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Numerical study of melting inside concentric and eccentric horizontal annulus

机译:同心和偏心水平环内部融化的数值研究

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This paper presents numerical investigations on melting of phase change material using N-eicosane inside a cylindrical container. Numerical simulations are performed for symmetric melting of phase change material between two cylinders in concentric and eccentric arrays using the FLUENT software which is sub-cooled initially to 1 ℃. Inner cylindrical tube is considered hot wall while outer tube is insulated. Predicted result shows that melting rate is the same approximately for concentric and eccentric array before time of 15 min. After this time, melting rate decreases in concentric array. It is due to the pure conduction between hot tube and cold solid phase change material.
机译:本文介绍了在圆柱形容器内使用N-二十烷烷熔融相变材料的数值研究。使用最初被过冷至1℃的FLUENT软件,对同心和偏心阵列中的两个圆柱体之间的相变材料进行对称熔化进行了数值模拟。内圆柱管被认为是热壁,而外管则被绝缘。预测结果表明,在15分钟之前,同心和偏心阵列的熔化速率大致相同。此后,同心阵列中的熔化速率降低。这是由于热管和冷固相变材料之间的纯传导。

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