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Free convection heat transfer analysis of a suspension of nano-encapsulated phase change materials (NEPCMs) in an inclined porous cavity

机译:在倾斜的多孔腔中的纳米封装相变材料(Nepcms)的悬浮液的自由对流传热分析

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In the current study, free convection heat transfer of a suspension of Nano-Encapsulated Phase Change Materials (NEPCMs) is simulated and discussed in an inclined porous cavity. The phase change materials are capsulated in nano-shells layers, while the core stores/releases large amounts of energy during melting/solidification in the vicinity of the hot/cold walls. The governing equations are introduced and transformed into non-dimensional form before being solved by using the finite element method. Simulation results are validated thoroughly. Thereafter, the consequences of the fusion temperature and the Stefan number on the distributions of streamlines, isotherms, and the heat capacity ratio, as well as the heat transfer characteristics, are analyzed for different inclination angles of the cavity. Inspection of the results demonstrates that the best heat transfer performance occurs for the non-dimensional fusion temperature of 0.5 and the inclination angle of 42 degrees. It is found that a decrease in the Stefan number improves heat transfer. The results also show that the presence of the NEPCM particles generally leads to heat transfer improvement.
机译:在目前的研究中,在倾斜的多孔腔中模拟并讨论了纳米封装相变材料(NEPCMS)的悬浮液的自由对流传热。相变材料在纳米壳层中涂上覆盖,而芯储存/在热/冷壁附近的熔化/凝固过程中释放大量的能量。在通过使用有限元法解决之前,将控制方程引入并转化为非尺寸形式。仿真结果彻底验证。此后,针对不同的腔的倾斜角度分析融合温度和熔点数的熔化温度和斯特凡数,以及热传递特性。检查结果表明,最佳的传热性能发生在0.5的非尺寸熔化温度和42度的倾斜角度。发现斯特凡数减少改善了传热。结果还表明,Nepcm颗粒的存在通常导致传热改善。

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