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PREDICTION OF THE TEMPERATURE IN A LONG HORIZONTAL FIN ROD COOLED BY NATURAL CONVECTION AND RADIATION

机译:自然对流和辐射预测长水平鳍条冷却温度。

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The objective of this fundamental study is to numerically predict the temperature along a fin cooled by natural convection and radiation and to compare with measurements. The physical situation considered is a horizontal fin with a cylindrical cross-section. One end of the fin is maintained at a constant elevated temperature, and the fin is sufficiently long so that heat loss from the tip is negligible. Heat is transferred by conduction along the fin and dissipated from the surface via natural convection and radiation. The effect of natural convection is described with a published correlation for a horizontal cylinder, and a simple model is used for the radiative heat transfer. A finite difference formulation that allows for variable fluid property effects is used to determine the temperature distribution along the fin. A comparison is made to experimental results, and the agreement between the model and experiment is very good. Results show that the heat loss due to radiation is typically 15%-20% of the total.
机译:这项基础研究的目的是对通过自然对流和辐射冷却的散热片的温度进行数值预测,并与测量结果进行比较。考虑的物理情况是具有圆柱形横截面的水平散热片。散热片的一端保持在恒定的高温下,并且散热片足够长,以至于尖端的热损失可以忽略不计。热量沿着鳍片传导,并通过自然对流和辐射从表面消散。通过对水平圆柱体的已公开相关性描述了自然对流的影响,并使用简单的模型进行辐射传热。考虑到可变流体特性影响的有限差分公式用于确定沿散热片的温度分布。与实验结果进行了比较,模型与实验之间的一致性很好。结果表明,辐射造成的热损失通常占总数的15%-20%。

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