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Direct numerical simulation on melting phase change behavior in open-cell metal foam

机译:开放式金属泡沫中熔化相变行为的直接数值模拟

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This study presented a pore-scaled numerical simulation on the melting phase change heat transfer of a phase change material (PCM) impregnated in open-cell metal foam. Idealized tetrakaidecahedron was selected as the representing unit cell (UC) to mimic the real foam microstructure and an assembly of tetrakaidecahedron UCs with six lines and three rows was built for computation. Phase change heat transfer in PCM and coupled heat transfer between PCM and metallic ligaments were directly simulated. To address the contribution of natural convection in the melting phase to the overall melting time and pore-scaled melting interface, natural convection in the interstitial fluid was modeled and compared with the conduction-dominated case. Results demonstrated that micro-foam can significantly accelerate the melting phase change rate and further enhancement was observed at pore scale when natural convection in the melting phase was triggered on.
机译:该研究介绍了在浸渍在开放式电池金属泡沫中的相变材料(PCM)的熔化相变传热的孔径数值模拟。选择理想化的四面八板以模仿真正的泡沫微观结构和具有六条线的TetrakeCahedron UC的组装,建立了用于计算的特定单元电池(UC)。直接模拟PCM和PCM和金属韧带之间的耦合热传递的相变热传递。为了解决对整体熔化时间和孔隙熔化界面在熔化阶段的自然对流的贡献,与导电主导的情况进行建模并与过间流体进行建模的自然对流。结果表明,微泡沫可以显着加速熔化相变率,并且当熔化阶段的自然对流被触发时,在孔隙中观察到进一步的增强。

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