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Experimental investigation of heat transfer from different pin fin in a rectangular channel

机译:矩形通道中不同翅片传热的实验研究

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In this study, the effect of both hexagonal pin fins (HPFs) and cylindrical pin fins (CPFs) into the rectangular channel on heat transfer augmentation, Nusselt number and friction factor were experimentally investigated. In planning of the experiments, different Reynolds number, pin fin array, pin fin geometry and the ratio of the distance between pin fin spacing (s) to the pin fin hydraulic diameter (s/D-h) were chosen as the design parameters. Air was used as the fluid. The Reynolds number, based on the channel hydraulic diameter of the rectangular channel, was varied from 3188 to 19531. In the experiments, the heating plate was made of stainless steel foil. The foil was electrically heated by means of a high current DC power supply to provide a constantly heated flux surface. The heat transfer results were obtained using the infrared thermal imaging technique. The heat transfer results of the hexagonal pin fins (HPFs) and cylindrical pin fins (CPFs) are compared with those of a smooth plate. Best heat transfer performance was obtained with the hexagonal pin fins. The maximum thermal performance factor ((220;), was obtained as Re = 3188, staggered array, s/D-h = 0, x220; = 2.28.
机译:在这项研究中,实验研究了六角形针状翅片(HPFs)和圆柱形针状翅片(CPFs)进入矩形通道对传热增强,努塞尔数和摩擦系数的影响。在实验计划中,选择了不同的雷诺数,针鳍阵列,针鳍几何形状以及针鳍间距(s)与针鳍液压直径(s / D-h)之比作为设计参数。空气用作流体。根据矩形通道的通道水力直径,雷诺数从3188变为19531。在实验中,加热板由不锈钢箔制成。借助于大电流直流电源对该箔进行电加热,以提供一个不断加热的助焊剂表面。使用红外热成像技术获得传热结果。将六角形针状翅片(HPF)和圆柱形针状翅片(CPF)的传热结果与光滑板的传热结果进行了比较。使用六角形针状散热片可获得最佳的传热性能。获得的最大热性能因数((220;)为Re = 3188,交错阵列,s / D-h = 0,x220; = 2.28。

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