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Method for Evaluating Thermal Convection in Molten Glass Flow in a Glass Tank Furnace

机译:玻璃罐炉中熔融玻璃流中热对流的评估方法

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摘要

Various computer simulations of molten glass flow have been used for the design, operation and trouble shooting of glass tank furnaces. It is necessary to predict the degree of thermal convection of molten glass, whose viscosity is affected by the major composition of glass and thermal conductivity of which varies with the ferrous oxide (FeO) content. The thermal conductivity decreases as the FeO content increases. Thermal convection is characterized by the Rayleigh number, Ra, and the Prandtl number, Pr. Typically, Ra is expected to be large for a small thermal conductivity, but the actual thermal convection is weaker in this case than when the thermal conductivity is large. To elucidate the underlying convection mechanism, a two-dimensional mathematical flow model is developed in this study. Non dimensional formulation of the governing equations shows that Pr~(-1) affects the degree of thermal convection. The effective value of Ra, Ra_(eff), is introduced to evaluate the influence of temperature-dependent properties on thermal convection. An evaluation method of thermal convection is proposed and extended to glasses with different thermal conductivities.
机译:熔融玻璃流动的各种计算机模拟已用于玻璃罐式炉的设计,操作和故障排除。有必要预测熔融玻璃的热对流程度,其粘度受玻璃主要成分的影响,并且其热导率随氧化亚铁(FeO)含量而变化。随着FeO含量的增加,热导率降低。热对流的特征在于瑞利数Ra和普朗特数Pr。通常,对于小的热导率,期望Ra大,但是在这种情况下,实际的热对流比大的热导率弱。为了阐明潜在的对流机理,本研究开发了二维数学流模型。控制方程的无量纲表示表明Pr〜(-1)影响热对流程度。引入Ra的有效值Ra_(eff)来评估与温度有关的特性对热对流的影响。提出了一种热对流的评估方法,并将其扩展至具有不同热导率的玻璃。

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