重要意义。本文报道了使用一个经过验证的两区准维模型来计算汽油机的发动机输出NO和CO排放。在精益、近化学计量和丰富发动机条件下,研究了不同RGF对排放的影响。数值结果表明,RGF测量值和计算值的微小不确定性(~2 ~ 4%)对发动机输出NO/CO排放有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Combustion
Journal of Combustion ENGINEERING, CHEMICAL-
CiteScore
2.00
自引率
28.60%
发文量
8
审稿时长
20 weeks
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