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I.One-Dimensional Approximation:Discrete-Continual Model of Flame Propagation in a Gas Suspension of Metal Particles.

机译:I.一维近似:金属颗粒气体悬浮液中火焰传播的离散连续模型。

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摘要

Experimental data on combustion of magnesium particles in oxygen-containing gas mixtures are analyzed and generalized,which allowed us to develop a semi-empirical mathematical model that takes into account the integral effect of the initial particle size,pressure,and velocity of the oxidizing flow on combustion.Flame propagation in an air suspension of fine magnesium particles is considered in a one-dimensional approximation.For this purpose,a discrete-continual model of flame propagation in a gas suspension of metal particles is developed.The flammability limits in a vessel,caused by heat losses into the ambient medium and by spatial nonuniformity of the distribution of disperse-phase particles,are numerically determined,and the influence of nonuniformity and bidispersion of a one-dimensional ensemble of particles on flame characteristics is studied.
机译:对含氧气体混合物中镁颗粒燃烧的实验数据进行了分析和归纳,这使我们能够建立一个半经验数学模型,该模型考虑了初始粒径,压力和氧化流速度的积分效应在一维近似中考虑了细镁颗粒在空气悬浮液中的火焰传播。为此,建立了金属颗粒气体悬浮液中火焰传播的离散连续模型。容器中的可燃性极限数值计算了由散发到周围介质中的热损失以及分散相颗粒分布的空间不均匀性所引起的数值,并研究了一维颗粒整体的不均匀性和双分散性对火焰特性的影响。

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