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The Effect Of Pore Size On The Heat Transfer Between A Heated Finned Surface And A Saturated Porous Plate

机译:孔径对受热翅片表面与饱和多孔板之间传热的影响

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An investigation was performed to examine the effect that the pore size in a porous plate had on the heat transfer between a heated finned surface and a saturated porous plate at different gap distances between the surfaces. Experiments were performed for a porous plate with a nominal pore size of 50 μm and the results were compared with previous results for a pore size of 200 μm (Schertzer et al., 2006, "The Effect of Gap Distance on the Heat Transfer Performance Between a Finned Surface and a Saturated Porous Plate," Int. J. Heat. Mass Transfer, 4, pp. 4200-4208). The plate with the smaller pore size performed better at small and intermediate gaps but not at large gaps. The maximum heat transfer coefficient was similar for both plates when compared in terms of the ratio between the gap distance and the pore size. However, the temperature distributions on the heated foil and their evolution with heat flux were dissimilar when compared in terms of the gap distance or the gap to pore ratio, suggesting that the boiling dynamics within the gap does not scale with either parameters.
机译:进行了研究以检查多孔板中的孔尺寸在加热的翅片表面和饱和多孔板之间在表面之间的不同间隙距离处的传热的影响。对标称孔径为50μm的多孔板进行了实验,并将结果与​​孔径为200μm的先前结果进行了比较(Schertzer等人,2006,“间隙距离对传热性能的影响翅片表面和饱和多孔板,” Int.J.Heat。传质,第4页,第4200-4208页。孔径较小的板在小间隙和中间隙处表现更好,但在大间隙处则不然。当在间隙距离和孔径之间的比率进行比较时,两个板的最大传热系数相似。但是,当以间隙距离或间隙与孔的比率进行比较时,加热箔片上的温度分布及其随热通量的变化是不同的,这表明间隙中的沸腾动力学不会随这两个参数缩放。

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