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首页> 外文期刊>Journal of Materials Science >Modelling induction skull melting design modifications
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Modelling induction skull melting design modifications

机译:建模感应颅骨融化设计修改

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Induction Skull Melting (ISM) is used for heating, melting, mixing and, possibly, evaporating reactive liquid metals at high temperatures when a minimum contact at solid walls is required. The numerical model presented here involves the complete time dependent process analysis based on the coupled electromagnetic, temperature and turbulent velocity fields during the melting and liquid shape changes. The simulation is validated against measurements of liquid metal height, temperature and heat losses in a commercial size ISM furnace. The often observed limiting temperature plateau for ever increasing electrical power input is explained by the turbulent convective heat losses. Various methods to increase the superheat within the liquid melt, the process energy efficiency and stability are proposed. (C) 2004 Kluwer Academic Publishers.
机译:当需要在固体壁上保持最小接触时,感应头骨熔化(ISM)用于在高温下加热,熔化,混合并可能蒸发反应性液态金属。此处提供的数值模型涉及基于时间的完整过程分析,该过程基于熔融和液体形状变化期间耦合的电磁场,温度场和湍流场。该仿真针对商用大小ISM炉中液态金属的高度,温度和热损失的测量进行了验证。湍流对流热损失解释了经常观察到的不断增加的电力输入的极限温度平稳期。提出了增加液体熔体中过热度,提高过程能量效率和稳定性的各种方法。 (C)2004 Kluwer学术出版社。

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