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Experimental study on the fractal characteristic of methane explosion flame

机译:甲烷爆炸火焰分形特性的实验研究

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In this paper flame microstructures and propagation characteristic of methane explosion are studied by high speed schlieren photography technique. By experiment it shows that flame front surface and inner flow field of methane explosion has distinctly fractal characteristic, the effect of the wrinkle of flame front surface and inner reactants on flame propagation can be directly reflect by fractal dimensions. Fractal dimension has a direct relation to flame structure and flame propagation characteristics, and it is the important parameter to scale the flame propagation velocity and flame temperature.
机译:本文通过高速刻纹照相技术研究了甲烷爆炸的火焰微观结构和传播特性。实验表明,甲烷爆炸的火焰前表面和内部流场具有明显的分形特征,可以通过分形维数直接反映出火焰前表面和内部反应物的皱纹对火焰传播的影响。分形维数与火焰的结构和火焰的传播特性有直接关系,它是衡量火焰传播速度和火焰温度的重要参数。

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