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A numerical approach for the combined analysis of the dynamic thermal behaviour of an entire ceramic roller kiln and the stress formation in the tiles

机译:综合分析整个陶瓷辊道窑的动态热行为和砖中应力形成的一种数值方法

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The numerical analysis of thermal and fluid dynamics behaviour of an industrial roller kiln used for manufacturing ceramic tiles is carried out and combined with the analysis of the mechanical stresses formed in the final ceramics product. The developed numerical approach is able to address the energy efficiency, the fuel consumption as well as the pollutant emissions and the quality of the final product. The model of the ceramic kiln is based on a lumped and distributed parameter model and accounts for the heat and mass transfer phenomena that take place in the real components under actual operating conditions of the systems. Models for the simulation of the different components that are used for the kiln functioning are included in the modelling, such as the burners, the fan, the valves and the control system. The numerical approach demonstrates to predict accurately the temperature distribution of both the tiles and the hot gases along the kiln length. Numerical results are validated against experimental measurements carried out on a real kiln during regular production operations. Additionally, the calculated temperature profile of the tiles is employed to predict the mechanical stresses that form in the ceramic product within the kiln. A thermomechanical model is adopted to determine the curvature and residual stresses in the tiles and particular care is devoted to the final stresses that remain at the end of the kiln since they affect the quality of product.The developed numerical approach demonstrates to be an efficient tool for investigating different control strategies to optimize the kiln thermal behaviour as well as the tile quality. On the basis of the fluid-dynamics and thermomechanical numerical approaches, a modified operating strategy for the kiln's cooling section is proposed to minimize the tiles' residual stresses and the modified cooling profile resulted to be in the operating range of the real kiln. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对用于制造瓷砖的工业辊道窑的热和流体动力学行为进行了数值分析,并与对最终陶瓷产品中形成的机械应力的分析相结合。开发的数值方法能够解决能源效率,燃料消耗,污染物排放和最终产品的质量。陶瓷窑炉的模型基于集总和分布的参数模型,并考虑了在系统的实际运行条件下真实组件中发生的传热和传质现象。包括窑炉功能的不同组件的仿真模型包括在模型中,例如燃烧器,风扇,阀门和控制系统。数值方法表明,可以准确地预测砖和热气沿窑长度的温度分布。数值结果通过常规生产操作中在真实窑上进行的实验测量得到验证。另外,所计算的砖的温度曲线用于预测在窑内的陶瓷产品中形成的机械应力。采用热力学模型确定瓷砖的曲率和残余应力,并特别注意窑尾的最终应力,因为它们会影响产品的质量。所开发的数值方法证明是一种有效的工具研究不同的控制策略以优化窑炉的热性能以及瓷砖质量。基于流体力学和热力学数值方法,提出了一种改进的窑冷却段运行策略,以最大程度地降低瓷砖的残余应力,而改进的冷却曲线在实际窑的运行范围内。 (C)2019 Elsevier Ltd.保留所有权利。

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