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Numerical analysis and measurement of glass flow in a small melting furnace

机译:小型熔炉中玻璃流动的数值分析和测量

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Control of glass flow in a glass tank is a key technology in the glass melting process. The flow and temperature distributions of the glass melt greatly affect the quality of glass products. However, these phenomena have not been well understood due to the difficulty involved in the measurement as a result of the high temperature of the glass melt. A small melting furnace was developed that was heated by electrodes. The glass flow was measured and analyzed by 3-D computer simulation. The numerical results show good agreement with the experimentally measured values. It is shown that it is possible to control the glass convection using a variety of the electric boosting conditions, the heat loss through walls and the charged glass batch. The quality of glass melt was evaluated by analyzing the temperature histories of virtual particles the furnace was charged with. It is found that the temperature of the particles is high and stable near the throat, as shown by the experimental data.
机译:控制玻璃罐中的玻璃流量是玻璃熔化过程中的关键技术。玻璃熔体的流量和温度分布极大地影响了玻璃产品的质量。但是,由于玻璃熔体的高温导致测量困难,因此尚未很好地理解这些现象。开发了一种小型熔化炉,该熔化炉通过电极加热。通过3-D计算机模拟测量和分析玻璃流量。数值结果表明与实验测量值吻合良好。结果表明,可以使用多种电增强条件,通过壁的热损失和带电的玻璃配料来控制玻璃对流。通过分析装入炉子的虚拟颗粒的温度历史记录来评估玻璃熔体的质量。如实验数据所示,发现颗粒的温度在喉部附近较高且稳定。

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