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Minimization of entropy generation by asymmetric convective cooling

机译:通过非对称对流冷却使熵产生最小化

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The uniform internal heating of a solid slab and the viscous flow between two parallel walls, are used to illustrate the possibility of minimizing the global entropy generation rate by cooling the external surfaces convectively in an asymmetric way. The known analytic expressions for the temperature field, in the first case, and the velocity and temperature fields, in the second case, are used to calculate the global entropy generation rate explicitly. In dimen-sionless terms, this function depends on the dimensionless ambient temperature and convective heat transfer coefficients (Biot numbers) of each surface which, in general, are not assumed to be the same. When the Biot numbers for each surface are equal, the entropy generation rate shows a monotonic increase. However, when the Biot numbers are different this function displays a minimum for specific cooling conditions.
机译:实心平板的内部均匀加热和两个平行壁之间的粘性流动用于说明通过以非对称方式对流冷却外表面来最小化整体熵产生率的可能性。在第一种情况下,温度场的已知解析表达式,在第二种情况下,速度场和温度场的已知解析表达式用于显式计算全局熵产生率。用无量纲的术语来说,此函数取决于每个表面的无量纲环境温度和对流传热系数(比奥特数),通常认为它们不相同。当每个表面的毕奥特数相等时,熵产生率显示单调增加。但是,当毕奥数不同时,此功能将显示特定冷却条件的最小值。

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