Effects of fin on mixed convection heat transfer in a vented square cavity: A numerical study

Mohammed Ghurban, Khaled Al‐Farhany, Kada Benhanifia
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Abstract

Numerical investigation of mixed convective in a vented square cavity with fin. The horizontal walls are adiabatic, while the left and right walls are at hot and cold temperatures, respectively. The fluid inlet to the cavity from the lower left open area, and exit from the upper right open area. In this study, a finite element scheme is employed. The analysis is done for specific Prandtl number, Reynolds number, fin length, Richardson number, and the location of the fin. The finding indicates that the increases when high the location of the fin is, the increase at the maximum height of this fin location is estimated to be 17% due to an increase in the area of fluid flow on the hot wall caused by rising convective. The highest heat transfer occurs when the fin length is equal to 0.6 at the location.
翅片对通风方形空腔中混合对流传热的影响:数值研究
带翅片的通风方形空腔中混合对流的数值研究。水平壁是绝热的,左壁和右壁分别处于高温和低温状态。流体从左下方开口区进入空腔,从右上方开口区流出。本研究采用了有限元方案。对特定的普朗特数、雷诺数、翅片长度、理查德森数和翅片位置进行了分析。研究结果表明,翅片位置越高,传热量就越高,翅片位置最大高度处的传热量增幅估计为 17%,这是因为上升对流导致热壁上的流体流动面积增大。当翅片长度等于 0.6 时,该位置的传热量最高。
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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