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Sub-Optimum Design of a Forced Air Cooled Heat Sink for Simple Manufacturing

机译:用于简单制造的强制空气冷却散热器的次优设计

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In order to maximize the power density of a converter, a systematic procedure for optimizing the cooling system is necessary. Solving the equations of the optimization procedure described in this paper can be performed numerically without much effort, but manufacturing the resulting optimum heat sink is often extremely difficult and expensive, and therefore impractical. Based on the optimization theory, the sensitivity of the thermal resistance of the heat sink to changes in the geometric design parameters is discussed. Diagrams show the expected increase in thermal resistance if the manufacturing process constrains the fin thickness to certain values. Based on this, one can design a sub-optimum heat sink that gives the minimum thermal resistance for a certain manufacturing procedure. Furthermore, it is shown how much additional manufacturing effort would be necessary to further improve the performance of the heat sink. The proposed procedure is verified experimentally.
机译:为了最大化转换器的功率密度,需要一种用于优化冷却系统的系统过程。求解本文中描述的优化过程的等式可以在数量上进行数量而不是很多努力,但是制造所得到的最佳散热器通常非常困难且昂贵,因此是不切实际的。基于优化理论,讨论了散热器的热阻对几何设计参数变化的敏感性。图表显示了如果制造过程将翅片厚度限制为某些值,则显示热阻的预期增加。基于此,可以设计一个次最佳散热器,其为某种制造过程提供最小的热阻。此外,示出了进一步提高散热器性能的必要额外制造工作量。所提出的程序是通过实验验证的。

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