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Three Dimensional Simulation of Lime Particle Penetration into Molten Iron Bath Using Smoothed Particle Hydrodynamics

机译:平滑粒子流体动力学对石灰颗粒渗透铁水浴的三维模拟

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It is desirable to enhance the desulfurization and dephosphorization rates and their efficiencies in steelmaking. Injection of flux particles is one of the key technologies, and knowledge of the behavior of the particles when they penetrate into a metal bath is important to control the process. In this study, two-dimensional and three-dimensional simulation models were developed to study the penetration behavior when a solid body penetrates into a liquid, using the SPH method with a new pairwise potential. The three-dimensional simulation model could reproduce the experimental results in the water model satisfactorily, and was applied to a lime sphere-molten iron bath system. The penetration length and the residence time increased with the increase in initial velocity. The residence time of the sphere also increased as the wettability increased. The critical velocity for penetration, estimated by simulation, showed good agreement with that calculated using Ozawa’s equation.
机译:期望提高脱硫和脱磷速率及其在炼钢中的效率。助熔剂颗粒的注入是关键技术之一,了解颗粒在渗透到金属熔池中时的行为对于控制过程非常重要。在这项研究中,使用具有新的成对电势的SPH方法,开发了二维和三维仿真模型来研究固体渗透到液体中时的渗透行为。三维仿真模型可以令人满意地在水模型中再现实验结果,并应用于石灰球-铁水浴系统。渗透长度和停留时间随着初始速度的增加而增加。球的停留时间也随着润湿性的增加而增加。通过模拟估算得出的穿透临界速度与使用Ozawa方程计算的临界速度显示出良好的一致性。

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