(铁-空气)粉尘悬浮中铁颗粒穿越燃烧火焰区的动力学行为

M. Bidabadi, R. Khalilinezhad, N. Moallemi
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引用次数: 0

摘要

本文主要研究了铁颗粒在燃烧室中穿越(铁-空气)悬浮液火焰区的物理动力学问题。在这篇文章中,我们集中在一个铁无尘体图和力在它。重力、气体的阻力和热变性力都是作用在铁粒子上的力。这些力作用在粒子上,使粒子在火焰区产生加速度,通过求解具有连续边界条件的粒子在粉尘-空气悬浮中速度曲线的动力学方程微分方程,可以估计出粒子在火焰区的速度分布。本研究中速度分布的理论估计与铁粒子在粒子云中穿越火焰的速度和浓度分布的实验研究进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Behavior of an Iron Particle in (Iron-Air) Dust Suspension Crossing the Flame Zones of Combustion
At present article we work on physics and dynamics of iron particles in combustion chamber crossing the flame zones of (iron- air) suspension. In this article we focus on an iron dust free body diagram and forces on it. Gravity forces, drag force from gas and thermopherotic force are these forces on an iron particle. By existing of these forces on a particle, acceleration will be inducted to a particle in flame zones and by solving the differential equation of dynamic equation for a particle with continues boundary condition in velocity curve of dusts in dust- air suspension we can estimate the velocity profile across the flame zones. Theoretical estimation of velocity profile in this study has been compared to an experimental study on velocity and concentration profile of iron particles across the flame propagating through the particles cloud.
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