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Φ1200mm×380mm双辊薄带连铸机布流的物理模拟 被引量:3
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作者 陈远清 文光华 +1 位作者 祝明妹 丁培道 《特殊钢》 北大核心 2006年第4期25-27,共3页
采用1:2.4缩小动态物理模型,对南钢辊径1 200 mm、辊宽380 mm、液面深度460 mm的双辊2- 3 mm薄带连铸机熔池布流进行模拟和水口结构进行了评估。并采用正交设计试验,对水口结构尺寸进行了优化。结果表明,水口上下倾角为0、左右偏角60&#... 采用1:2.4缩小动态物理模型,对南钢辊径1 200 mm、辊宽380 mm、液面深度460 mm的双辊2- 3 mm薄带连铸机熔池布流进行模拟和水口结构进行了评估。并采用正交设计试验,对水口结构尺寸进行了优化。结果表明,水口上下倾角为0、左右偏角60°、侧孔面积为18 mm×11 mm时,水口的综合性能最佳,能满足熔池布流的要求。 展开更多
关键词 双辊薄带连铸 浸入式水口 熔池布流 模拟
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Improving Residence Time Distribution in Glass Melting Tanks Using Additionally Generated Lorentz Forces
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作者 Senan Soubeih Ulrich Luedtke Bemd Halbedel 《Journal of Chemistry and Chemical Engineering》 2015年第3期203-210,共8页
Continuous glass melting tanks represent thermo-chemical reactors with very complex flow patterns. Controlling the flow patterns within the glass melting tanks with the aim of improving their performance is one of the... Continuous glass melting tanks represent thermo-chemical reactors with very complex flow patterns. Controlling the flow patterns within the glass melting tanks with the aim of improving their performance is one of the glass industry primary challenges. The tank performance is basically determined by the RTD (residence time distribution) of the glass melt, which directly impacts the glass quality and energy distribution. In the present work, numerical simulations are carried out on the electromagnetic flow control to investigate how well the flow can be controlled by externally generated electromagnetic (Lorenz) forces that are added to the glass melt. Furthermore, the melting tanks are equipped with supplementary electric heating systems called "electric boosters". The desired result would be an improved RTD. The electromagnetic flow control is called "electromagnetic boosting" and can be realized by exposing the glass bath to an external magnetic field generating Lorentz forces on the glass melt as an additional flow component. The numerical simulations of the present study require coupled calculations of electromagnetic field, flow field, and temperature field, because the material properties of glass melt are strongly temperature-dependent. The computational results show that electromagnetic boosting is an excellent way of improving the RTD in glass melting tanks, ultimately resulting in better glass quality and increased productivity. Of course, the glass industry is highly interested in achieving exactly this result. 展开更多
关键词 Lorentz force RTD magnet system glass melt numerical simulation.
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