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Development and application of a numerically efficient model describing a rotary hearth furnace using CFD

机译:利用CFD描述旋转炉膛数值高效模型的开发与应用。

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摘要

A computationally highly efficient numerical model is presented able to characterize combustion and steel heating in a real-size industrial rotary hearth furnace using computational fluid dynamics (CFD). High degree of accuracy, as well as high spatial and temporal resolution, can be achieved by the usage of an iterative scheme minimizing computational effort needed. Further increase in efficiency was achieved by selection of the most suitable combustion model. In this, the steady laminar flamelet (SFM), the eddy dissipation model (EDM) and the eddy-dissipation concept model (EDC) were used. Compared to other publications, the flamelet generated manifold (FGM) was also considered in this work. The models reveal minor differences in the calculated results, however, big differences occur in terms of computational effort required. The SFM, despite the usage of a detailed reaction mechanism, has been found as the most economic. The results revealed a high consistency with measurements verifying the high quality of the presented model. Also a scale formation model applied to the simulation reveals good agreement with measurements. In addition, two of the main problems of the present furnace are evaluated and suggestions for improvement are provided. Thus it is valuable for researchers and furnace operators at the same time. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种计算高效的数值模型,该模型可以使用计算流体力学(CFD)表征真实尺寸的工业旋转炉膛炉中的燃烧和钢的加热。通过使用使所需的计算工作量最小化的迭代方案,可以实现较高的准确性以及较高的空间和时间分辨率。通过选择最合适的燃烧模型,进一步提高了效率。在此,使用了稳定层流小火焰(SFM),涡流消散模型(EDM)和涡流消散概念模型(EDC)。与其他出版物相比,在这项工作中还考虑了火焰发生歧管(FGM)。这些模型显示出计算结果的微小差异,但是,在所需的计算工作量方面却出现了很大的差异。尽管使用了详细的反应机制,但SFM被认为是最经济的。结果表明,测量结果具有高度一致性,验证了所提出模型的高质量。同样,应用于模拟的结垢模型也显示出与测量的良好一致性。另外,评价了本炉的两个主要问题,并提出了改进建议。因此,对于研究人员和熔炉操作员而言,这是很有价值的。 (C)2019 Elsevier Ltd.保留所有权利。

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