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Correlation studies of hydrodynamics and heat transfer in metal foam heat exchangers

机译:金属泡沫换热器流体动力学与传热的相关性研究

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This study presents the correlations of both hydrodynamics and heat transfer in a metal foam heat exchanger. The present work is focused on the application to dry cooling such as air-cooled condensers (ACCs). In particular empirical correlations for the permeability, form drag coefficient, friction factor, and the overall heat transfer coefficient for different samples of metallic foam have been validated and verified with available experimental data and numerical simulations. The modified correlations used in this study are established through the validation & verification studies of metal foam heat exchangers. In order to address the difference, finned tube heat exchangers are used to compare to the metal foam heat exchangers with the same geometry size and layout. For fully wrapped metal foam heat exchangers, the prediction using empirical correlation is consistent with computational fluid dynamics (CFD) simulations. However, the scenarios become complicated for partially wrapped metal foam heat exchangers. The numerical results show that there is an optimal choice of the porosity of metal foam in which the wall heat transfer coefficient and pressure drop reach the design goal. Overall, the heat transfer capability of metal foam heat exchangers can supersede conventional compact heat exchangers given optimal scenario.
机译:这项研究提出了金属泡沫热交换器中流体动力学和传热的相关性。目前的工作集中在干冷的应用上,例如风冷冷凝器(ACC)。特别是,已经通过可用的实验数据和数值模拟验证并验证了金属泡沫的不同样品的渗透率,形式阻力系数,摩擦系数和总传热系数的经验相关性。本研究中使用的修正相关性是通过金属泡沫热交换器的验证和验证研究建立的。为了解决差异,使用翅片管热交换器与具有相同几何尺寸和布局的金属泡沫热交换器进行比较。对于完全包裹的金属泡沫热交换器,使用经验相关性进行的预测与计算流体动力学(CFD)模拟一致。然而,对于部分包裹的金属泡沫热交换器而言,方案变得复杂。数值结果表明,金属泡沫的孔隙率存在最佳选择,其中壁的传热系数和压降均达到设计目标。总体而言,在最佳情况下,金属泡沫热交换器的传热能力可以取代传统的紧凑型热交换器。

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