An Experimental Investigation Into Frost Accumulation Over Vertical Finned and Unfinned Surfaces During Impinging Air Flow

E. Oksuz, A. Saygin, A. Basol, M. Budakli, M. Arik
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Abstract

Frost formation on evaporators negatively affects the cooling performance of refrigerators. It increases the thermal resistance between the refrigerant and air leading to a reduction in the system cooling capacity. In this study, the effect of frost accumulation over a bare and finned surface on the convective thermal resistances has been experimentally investigated under impinging flow conditions. The surfaces are vertically positioned in a horizontal wind tunnel. The convective resistances have been measured with an in-house developed heat flux measurement system. Finally, the effectiveness of the finned surface was derived from the measurements for dry, condensing flow and as well as for frosting conditions. Under frosting conditions, the effectiveness of the finned surface is measured as 1.4 that is by a factor of 2X lower compared to the effectiveness of the same finned surface operating under dry conditions. It has been observed that the frost accumulation initially takes place at the tip of the fins and leads to a 45% drop in the heat transfer rate when the fin tips are completely covered with frost. Further frost accumulation on the fin base does not result in an additional drop in the heat transfer rate. In this regard, the study emphasizes the importance of the fin tip design for the heat sinks operating under frosting conditions.
撞击气流中垂直翅片和非翅片表面结霜的实验研究
蒸发器结霜会对冰箱的制冷性能产生不利影响。它增加了制冷剂和空气之间的热阻,导致系统冷却能力降低。本文研究了在冲击流动条件下,裸翅片表面结霜对对流热阻的影响。表面垂直放置在水平风洞中。对流阻力用内部研制的热通量测量系统进行了测量。最后,从干燥、冷凝流和结霜条件下的测量中得出了翅片表面的有效性。在结霜条件下,翅片表面的有效性测量为1.4,比在干燥条件下相同的翅片表面的有效性低2倍。已经观察到,当翅片顶端完全被霜覆盖时,霜积累最初发生在翅片顶端,导致传热率下降45%。翅片底部的进一步霜积累不会导致传热速率的进一步下降。在这方面,研究强调了翅尖设计对于在结霜条件下工作的散热器的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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