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Augmentation of Natural Convection Heat Transferfrom a Fin by Lateral Hexagonal Perforations

机译:通过横向六角穿孔增强翅片自然对流换热

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摘要

In this study the enhancement of heat transfer from a horizontal rectangular fin subjected to natural convection provided with lateral hexagonal perforations is investigated using one dimensional finite element technique. The orientation of these perforations is described as they have two sides parallel to the base and tip of the fin. The perforated fin is compared with its equivalent solid one. The parameters considered are geometrical dimensions and thermal properties of the fin and these of the perforations. This study involves enhanced heat transfer surfaces that provide increased turbulence and a better flow distribution. Also, it considered the gain in fin area and of heat transfer coefficients due to perforations. From this study and for certain values of hexagonal dimension and spaces between perforations, it is found that there is an augmentation in heat transfer dissipation of the perforated fin over than that of the equivalent solid one. Moreover, the heat transfer enhancement of the perforated fin increases as the thickness and thermal conductivity of the fin are increased.
机译:在这项研究中,利用一维有限元技术,研究了水平矩形翅片在自然对流条件下的传热效果,该翅片具有自然的对流,并带有侧面的六角形穿孔。描述了这些穿孔的方向,因为它们的两侧平行于鳍的底部和尖端。将穿孔的翅片与其等效的实心翅片进行比较。考虑的参数是散热片和穿孔的几何尺寸和热性能。这项研究涉及增强的传热表面,这些表面提供增加的湍流和更好的流量分布。另外,它考虑了由于穿孔而导致的翅片面积的增加和传热系数的增加。从这项研究中,对于六边形尺寸和穿孔之间的间隔的某些值,发现穿孔翅片的传热耗散大于等效固体翅片的传热耗散。此外,随着翅片的厚度和导热率的增加,多孔翅片的传热增强也增加。

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