2010Rejiagong gongyiRequires access

Water Hydraulic Modeling Optimization on Baffles of Tundish for IF Steel Continuous Casting

Xun Wu

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Abstract

Based on similar principle,flow performance of molten steel in tundish was studied by water hydraulic modeling simulation.Average residence time,dead area,slug flow area and mixed flow area are calculated by water hydraulic modeling simulated RTD curve.Optimum inhibitor combination device is turbulence inhibitor with lower-dam and its detained position is obtained.Resident time in optimized tundish decreases by 4.1 percentage,and slag flow increases by 8.7 percentage compared with those in initial dead tundish.

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What this paper is about

Based on similar principle,flow performance of molten steel in tundish was studied by water hydraulic modeling simulation.Average residence time,dead area,slug flow area and mixed flow area are calculated by water hydraulic modeling simulated RTD curve.Optimum inhibitor combination device is turbulence inhibitor with lower-dam and its detained position is obtained.Resident time in optimized tundish decreases by 4.1 percentage,and slag flow increases by 8.7 percentage compared with those in initial dead tundish.

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Available abstract

Based on similar principle,flow performance of molten steel in tundish was studied by water hydraulic modeling simulation.Average residence time,dead area,slug flow area and mixed flow area are calculated by water hydraulic modeling simulated RTD curve.Optimum inhibitor combination device is turbulence inhibitor with lower-dam and its detained position is obtained.Resident time in optimized tundish decreases by 4.1 percentage,and slag flow increases by 8.7 percentage compared with those in initial dead tundish.

Key concepts: Tundish, Baffle, Dead zone, Water model, Continuous casting, Turbulence, Flow (mathematics), Materials science

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