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Forced convective heat transfer of tubes sintered with partially-filled gradient metal foams (GMFs) considering local thermal non-equilibrium effect

机译:考虑局部热非平衡效应,用部分填充的梯度金属泡沫(GMFS)烧结管的强制对流热传递

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摘要

Gradient metal foams (GMFs) are novel porous structures and have great potential in heat transfer performance. In the present study, fully developed forced convective heat transfer in tubes sintered with partially-filled GMFs is numerically investigated. The inner surface of the tubes is subjected to constant heat flux. In the GMF region, the Brinkman extended Darcy flow model and the local thermal non-equilibrium (LTNE) model are used to predict fluid and thermal transport. At the layer-layer interface in GMF, fluid temperature and solid energy are assumed to be continuous. At the GMF-fluid interface, no-slip coupling conditions are used to couple flow and heat transfer of the foam and free regions. Velocity distribution, temperature profile, the friction factor and Nusselt number in partially-filled GMF tubes are calculated. The results show that the heat transfer performance and flow resistance of GMFs are heavily dependent on porosity, pore density and GMF thickness gradients.
机译:梯度金属泡沫(GMFS)是新型多孔结构,具有巨大的传热性能潜力。 在本研究中,在数值上研究了用部分填充的GMFS烧结的管中的完全发育的强制对流热传递。 管的内表面经受恒定的热通量。 在GMF区域中,Brinkman扩展了达西流模型和局部热非平衡(LTNE)模型用于预测流体和热传输。 在GMF中的层层界面处,假设流体温度和固体能量是连续的。 在GMF流体界面处,无滑移耦合条件用于耦合泡沫和自由区域的流动和传热。 计算速度分布,温度分布,部分填充的GMF管中的摩擦系数和泡沫数。 结果表明,GMFS的传热性能和流动性严重依赖于孔隙率,孔密度和GMF厚度梯度。

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