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What is the ideal glass bath depth of a glass furnace?

机译:什么是玻璃炉的理想玻璃浴深度?

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Mathematical modelling is reaching a high acceptance level within the glass industry. Today most new furnaces are being modelled before the final design is decided. It is clear that the modelling helps to optimise the furnace in respect to glass quality, energy efficiency and furnace life-time. The extra effort of the modelling is leading for sure to a quick pay-back of this extra investment and an increased profit over the furnace life-time. Even the furnace life-time can be extended with better insight on temperature distribution and glass speeds that corrode the refractory. Many glass produces are always asking us: “what is the optimal glass depth”? There is not just one answer to this, but the paper demonstrates how mathematical modelling can help to find the optimal furnace depth for a certain furnace design.
机译:数学建模在玻璃行业内达到高验收水平。今天,大多数新的炉子都在决定最终设计之前进行建模。很明显,建模有助于优化玻璃质量,能量效率和炉寿命的炉子。建模的额外努力是肯定的,肯定会在额外的投资中快速退还,并在炉子救生时间上增加利润。即使是炉子寿命,也可以通过更好地了解腐蚀耐火材料的温度分布和玻璃速度更好地展示。许多玻璃生产总是询问我们:“最佳玻璃深度是什么”?这不仅仅是一个答案,但本文演示了数学建模如何有助于找到某些炉子设计的最佳炉深。

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