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Effect of Iron Ores and Sintering Conditions on Flame Front Properties

机译:铁矿石和烧结条件对火焰前锋特性的影响

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In iron ore sintering, the properties of the flame front are clearly critical as they determine the heat imparted to the particulate bed and, hence, the strength of the formed sinter. This study explores the factors that influence flame front temperature and also the speed at which it descends down a bed. These two properties are dependent on post-ignition airflow rate and the properties of the sinter mix. Post-ignition airflow rate is a strong function of the pre-ignition airflow rate and the flow resistance of the flame front. This study reiterates the strong dependence of flame front resistance on gas flow velocity, flame front temperature and applied suction. Dense ores produce higher bulk density and lower porosity beds and, as a consequence, they have the effect of slowing down and broadening the flame front. The influence of flame front speed on flame front properties for different ores was also established. For comparable flame front properties results show that sinter basicity has a large influence on sinter strength and yield. Studies of coke combustion efficiency show decreasing values with increasing flame front speed and values increased significantly when sintering YANDI ore. Many of the obtained quantitative dependences will be used to verify a sintering mathematical model that is under development.
机译:在铁矿石烧结中,火焰前沿的特性显然很关键,因为它们决定了传递给颗粒床的热量,并因此决定了所形成烧结体的强度。这项研究探讨了影响火焰前部温度以及其下降到床下的速度的因素。这两个性质取决于点火后的空气流速和烧结混合物的性质。点火后的空气流速是点火前的空气流速和火焰前沿的流动阻力的强函数。这项研究重申了火焰前沿阻力对气体流速,火焰前沿温度和施加的吸力的强烈依赖性。致密的矿石产生较高的堆积密度和较低的孔隙度床,因此,它们具有减慢和扩大火焰前锋的作用。还确定了火焰前沿速度对不同矿石的火焰前沿特性的影响。对于相当的火焰前沿性能,结果表明,烧结矿的碱度对烧结矿的强度和屈服强度有很大的影响。焦炭燃烧效率的研究表明,当烧结YANDI矿石时,其值随着火焰前移速度的增加而降低,并且值显着增加。许多获得的定量依赖性将用于验证正在开发的烧结数学模型。

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