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Enhancing Heat Transfer of Rectangular Fins: Implementing Constructal Optimization Approach

机译:增强矩形翅片的传热:实施建筑优化方法

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Fin shape optimization is essential to enhance heat transfer by maximizing the heat flux and reducing material. This study examined rectangular fin shape optimized through material reduction and increasing effective surface area to enhance more heat flux. Simulation approach was adopted using ANSYS Workbench carrying out a Steady-State Thermal Analysis. The base temperature of the surface in contact to fins was assumed to be 100°C. Basically, three cases of rectangular fins were studied: without modification, with circular cavities of 0.3 cm, and with circular cavities of 0.5 cm. The results show that, by introducing circular cavities, the heat flux distribution enhanced as well as there was reduction in the minimum temperature at the far edge of the fin.
机译:FIN形状优化对于通过最大化热通量和还原材料来增强传热至关重要。该研究检查了通过材料减少优化的矩形翅片形状,并增加有效表面积以增强更多的热通量。采用稳态热分析的ANSYS Workbench采用仿真方法。假设与翅片接触的表面的基础温度为100℃。基本上,研究了三种矩形鳍片:无改性,圆形腔0.3厘米,圆形腔0.5厘米。结果表明,通过引入圆形空腔,增强的热量通量分布以及翅片远边的最小温度降低。

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