Modelling Shrouded Supersonic Jets in Metallurgical Reactor Vessels
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概要
- 論文の詳細を見る
The use of shrouded supersonic jets for enhancing the performance of top blown metallurgical reactors has been studied using BOF pilot scale facilities set up in the MMPCs water modelling laboratory. The experimental results for three different designs of shrouded supersonic jet nozzles have demonstrated that greater depths of penetration and reduced mixing times can be achieved with co-axial sub and supersonic jets flow. Dimensional analysis indicates that the depth of penetration of a gas jet into a liquid bath depends on the height, H, of the lance tip from the quiescent bath, the liquids Froude, Reynolds and Weber numbers, reflecting the ratios of gravity, viscous and surface tension forces to the jets inertial, or momentum, forces. Good agreement between the mathematical model and experiments were obtained in terms of predicted and observed depths of penetration. Further efforts have been made to study jet penetration into liquid metals. The effects of density of liquid metal and a wide range of gas flow rates on the penetration depth were investigated theoretically. The results confirm that jet penetration depth can be increased with increasing shroud gas flow rate and decreased bath density.
- 社団法人 日本鉄鋼協会の論文
- 2004-10-15
著者
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GUTHRIE R.
McGill University, Montreal, Canada
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Guthrie R.
Mcgill University Montreal Canada
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Cameron A
Boc Gases A Division Of Boc Limited Priestley Centre
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MEIDANI A.
McGill Metals Processing Centre, Department of Mining, Metals and Materials Engineering, McGill Univ
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ISAC M.
McGill Metals Processing Centre, Department of Mining, Metals and Materials Engineering, McGill Univ
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RICHARDSON A.
BOC Gases, A Division of BOC Limited, Priestley Centre
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CAMERON A.
BOC Gases, A Division of BOC Limited, Priestley Centre
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Meidani A.
Mcgill Metals Processing Centre Department Of Mining Metals And Materials Engineering Mcgill Univers
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Isac M.
Mcgill Metals Processing Centre Department Of Mining Metals And Materials Engineering Mcgill Univers
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Guthrie R.
Mcgill Metals Processing Centre Department Of Mining Metals And Materials Engineering Mcgill Univers
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Richardson A.
Boc Gases A Division Of Boc Limited Priestley Centre
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