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Study on Mass Transfer Characteristics in an AOD Converter Bath under Conditions of Combined Side and Top Blowing

机译:侧吹和顶吹组合条件下AOD转炉中传质特性的研究

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摘要

The mass transfer characteristics in a steel bath during the AOD refining process with the conditions of combined side and top blowing were investigated. The experiments were conducted on a water model unit of 1/4 linear scale for a 120-t combined side and top blowing AOD converter. Sodium chloride powder of analytical purity was employed as the flux for blowing, and the mass transfer coefficient of solute (NaCl) in the bath was determined under the conditions of the AOD process. The effects of the gas flow rates of side and top blowing processes, the position arrangement and number of side tuyeres, the powdered flux particle (bubble) size and others on the characteristics were examined. The results indicated that, under the conditions of the present work, the mass transfer coefficient of solute in the bath liquid is in the range of (7.31 X 10~(-5)-3.84 X 10~(-4)) m/s. The coefficient increases non-linearly with increasing angle between each tuyere, for the simple side blowing process at a given side tuyere number and gas side blowing rate. The gas flow rate of the main tuyere has a governing influence on the characteristics, and the gas jet from the top lance decreases the mass transfer rate, the relevant coefficient being smaller than that for a simple side blowing. Also, in the range of particle (bubble) size used in the present work and with all other factors being constant, raising particle (bubble) size increases the coefficient. Excessively fine powder particle (bubble) sizes are not advantageous to strengthening the mass transfer. With the oxygen top blowing rate practiced in the industrial technology, the side tuyere arrangements of 7 and 6 tuyeres with an angular separation of 22.5 deg and 27 deg between each tuyere, as well as 5 tuyeres with an angle of 22.5 deg between each tuyere can provide a larger mass transfer rate in the bath. Considering the relative velocity of the particles to the liquid, the energy dissipation caused by the fluctuation in the velocity of the liquid in turbulent flow and regarding the mass transfer as that between a rigid bubble and molten steel, the related dimensionless relationships for the coefficient were obtained.
机译:在侧吹和顶吹结合的条件下,研究了AOD精炼过程中钢浴中的传质特性。实验是在1/4线性比例的水模型单元上进行的,用于120吨侧吹式和顶吹式AOD转炉。使用分析纯的氯化钠粉末作为吹塑助熔剂,并在AOD工艺条件下确定浴中溶质(NaCl)的传质系数。研究了侧吹和顶吹过程的气体流速,侧风口的位置安排和数量,助焊剂粉末(气泡)大小等对特性的影响。结果表明,在本工作条件下,浴液中溶质的传质系数为(7.31 X 10〜(-5)-3.84 X 10〜(-4))m / s 。对于在给定的侧风口数和气体侧吹速度下的简单侧吹过程,该系数随着每个风口之间的角度的增加而非线性地增加。主风口的气体流速对特性有决定性的影响,并且从顶部喷枪喷出的气体会降低传质速率,其相关系数小于简单边吹的系数。同样,在本工作中使用的颗粒(气泡)尺寸的范围内,并且在所有其他因素不变的情况下,增大颗粒(气泡)尺寸会增加系数。过多的粉末颗粒(气泡)尺寸不利于加强传质。在工业技术中采用氧气顶吹速率,侧风口布置为7个和6个风口,每个风口之间的角度间隔为22.5度和27度,以及5个风口,每个风口之间的角度间隔为22.5度。在浴中提供更大的传质速率。考虑到颗粒相对于液体的相对速度,由湍流中液体的速度波动引起的能量耗散,以及将质量传递视为刚性气泡和钢水之间的传递,系数的相关无量纲关系为获得。

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