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Optimal tip clearance in the laminar forced convection heat transfer of a finned plate in a square duct

机译:方管中翅片的层流强迫对流传热中的最佳尖端间隙

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摘要

A joint experimental and numerical investigation of laminar forced convection heat transfer of a finned plate in a square duct is reported. The heat transfer rates were measured for fixed fin heights, fin thicknesses, and base-plate geometries, with systematically varied fin spacing, tip clearance, Prandtl number and Reynolds number. The optimal tip clearances were identified, which maximized the total heat transfer. The total heat transfer rate at the optimal tip clearance was maximum 33% higher than that at the largest tip clearance. It decreased as the Prandtl number increased and as the Reynolds number increased. The dependence of the heat transfer rate on the tip clearance weakened as the fin spacing increased.
机译:报道了翅片在方管中的层流强迫对流换热的联合实验和数值研究。测量了固定翅片高度,翅片厚度和底板几何形状的传​​热速率,并系统地改变了翅片间距,尖端间隙,普朗特数和雷诺数。确定了最佳的尖端间隙,从而最大化了总传热。最佳尖端间隙处的总传热率比最大尖端间隙处的总传热率高33%。随着Prandtl数增加和Reynolds数增加,它减少。随着翅片间距的增加,传热速率对尖端间隙的依赖性减弱。

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