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Analytical Investigation of Gaussian Roughness Effects on the Thermal Performance of Conical Microfins

机译:高斯粗糙度对锥形微翅片热性能的影响的分析研究

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摘要

Effects of Gaussian surface roughness on different aspects of thermal performance of conical microfins are investigated. A new analytical model is developed, applying the Adomian decomposition method. Convergence of the Adomian solution to the exact solution is shown, by increasing the number of computed decomposition terms. In addition, to verify the present solution, the obtained results are compared with the analytical results of Bahrami et al. (2007, "Role of Random Roughness on Thermal Performance of Microfins," J. Thermophys. Heat Transfer, 21(1), pp. 153-157) for the uniform cross-section microfin. Surface roughness effects on temperature distribution, base heat flux at different Nusselt numbers, and thermal resistance of the microfin are investigated. It is observed that the thermal resistance of the smooth microfin is higher than the rough one and by increasing the roughness, the thermal resistance experiences further reduction.
机译:研究了高斯表面粗糙度对锥形微翅片热性能不同方面的影响。应用阿多姆分解方法,开发了一种新的分析模型。通过增加计算的分解项的数量,可以显示出Adomian解到精确解的收敛性。此外,为了验证本解决方案,将获得的结果与Bahrami等人的分析结果进行了比较。 (2007,“随机粗糙度对微片的热性能的作用”,J.Thermophys。热传递,21(1),第153-157页),用于均匀截面的微片。研究了表面粗糙度对温度分布,不同努塞尔数下的基本热通量以及微鳍片热阻的影响。观察到,光滑的微片的热阻高于粗糙的微片,并且通过增加粗糙度,热阻进一步降低。

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