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基于火焰空间与玻璃液热耦合的玻璃熔窑数值模拟

Computational Study of Glass Furnace Based on Thermal Coupling between Combustion Space and Liquid Glass Pool

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【作者】 吕树欣刘涌宋晨路汪建勋韩高荣

【Author】 LV Shu-xin,LIU Yong,SONG Chen-lu,WANG Jian-xun,HAN Gao-rong (Institute of Inorganic and Non-Metallic Materials,Zhejiang University,Hangzhou 310027,China)

【机构】 浙江大学材料系无机非金属材料研究所

【摘要】 采用数值模拟方法,对火焰空间和玻璃池窑之间的热耦合模拟可行性进行研究,以玻璃液表面中轴线温度偏差作为比较标准,判断热耦合过程是否收敛。研究结果表明:在六至七次循环迭代后计算结果可收敛,而且热耦合模拟的收敛速度与给定的初始条件有关。建立燃天然气富氧助燃玻璃熔窑模型,与火焰空间、玻璃池窑单独模拟相比,热耦合模拟的结果能够更准确地反映喷枪燃料分布等条件对玻璃液流动情况及温度分布的影响,更为细致全面地模拟出玻璃液表面热传输的不均匀性。

【Abstract】 Computational study of thermal coupling between combustion space and liquid glass pool was performed by using the temperature deviation on the midline of fluid glass surface as the convergence criterion.Results of the study show that the convergence has been achieved after six or seven iterations,and the convergence speed is influenced by the initial conditions.Computational model of oxygen-enriched combustion furnace was established to compare the simulation results generated by separated method and thermal coupling method.Results of the comparison show that the latter one is more precise in predicting fluid condition and thermal condition,and is better at capturing the heterogeneity of heat transfer on the glass surface.

【关键词】 火焰空间玻璃液耦合模拟
【Key words】 combustion spaceglass fluidcoupled simulation
【基金】 “十二五”国家科技支撑计划资助项目(2011BAE14B02)
  • 【文献出处】 材料科学与工程学报 ,Journal of Materials Science and Engineering , 编辑部邮箱 ,2012年01期
  • 【分类号】TQ171.624.9
  • 【被引频次】7
  • 【下载频次】168
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