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Experimental And Numerical Study Of The Influence Of Temperature Heterogeneities On Self-ignition Process Of Methane-air Mixtures In A Rapid Compression Machine

机译:温度异质性对快速压缩机中甲烷-空气混合物自燃过程影响的实验和数值研究

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The self-ignition of methane-air mixtures is analyzed in conditions relevant for Homogeneous Charge Compression Ignition (HCCI) engines from both (ⅰ) experimental, and (ⅱ) numerical modeling points of view. On the one hand, a Rapid Compression Machine (RCM) is retained as a pertaining experimental setup to carry out the first part of the study. On the other hand, the PDF method is the modeling framework chosen to describe the coupling between detailed chemical description and turbulent fluctuations. The emphasis is on the influence of the temperature heterogeneities induced by heat transfer during the compression stroke on the subsequent ignition process. Such temperature heterogeneities have already been observed in RCMs (Mittal and Sung, 2006), and they are qualitatively assessed by schlieren imaging in the present study. The simultaneous analysis of the pressure traces and direct visualizations allows to discriminate two distinct modes of ignition exhibiting different levels of coherence of the exothermic process. It is shown that the appearance of one or the other of these two modes is directly related to the temperature distribution at the onset of ignition. Then, the information gathered through the experimental results is used to check the ability of a simplified model to reproduce both qualitatively and quantitatively the observed results. The comparison with the experimental data suggests that the proposed modeling approach provides a well suited framework for further modeling studies of HCCI combustion.
机译:从(ⅰ)实验和(ⅱ)数值模型的观点出发,在与均质充量压缩点火(HCCI)发动机相关的条件下分析甲烷-空气混合物的自燃。一方面,保留了快速压缩机(RCM)作为相关的实验设置,以进行研究的第一部分。另一方面,PDF方法是用来描述详细的化学描述与湍流波动之间耦合的建模框架。重点是在压缩冲程期间由热传递引起的温度异质性对随后的点火过程的影响。在RCM中已经观察到这种温度异质性(Mittal和Sung,2006年),并且在本研究中通过schlieren成像对它们进行了定性评估。压力迹线的同时分析和直接可视化可以区分两种不同的着火模式,它们表现出放热过程的不同连贯性。结果表明,这两种模式中的一种或另一种的出现与点火开始时的温度分布直接相关。然后,通过实验结果收集的信息将用于检查简化模型在定性和定量再现观察结果方面的能力。与实验数据的比较表明,所提出的建模方法为HCCI燃烧的进一步建模研究提供了一个非常合适的框架。

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