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Optimum Fins Spacing and Thickness of a Finned Heat Exchanger Plate

机译:翅片式换热器板的最佳翅片间距和厚度

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摘要

The thermal design of a counter/low heat exchanger using air as the working fluid was performed with two distinct goals: minimum inlet temperature difference and minimum number of entropy generation units. The heat exchanger was constituted by a double-finned conductive plate closed by adiabatic walls at the fin tips on both sides. The hot and cold air flows were considered in the turbulent regime, driven by a constant pressure head. The thermal load was constant, and an optimization was performed to obtain the optimum fin spacing and thickness, according to the two design criteria. A computer program was employed to evaluate the optimum conditions based on correlations from the literature. The results obtained from both design criteria were compared to each other. A scale analysis was performed considering the first design goal and the corresponding dimensionless parameters were compared with the results from the correlations.
机译:使用空气作为工作流体的反/低热交换器的热设计具有两个不同的目标:最小入口温度差和最小熵产生单元数。热交换器由双翅片导电板构成,该板由两侧翅片尖端处的绝热壁封闭。在恒定压力头的驱动下,在湍流状态下考虑了冷热气流。热负荷是恒定的,并且根据两个设计标准进行了优化以获得最佳的散热片间距和厚度。基于文献的相关性,使用计算机程序来评估最佳条件。从两个设计标准获得的结果相互比较。考虑到第一个设计目标进行了规模分析,并将相应的无量纲参数与相关结果进行了比较。

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