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Laminar natural convection heat transfer depending on diameters of vertical cylinders with circular cross-section with high Prandtl number

机译:层流自然对流换热取决于具有高Prandtl数的圆形横截面的垂直圆柱的直径

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摘要

Laminar natural convection heat transfer behavior in vertical cylinders with high Pr was experimentally and numerically performed by varying the diameters at diverse heights. Mass transfer experiments were conducted instead of heat transfer ones using an electroplating system based on the analogy concept. 3-D computational models using finite volume method have been developed and validated against experimental data. Both experimental and numerical results were in satisfactory agreement with the existing laminar natural convection correlation developed on a vertical plate. The dependency of the diameter at various Ra-H on Nu(H) was clearly observed; at the smallest diameter, heat transfer rates deteriorated due to stagnant flows, and then were enhanced due to the increased mass flow rates by flow-like chimney effects with increasing diameter, eventually coinciding with the existing laminar correlation. The influences of diameters on heat transfer rates and flows were analyzed from numerical simulations. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过在不同高度上改变直径,在实验和数值上对高Pr垂直圆柱体中的层流自然对流传热行为进行了实验。使用基于类比概念的电镀系统进行了传质实验,而不是传热实验。已经开发了使用有限体积方法的3-D计算模型,并针对实验数据进行了验证。实验和数值结果都与在垂直板上发展的现有层流自然对流相关性令人满意。清楚地观察到各种Ra-H处的直径对Nu(H)的依赖性。在最小直径处,传热速率由于停滞流动而恶化,然后由于直径增大而产生的类似流形烟囱效应的质量流量增加而提高,最终与现有的层流相关性相吻合。通过数值模拟分析了直径对传热速率和流动的影响。 (C)2019 Elsevier Ltd.保留所有权利。

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