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The effect of arc length on the least-volume fin under sensible and latent heat loads

机译:显热和潜热负荷下电弧长度对最小体积翅片的影响

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摘要

The analysis of fins using arc length to determine the minimum volume for a given heat transfer rate is demonstrated by a unified formulation for fully and partially wet surfaces of longitudinal and pin fins. The shape of the optimum profile, a circular arc, was identical for both fin geometries under the same surface conditions. The optimum shape for partially wet surfaces had two different circular arcs for dry and wet surfaces. Unlike the previous study, the base thickness of circular profiles was less than that of parabolic profiles, regardless of the surface conditions. The minimum fin volume for the circular profile was always less than the corresponding parabolic profile. The difference in volume between these profiles reached a maximum for fully wet surfaces, and was also dependent upon the psychrometric properties and heat rate constraint. The optimum wet circular arc resulted in a maximum 156% savings in fin material, compared with the parabolic arc for pin fins; this percentage was up to 135% for longitudinal fins. Nevertheless, the savings for longitudinal and pin fins were only 25.9% and 22.0%, respectively, for dry surfaces; these results differed from published values.
机译:翅片的分析利用弧长来确定给定传热速率下的最小体积,这是通过对纵向翅片和针状翅片的全部和部分湿润表面进行统一公式化证明的。在相同的表面条件下,两个翅片几何形状的最佳轮廓形状均为圆弧。对于部分潮湿的表面,最佳形状对于干燥和潮湿的表面具有两个不同的圆弧。与先前的研究不同,无论表面条件如何,圆形轮廓的基础厚度都小于抛物线轮廓的基础厚度。圆形轮廓的最小散热片体积始终小于相应的抛物线轮廓。这些轮廓之间的体积差异在完全湿润的表面上达到了最大值,并且还取决于湿度特性和热速率约束。与销状翅片的抛物线弧相比,最佳的湿圆弧使翅片材料节省最多156%。对于纵向鳍,该百分比高达135%。然而,对于干燥的表面,纵向鳍和销鳍的节省分别仅为25.9%和22.0%。这些结果与公布的值不同。

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