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Sensitivity study of forced convection bubbling in a transparent viscous fluid as a proxy for molten borosilicate glass

机译:透明粘性流体中强迫对流冒泡作为熔融硼硅酸盐玻璃的替代物的敏感性研究

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Computational fluid dynamic and heat transfer models are being developed for the waste glass melters that will be used to vitrify legacy tank waste at the Hanford site. The objective of this study is to validate the ability of these models to predict the forced convection bubbling in the molten glass at prototypic conditions and scale. Bubbling is used to homogenize the melt pool and increase the melt rate of the batch. Simulations were compared with experimental data obtained with a surrogate liquid under isothermal conditions in an acrylic tank. The simulation results quantify the projected bubble area at the free surface as a function of flow rate and nozzle depth and show agreement with experimental data. Additionally, the local sensitivities of the surface tension and viscosity are evaluated for their effects, since in the melter this parameter directly affects the heat transfer from the molten glass to the reactive batch (or cold cap) layer. From the sensitivity study performed, the viscosity exhibits twice as much influence on bubble projected surface area as the surface tension. In comparison to the grid resolution used in this study, these glass properties produce higher levels of uncertainty. (C) 2018 Elsevier Ltd. All rights reserved.
机译:正在为废玻璃熔化器开发计算流体动力学和传热模型,该模型将用于在汉福德工厂对遗留的废罐进行玻璃化。这项研究的目的是验证这些模型在原型条件和规模下预测熔融玻璃中强制对流冒泡的能力。鼓泡用于使熔池均匀,并提高批料的熔化速率。将模拟与在丙烯酸池中等温条件下用替代液体获得的实验数据进行比较。仿真结果量化了自由表面上的投影气泡面积,该气泡面积是流量和喷嘴深度的函数,并且与实验数据吻合。此外,还评估了表面张力和粘度的局部敏感性对它们的影响,因为在熔融器中,此参数直接影响从熔融玻璃到反应性批料(或冷盖)层的热传递。从进行的敏感性研究来看,粘度对气泡投影表面积的影响是表面张力的两倍。与本研究中使用的网格分辨率相比,这些玻璃属性会产生更高的不确定性。 (C)2018 Elsevier Ltd.保留所有权利。

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