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Numerical analysis of natural convection in a differentially heated packed bed with non-uniform wall temperature

机译:壁温不均匀的差热填料床中自然对流的数值分析

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We report numerical simulations of natural convection and conjugate heat transfer in a differentially heated cubical cavity packed with relatively large hydrogel beads [d/L = 0.2) in a Simple Cubic Packing configuration. We study the influence of a spatially non-uniform, sinusoidally varying, wall temperature on the local flow and heat transfer, for a solid-to-fluid conductivity ratio of 1, a fluid Prandtl number of 5.4, and fluid Rayleigh numbers between 10~5 and 10~7. We present local and overall flow and heat transfer results for both sphere packed and water-only filled cavities, when subjected to variations of the wall temperature at various combinations of the amplitude and characteristic phase angle of the imposed wall temperature variations. It is found that imposing a sinusoidal spatial variation in the wall temperature may significantly alter the local flow and heat transfer, and consequently the overall heat transfer. At identical average temperature difference, applying a spatial variation in wall temperature at well-chosen phase angle can lead to significant heat transfer enhancement when compared to applying uniform wall temperatures. However, this is achieved at the cost of increased entropy generation.
机译:我们报告了自然对流和共轭热传递的数值模拟,在一个简单的立方堆积配置中,该立方对流充满了相对较大的水凝胶珠粒(d / L = 0.2),并带有相对较大的水凝胶。我们研究了空间不均匀,正弦变化的壁温对局部流动和传热的影响,固液比为1,流体普朗特数为5.4,流体瑞利数为10〜 5和10〜7。当施加壁温变化的幅度和特征相角的各种组合时,当壁温发生变化时,我们会给出球状填充腔和仅充水腔的局部和整体流动及传热结果。已经发现,在壁温度上施加正弦空间变化可以显着改变局部流动和热传递,并因此改变整体热传递。在相同的平均温度差下,与施加均匀的壁温相比,在选择好的相角处施加壁温的空间变化会导致显着的传热增强。然而,这是以增加的熵产生为代价的。

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