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On the effective thermal conductivity of metal foams

机译:关于金属泡沫的有效导热系数

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Knowing the effective thermal conductivity is essential in order to design a metal foam heat transfer device. Beside the experimental characterization tests, this quantity can be deduced from empirical correlations and theoretical models. Moreover, CFD (Computational Fluid Dynamics) and numerical modeling in general, at the pore scale, are becoming a promising alternative, especially when coupled with a realistic description of the foam structure, which can be recovered from X-ray computed microtomography (μ-CT). In this work, a review of the most relevant correlations and models published in the literature, usable for the estimation of the effective thermal conductivity of metal foams, will be outlined. In addition, a validation of the models with the experimental values available in the literature will be presented, for both air and water as working fluids. Furthermore, the results of a strategy based on μ-CT - CFD coupling at the pore level will be illustrated.
机译:知道有效的导热性是必不可少的,以设计金属泡沫传热装置。除了实验表征测试,可以从经验相关和理论模型推导出该数量。此外,CFD(计算流体动力学)和数值模型,通常是孔隙尺度,正处于有前途的替代方案,特别是当与泡沫结构的逼真描述耦合时,这可以从X射线计算的微观图(μ- - CT)。在这项工作中,将概述对文献中发表的最相关的相关性和模型,可用于估计金属泡沫的有效导热率的最相关的相关性和模型。此外,将呈现具有文献中可用的实验值的模型的验证,用于空气和水作为工作流体。此外,将示出基于孔水平的μ-CT-CFD耦合的策略的结果。

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