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A MODELING STUDY OF FLOW AND HEAT TRANSFER IN THE VICINITY OF AN ELECTRODE

机译:电极附近流动与传热的模型研究

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Buoyancy and electromagnetically driven flow and heat transfer phenomena in the vicinity of top and bottom entering electrodes in a glass melt were studied using a mathematical model. The rate of joule heating and the Lorentz force components were calculated by solving transport equations for the magnetic field intensity. This approach differs from the traditional approach of solving equations for the electric potential. The results showed that a top entering electrode gave a smaller circulation zone, smaller velocity scale, and larger overall temperature difference than a bottom entering electrode. The inclusion of the Lorentz force had only a slight impact on the maximum velocity and essentially no impact on the temperature distribution.
机译:使用数学模型研究了玻璃熔体中顶部和底部进入电极附近的浮力,电磁驱动的流动和传热现象。焦耳加热速率和洛伦兹力分量是通过求解磁场强度的输运方程来计算的。该方法不同于求解电势方程的传统方法。结果表明,与底部进入电极相比,顶部进入电极具有较小的循环区,较小的速度范围和较大的总温差。包含洛伦兹力仅对最大速度有轻微影响,而对温度分布基本上没有影响。

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