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Effects of elliptical pin-fins on heat transfer characteristics of a single impinging jet on a concave surface

机译:椭圆形翅片对凹面上单个撞击射流传热特性的影响

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The effect of elliptical pin-fins on heat transfer enhancement from a concave surface has been investigated. The experiments have been performed for a single jet impinging on a concave surface under constant heat flux. The elliptical pin-fins with 8.0 mm thickness were placed in a circular arrangement on a concave surface with a constant curvature ratio. In addition, numerical simulations were performed to study the effects of jet diameter and curvature ratio on the flow field and heat transfer in a concave surface with elliptical pin-fins. The numerical results obtained by SST-k-ω turbulence model agree well with the experimental data. The experimental and numerical results of the present study reveal that the elliptical pin-fins can effectively enhance the heat transfer rate from the concave surface. Comparisons of the results confirm that applying the pin-fins are more efficient at higher relative curvature, which corresponds to the concave surfaces with lower diameter. Also for a constant relative curvature, the pin-fins show better performance in higher jet Reynolds numbers. It has been found that the concave surface with pin-fins provides more area-averaged Nusselt number in comparison with the smooth concave surface by 51%, 53% and 59% for the jet Reynolds number of 23,000, 35,000 and 55,000 respectively.
机译:研究了椭圆形翅片对凹面传热的影响。对于在恒定热通量下撞击凹面的单个射流进行了实验。将厚度为8.0 mm的椭圆形针状鳍片以恒定曲率比率以圆形排列放置在凹面上。此外,进行了数值模拟,以研究射流直径和曲率比对带有椭圆形针形鳍的凹面中的流场和传热的影响。 SST-k-ω湍流模型得到的数值结果与实验数据吻合良好。本研究的实验和数值结果表明,椭圆形的翅片可以有效地提高凹面的传热速率。结果的比较证实,在较高的相对曲率下(对应于具有较小直径的凹面),应用针状翅片更为有效。同样对于恒定的相对曲率,针状鳍片在较高的雷诺数下表现出更好的性能。已经发现,对于23,000、35,000和55,000的射流雷诺数,具有针状翅片的凹面与光滑的凹面相比具有更多的面积平均努塞尔数,分别为51%,53%和59%。

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