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Optimal distribution of discrete heat sources on a plate with laminar forced convection

机译:具有层流强迫对流的板上离散热源的最优分布

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In this paper constructal theory is applied to the fundamental problem of how to arrange discrete heat sources on a wall cooled by forced convection. The global objective is to maximize the conductance between the discrete heated wall and the fluid. This is equivalent to minimizing the temperature of the hot spot on the wall, when the heat generation rate is specified. The mechanism by which the global objective is achieved is the generation of flow configuration, in this case the distribution of discrete heat sources. Two different analytical approaches are used: (ⅰ) large number of small heat sources, and (ⅱ) small number of heat sources with finite length, which are mounted on a flat wall. Both analyses show that the heat sources should be placed nonuniformly on the wall, with the smallest distance between them near the tip of the boundary layer. If the Reynolds number is high enough, then the heat sources should be mounted flush against each near the entrance to the channel. The analytical results are validated by a numerical study of discrete heat sources that are distributed nonuniformly inside a channel formed by parallel plates.
机译:在本文中,构造理论被应用于如何在通过强制对流冷却的墙壁上布置离散热源的基本问题。总体目标是使离散的加热壁和流体之间的电导最大化。当指定发热量时,这等效于将壁上热点的温度降至最低。达到总体目标的机制是流动配置的产生,在这种情况下是离散热源的分布。使用两种不同的分析方法:(ⅰ)大量的小型热源,和(ⅱ)数量有限的有限长度的热源,它们安装在平坦的墙上。两种分析均表明,应将热源均匀地放置在墙壁上,并且它们之间的最小距离应靠近边界层的尖端。如果雷诺数足够高,则应将热源与通道入口附近的每个热源齐平安装。通过对离散热源进行数值研究来验证分析结果,这些离散热源在由平行板形成的通道内不均匀分布。

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