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Constructal entransy dissipation rate minimization of a disc

机译:光盘的结构传输损耗最小化

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Disc cooling problem is optimized by taking entransy dissipation rate minimization as optimization objective. The non-dimensional mean temperature difference of the disc cooling model with radial high conducting fins inserted is deduced. The effects of the fin geometry, the fin aspect ratio, the ratio between the high conductivity and low conductivity, the relative amount of high conductivity material and the number of high conducting fins on the entransy dissipation rate of disc cooling are analyzed. The optimization results show that the high conducting fin should be extended to the centre of circle as the heat transfer effect of the high conducting fins is improved, and there exists an optimal fin aspect ratio corresponding to minimum entransy dissipation rate for different high conducting effects of the fin, and the number of high conducting fins has a slight effect on the entransy dissipation rate. Comparison with those for maximum temperature difference minimization shows that the constructs based on entransy dissipation rate minimization are different from those based on maximum temperature difference minimization, but the optimal constructal shape changing potentials of the number of fins and the relative amount of high conductivity material are similar.
机译:通过以最小瞬态耗散率为优化目标来优化盘片冷却问题。推导了插入径向高导热鳍片的圆盘冷却模型的无量纲平均温差。分析了翅片的几何形状,翅片的长宽比,高导电率与低导电率之比,高导电率材料的相对含量以及高导电率翅片的数量对圆盘冷却的随声耗散率的影响。优化结果表明,随着高导热鳍片传热效果的提高,高导热鳍片应延伸到圆心,并且对于不同的高导热鳍片,存在对应于最小穿透耗散率的最佳鳍片长宽比。翅片,高导电翅片的数量对传输耗散率影响很小。与最大温差最小化的比较表明,基于最大耗散率最小化的构造与基于最大温差最小化的构造不同,但是鳍片数量和高导电率材料的相对数量的最佳构造形状改变电势是类似。

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