首页> 外文会议>International Symposium on Thin Slab Casting and Rolling(TSCR 2006); 20060411-13; Guangzhou(CN) >Physical and Mathematical Simulation on Flow Control Device in Tundish for Thin Slab Caster
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Physical and Mathematical Simulation on Flow Control Device in Tundish for Thin Slab Caster

机译:薄板坯连铸机中间包内流量控制装置的物理和数学模拟

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The fluid flow in tundish has a great effect on the floatation of non-metallic inclusions. The model is built for simulating a thin slab continuous casting tundish. The effects of flow control device (FCD) with different size and installed position on fluid flow in a thin slab continuous casting tundish are investigated by physical and mathematical simulation. The results show that there is a short flow and a big dead zone volume without FCD. The average residence time is shorter and the dead zone volume is bigger when using the original FCD, thus the results is not perfect. Compared with the case without FCD, when using the optimized FCD, the onset response time of tracer is 2 times more, and the average residence time is increased from 264s to 301.4s; the dead zone volume fraction is decreased from 25.54% to 15.39%. The metallurgical capability of tundish is improved obviously.
机译:中间包中的流体流动对非金属夹杂物的漂浮有很大影响。该模型用于模拟薄板坯连铸中间包。通过物理和数学模拟研究了不同尺寸和安装位置的流量控制装置(FCD)对薄板坯连铸中间包中流体流动的影响。结果表明,在没有FCD的情况下,流量短且死区体积大。使用原始FCD时,平均停留时间较短,并且死区体积较大,因此效果并不理想。与没有FCD的情况相比,使用优化的FCD时,示踪剂的起始响应时间增加了2倍,平均停留时间从264s增加到301.4s。死区体积分数从25.54%降低到15.39%。中间包的冶金能力明显提高。

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