Numerical analysis on thermal performance of a trapezoidal micro-channel heat sink using an improved version of the augmented ε-constraint method

L. Tartibu
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引用次数: 1

Abstract

This work proposes the use of an improved version of the augmented e-constraint method (AUGMENCON2) for the analysis of the thermal performance of a micro-channel heat sink. In order to highlight the strength and the effectiveness of this new approach, a trapezoidal micro-channel heat sink has been considered. The geometrical configuration namely the micro-channel widths and depth are the main variables considered in this study. Surrogate models based on the response surface methodology have been adopted to approximate the thermal resistance and the pumping power which provide an indication of the thermal performance of the micro-channel heat sink. A two-objective nonlinear problem have been formulated and implemented within the general algebraic modelling system. Global Pareto optimal solutions have been computed using the proposed method. Despite being a relatively straightforward method, the AUGMENCON2 provides a reasonable level of accuracy and shortens the required computational time in comparison to two existing approaches.
用改进的增广ε约束法对梯形微通道散热器热性能进行数值分析
这项工作提出了使用增强e约束方法(AUGMENCON2)的改进版本来分析微通道散热器的热性能。为了突出这种新方法的强度和有效性,我们考虑了一个梯形微通道散热器。几何构型即微通道宽度和深度是本研究考虑的主要变量。采用基于响应面方法的替代模型来近似计算微通道散热器的热阻和泵送功率,这是微通道散热器热性能的一个指标。在一般代数建模系统中,提出并实现了一个双目标非线性问题。利用该方法计算了全局Pareto最优解。尽管AUGMENCON2是一种相对简单的方法,但与现有的两种方法相比,它提供了合理的精度水平,并缩短了所需的计算时间。
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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