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Rarefied flow effects on stabilization and extinction of rotating-disk flame at low pressures

机译:低压下稀疏流动对转盘火焰稳定和熄灭的影响

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An activation energy asymptotic analysis with one-step overall reaction was performed for the stabilization and extinction of a premixed flame over a rotating disk at sufficiently low pressures, for its relevance in low-pressure CVD (chemical vapor deposition) operations in which the flow is weakly rarefied. Extinction criteria based on the critical Damkohler number were obtained through the S-curve concept, para-metrically demonstrating the influence of the CVD operating conditions, such as the spin rate and temperature of the disk, on flame extinction. It is further shown that, while decreasing pressure and hence the reactivity of the mixture tends to extinguish the flame, the trend can be substantially weakened by taking into account of the influence of the Knudsen layer, which reduces the heat loss to the disk as well as the flow stretch rate at the flame.
机译:进行了具有一步总反应的活化能渐近分析,以在足够低的压力下稳定和熄灭旋转盘上的预混火焰,这与流在其中流动的低压CVD(化学气相沉积)操作有关。稀少。通过S曲线概念获得了基于临界Damkohler数的熄灭标准,从参数上证明了CVD操作条件(例如磁盘的旋转速度和温度)对火焰消灭的影响。进一步显示,虽然降低压力并因此混合物的反应性趋于熄灭火焰,但是通过考虑努氏层的影响可以大大减弱该趋势,这也减少了磁盘的热损失。作为火焰处的流动拉伸速率。

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