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Water model study on inclusion removal from liquid steel by bubble flotation under turbulent conditions

机译:湍流条件下气泡浮选去除钢液中夹杂物的水模型研究

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Inclusion removal from liquid steel by bubble flotation under turbulent conditions is analysed using a water model. Turbulence is realised by impeller stirring in a water containing vessel. First, the effects of variables such as filter pore size, gas flowrate, NaCl concentration, and stirring intensity on bubble size are investigated. Second, particle removal by bubble flotation is studied using the water containing vessel system. The results indicate that particle removal rate by bubble flotation is controlled by non-first order kinetics. The factors affecting the particle removal rate constant k_1 are discussed and a final empirical equation is derived as follows: -dc/dt = k_1c~(1.3665) and k_1 = A(d_P/d_B)~(2.65)epsilon~(0.104)Q_g~(1.630), where c is particle number density, t is time, A is a constant parameter, d_P and d_B are the particle and bubble diameter respectively, epsilon is the turbulent energy dissipation rate, and Q_g is the gas flowrate.
机译:使用水模型分析了在湍流条件下通过气泡浮选从钢液中去除夹杂物。通过在水容器中搅拌叶轮来实现湍流。首先,研究了诸如过滤器孔径,气体流量,NaCl浓度和搅拌强度等变量对气泡尺寸的影响。其次,使用含水容器系统研究了通过气泡浮选去除颗粒的方法。结果表明,气泡浮选的去除率受非一级动力学控制。讨论了影响颗粒去除率常数k_1的因素,并得出了以下经验公式:-dc / dt = k_1c〜(1.3665)和k_1 = A(d_P / d_B)〜(2.65)epsilon〜(0.104)Q_g 〜(1.630),其中c为粒子数密度,t为时间,A为常数参数,d_P和d_B分别为粒子和气泡直径,ε为湍流能量耗散率,Q_g为气体流量。

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