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Comparison of direct numerical simulation with volume-averaged method on composite phase change materials for thermal energy storage

机译:蓄热复合相变材料直接数值模拟与体积平均法的比较

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Melting heat transfer in open-cell metal foams embedded in phase-change materials (PCMS) predicted by the volume-averaged method (VAM) was systematically compared with that calculated using direct numerical simulation (DNS), with particular attention placed upon the contribution of natural convection in the melt region to overall phase change heat transfer. The two-temperature model based on the assumption of local thermal non equilibrium was employed to account for the large difference of thermal conductivity between metallic ligaments and PCM (paraffin). The Forchheimer extended Darcy model was employed to describe the additional flow resistance induced by metal foam. For the DNS, a geometric model of metal foam based on tetrakaidehedron cells was reconstructed. The DNS results demonstrated significant temperature difference between ligament surface and PCM, thus confirming the feasibility of local thermal non-equilibrium employed in VAM simulations. Relative to the DNS results, the VAM combined with the two-temperature model could satisfactorily predict transient solid-liquid interface evolution and local temperature distribution, although pore-scale features of phase change were lost. The presence of natural convection affected significantly the melting front shape, temperature distribution and full melting. The contribution of natural convection to overall phase change heat transfer should be qualitatively and quantitatively given sufficient consideration from both macroscopic (VAM) and microscopic (DNS) point of views. Besides, practical significance and economic prospective using metal foam in TES unit for WHR system to provide residential heating or hot water is discussed and analyzed.
机译:通过体积平均法(VAM)预测的相变材料(PCMS)中嵌入的开孔金属泡沫中的熔体传热与使用直接数值模拟(DNS)计算得到的系统地进行了比较,并特别关注了熔体区域的自然对流到整体相变传热。采用基于局部热非平衡假设的双温度模型来解释金属韧带和PCM(石蜡)之间的热导率差异较大。使用Forchheimer扩展的Darcy模型来描述由金属泡沫引起的附加流动阻力。对于DNS,重建了基于四面体细胞的泡沫金属的几何模型。 DNS结果表明,韧带表面和PCM之间存在明显的温差,从而证实了VAM模拟中使用局部热不平衡的可行性。相对于DNS结果,VAM结合两温模型可以令人满意地预测固-液界面的瞬态演化和局部温度分布,尽管相变的孔隙尺度特征消失了。自然对流的存在显着影响熔化前沿形状,温度分布和完全熔化。从宏观(VAM)和微观(DNS)的角度出发,应充分考虑自然对流对总体相变传热的贡献。此外,还讨论并分析了将金属泡沫用于热水余热发电系统的TES单元中以提供住宅供暖或热水的实际意义和经济前景。

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