首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Enhancement of the combustion process in dual-fuel engines at part loads using exhaust gas recirculation
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Enhancement of the combustion process in dual-fuel engines at part loads using exhaust gas recirculation

机译:使用废气再循环增强部分负荷下双燃料发动机的燃烧过程

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Dual-fuel engines at part loads inevitably suffer from lower thermal efficiency and higher carbon monoxide and unburned fuel emission. The present work was carried out to investigate the combustion characteristics of a dual-fuel (diesel-gas) engine at part loads, using a single-zone combustion model with detailed chemical kinetics for combustion of natural gas fuel. The authors have developed software in which the pilot fuel is considered as a subsidiary zone and a heat source derived from two superimposed Wiebe combustion functions to account for its contribution to ignition of the gaseous fuel and the rest of the total released energy. The chemical kinetics mechanism consists of 112 reactions with 34 species. This quasi-two-zone combustion model is able to establish the development of the combustion process with time and the associated important operating parameters, such as pressure, temperature, heat release rate (HRR), and species concentration. Therefore, this paper describes an attempt to investigate the combustion phenomenon at part loads and using hot exhaust gas recirculation (EGR) to improve the above-mentioned drawbacks and problems. By employing this technique, it is found that lower percentages of EGR and allowance for its thermal and radical effects have a positive influence on performance and emission parameters of dual-fuel engines at part loads. Predicted values show good agreement with corresponding experimental values under special engine operating conditions (quarter-load, 1400 r/min). Implications are discussed in detail.
机译:双燃料发动机在部分负荷下不可避免地会遭受较低的热效率,较高的一氧化碳和未燃烧的燃料排放。本研究使用具有详细化学动力学的单区燃烧模型研究双燃料(柴油-燃气)发动机在部分负荷下的燃烧特性,以进行天然气燃料的燃烧。作者已经开发了软件,在该软件中,先导燃料被视为辅助区域,并且热源源自两个叠加的Wiebe燃烧函数,以说明其对气体燃料着火的贡献以及其余总释放能量的贡献。化学动力学机制包括112种反应和34种物质。这种准两区燃烧模型能够确定燃烧过程随时间的发展以及相关的重要操作参数,例如压力,温度,放热率(HRR)和物质浓度。因此,本文描述了尝试研究部分负荷下的燃烧现象并使用热废气再循环(EGR)来改善上述缺点和问题的尝试。通过采用该技术,发现较低百分比的EGR以及允许其热效应和自由基效应对部分负荷下双燃料发动机的性能和排放参数具有积极影响。在特殊的发动机工况(四分之一负荷,1400 r / min)下,预测值与相应的实验值显示出良好的一致性。涵义进行了详细讨论。

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