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Numerical and experimental study of pyrophoric activated metal Mg surface combustion characteristics

机译:自燃活性金属镁表面燃烧特性的数值与实验研究

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摘要

The combustion of multi-hole pyrophoric activated metal is solid combustion and the combustion mechanism is quite complex, which is a difficult problem to be solved. Once the pyrophoric activated metal is exposed to air, the oxygen diffuses to the interior of the activated metal within plenty of holes and reacts with it, which enlarges the contact area with oxygen. Consequently, the whole combustion is vigorous and the temperature rises rapidly. To study the combustion mechanism of the chaff, the surface heat balance equation is established in this work by taking Mg as the activated metal. To solve this equation, the chaff adiabatic wall temperature distribution is computed by computational fluid dynamics in the presence of high-speed airflow. Then, the chaff surface temperature distribution is obtained by solving the heat balance equations. Finally, numerical and experimental results obtained via an infrared thermal imager are compared to demonstrate the effectiveness of the established equation.
机译:多孔自燃性多孔金属的燃烧为固体燃烧,燃烧机理十分复杂,这是一个难以解决的问题。自燃的活性金属一旦暴露在空气中,氧气便会扩散到活性金属内部的许多孔中并与之发生反应,从而扩大了与氧气的接触面积。因此,整个燃烧剧烈并且温度迅速升高。为了研究谷壳的燃烧机理,以镁为活性金属,建立了谷壳的表面热平衡方程。为了求解该方程式,在高速气流的存在下,通过计算流体动力学计算了谷壳绝热壁的温度分布。然后,通过求解热平衡方程来获得谷壳表面温度分布。最后,比较了通过红外热像仪获得的数值和实验结果,以证明所建立方程的有效性。

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