Local mass transfer and mixing effect of converters
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摘要: 采用冷態轉爐對轉爐熔池局域流動和傳質效果進行了研究.選用不同氧槍噴頭、槍位和熔池形狀進行實驗,通過測量熔池各區域的電導率值來研究熔池局域傳質和混勻效果.根據實驗結果,分析了各因素對熔池傳質、死區分布、混勻時間及熔池速度均勻性等的影響.研究結果發現:標準熔池(徑深比為3.1)中,熔池死區主要位于熔池底部側壁和環流中心處;淺型熔池(徑深比為5.2)中,熔池死區主要位于熔池側壁.適當增加氧槍噴孔傾角和熔池徑深比,有利于增大熔池環流半徑,改善熔池內部流動,減小熔池內部死區.Abstract: Local fluid flow and mass transfer in a converter bath were studied by a cold model. According to the conductivity measured in different regions, the local mass transfer and mixing effect were determined in the bath by using different lance nozzles, lance heights and bath shapes. The effects of the three factors on the mass transfer, dead volume distribution, mixing time and velocity uniformity were analyzed. It is found that the dead volume mainly lies in the bottom near the sidewall and the vortex heart for a standard bath (diameter-to-depth ratio=3.1), but does in the sidewall region for a shallow bath (diameter-to-depth ratio=5.2). Increasing the inclination angle of the lance nozzle and the ratio of bath diameter to depth is beneficial to increasing the circulation radius of the bath, improving the bath flow and reducing the dead volume.
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Key words:
- steelmaking /
- converters /
- mass transfer /
- energy utilization /
- modeling
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