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Parametric study of gasoline properties on combustion characteristics of gasoline compression engines using reaction kinetics simulation and density-based global sensitivity analysis

机译:基于反应动力学模拟和基于密度的全局灵敏度分析的汽油特性对汽油压缩发动机燃烧特性的参数研究

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Gasoline compression ignition combustion has been regarded as a potential technology for future vehicle power source. Understanding the relationship between gasoline properties and its auto-ignition behaviors is critical to the development of this new combustion technology. Aiming at this goal, a comprehensive parametric study was conducted to investigate the influence mechanism of gasoline octane number, fuel sensitivity and equivalence ratio on the combustion behaviors of an advanced compression engine. A hybrid analysis method was proposed in the study; a reaction kinetics model coupled with a new-developed gasoline surrogate mechanism was used to trace the engine's combustion characteristics, while a density-based global sensitivity analysis method was applied to decode the composite effect of each factor. Results demonstrate two distinct combustion modes in low temperature conditions and give separation functions in the input space of three factors (R-Squares are above 97%). The reaction kinetics analysis points out the shift of dominant reaction groups is the main reason for incomplete combustion phenomenon. Then the global sensitivity result shows octane number is the dominant factor controlling the rate of the combustion heat release under all conditions (the averaged sensitivity index exceeds 0.7); fuel sensitivity only makes a considerable effect on combustion performances under low temperature regions, with sensitivity indices of 0.2-0.3. Besides, the local sensitivity of each factor on combustion behaviors at specific points is also given to understand the influence mechanism resulted from the variations of fuel properties. This study provides a useful method for getting deeper insights into the combustion dynamics and kinetic reaction in gasoline compression ignition engines.
机译:汽油压缩点火燃烧已被认为是未来车辆动力源的潜在技术。了解汽油特性与其自燃行为之间的关系对于开发这种新的燃烧技术至关重要。针对这一目标,进行了全面的参数研究,以研究汽油辛烷值,燃料敏感性和当量比对先进压缩发动机燃烧性能的影响机理。研究中提出了一种混合分析方法。一个反应动力学模型与一个新开发的汽油替代机制相结合来追踪发动机的燃烧特性,而基于密度的全局敏感性分析方法则被用来解码每个因素的综合效应。结果表明,在低温条件下有两种不同的燃烧模式,并在三个因素的输入空间中提供了分离功能(R-方差大于97%)。反应动力学分析指出,主要反应基团的移动是不完全燃烧现象的主要原因。然后,全局灵敏度结果表明,辛烷值是控制所有条件下燃烧热释放速率的主要因素(平均灵敏度指数超过0.7)。燃料敏感性仅对低温区域的燃烧性能有相当大的影响,敏感性指数为0.2-0.3。此外,还给出了每个因素在特定点对燃烧行为的局部敏感性,以了解燃料特性变化导致的影响机理。这项研究为深入了解汽油压燃式发动机的燃烧动力学和动力学反应提供了一种有用的方法。

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