首页> 外文会议>International symposium on air breathing engines;ISABE 2011 >THE NUMERICAL GENERATION OF AN IGNITION MAP BY MEANS OF A TURBULENT FLAME SPEED CLOSURE APPROACH FOR THE CONFIGURATION OF A JET FLAME
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THE NUMERICAL GENERATION OF AN IGNITION MAP BY MEANS OF A TURBULENT FLAME SPEED CLOSURE APPROACH FOR THE CONFIGURATION OF A JET FLAME

机译:用射流火焰的湍流火焰速度关闭方法生成点火图的数值

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This paper presents a numerical investigation of ignition phenomena in turbulent partially premixed methane/air flames under standard conditions for the configuration of a jet flame. In this work, a Turbulent Flame Speed Closure model (TFC) is applied in conjunction with an ignition delay module extension. The flame kernel propagation and consequent establishment or extinction of the flame are examined and subsequently compared to the experimental findings. A sensitivity analysis with respect to the spark ignition position and the prescribed boundary conditions is accomplished. An ignition map is inferred from the results and matched with the ignition probability map obtained in the experiments. In addition, the expansion speed and the lift-off height of the flame are analyzed. Generally, a very satisfying agreement is achieved in regions in which the mixing is the dominant factor. Discrepancies in the prediction occur in the far downstream area, where long ignition delay times impede a successful transition of the spark to a full flame.
机译:本文提出了在标准条件下湍流部分预混甲烷/空气火焰中喷射现象点火现象的数值研究。在这项工作中,湍流火焰速度关闭模型(TFC)与点火延迟模块扩展一起使用。检查火焰核的传播以及随后火焰的建立或熄灭,然后将其与实验结果进行比较。对火花点火位置和规定的边界条件进行了灵敏度分析。从结果推断出点火图,并与实验中获得的点火概率图相匹配。另外,分析了火焰的膨胀速度和上升高度。通常,在混合是主要因素的区域中获得了非常令人满意的协议。预测的差异发生在较远的下游区域,那里较长的点火延迟时间阻碍了火花成功过渡到满火。

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