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CFD analysis of regenerative chambers for energy efficiency improvement in glass production plants

机译:CFD分析蓄热室以提高玻璃生产厂的能效

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摘要

The overall efficiency of a regenerative chamber for a glass furnace mainly relies on the thermo-fluid dynamics of air and waste gas alternatively flowing through stacks of refractory bricks (checkers) determining the heat recovery. A numerical approach could effectively support the design strategies in order to achieve a deeper understanding of the current technology and hopefully suggest new perspectives of improvement. A computational fluid dynamics (CFD) scheme for the regenerator is proposed, where the real geometry of the solid phase is modelled as a porous solid phase exchanging heat with the gas stream. Satisfactory data fitting proved the reliability of the present approach, whose applications are proposed in the last section of this study, to confirm how such a CFD modelling could be helpful in improving the overall energy efficiency of the regeneration chamber.
机译:玻璃窑炉蓄热室的整体效率主要取决于空气和废气的热流体动力学,或者交替地流经耐火砖(棋盘格)的堆叠,从而确定热量回收。数值方法可以有效地支持设计策略,以加深对当前技术的了解,并希望提出改进的新观点。提出了一种用于蓄热室的计算流体动力学(CFD)方案,其中将固相的真实几何模型建模为与气流进行热交换的多孔固相。令人满意的数据拟合证明了本方法的可靠性,该方法的应用已在本研究的最后一部分中提出,以确认这种CFD模型如何有助于提高再生室的整体能效。

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