Study on molten steel flow mechanism in 210t RH snorkels by water model experimental
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摘要: 采用1:4的比例建立水力學模型模擬210 t多功能RH浸漬管內鋼液流動裝置,對鋼液流態進行分析,并考察吹氬量、浸漬管插入深度及吹氬孔個數對鋼液流場和混勻時間的影響.結果表明:鋼包內存在一主回流和大量小回流,并且來自下降管的下降液流和其周圍液體形成了液-液兩相流,這種流動狀態對鋼包內的混合及傳質起著決定性的作用;本文得到的關于RH鋼包內液體的這種流動狀態,否定了RH過程的早期研究中關于下降管和上升管間存在"短流"現象的結論.吹氬量、浸漬管插入深度、上層和下層吹氬孔個數對鋼液混勻時間的影響都非常明顯,其中吹氬量及下層吹氬孔個數的變化對鋼液混勻時間的影響趨勢較為強烈.Abstract: A water model was builted by employing 1:4 ratio to simulate 210 t multi-function RH devices. The flow pattern of molten steel and the influence of argon blowing quantity,snorkel insertion depth and the number of argon blowing holes on the flow field of molten steel and mixing time were investigated by the water model. The results show that a main backflow and lots of small backflows exist in the steel ladle,and the decline fluid flow from the down tube forms a liquid-liquid two-phase flow,which plays a critical role in mixing and transforming in the steel ladle. The conclusion about ‘short flow’ that exists between the down tube and the offtake pipe in early studies is denied by the flow pattern in the RH steel ladle in this paper. The argon blowing quantity,snorkel insertion depth and the numbers of the upper and lower argon blowing holes influence the mixing time of molten steel obviously,but the argon blowing quantity and the number of lower argon blowing holes are stronger.
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Key words:
- steelmaking /
- refining /
- similarity principle /
- water modeling /
- flow patterns
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