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An experimental and numerical investigation into the heat transfer of naturally convecting fin arrays within enclosures

机译:对箱内自然对流散热片阵列传热的实验和数值研究

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Computational fluid dynamics is used to predict the fluid flow around three geometrically similar naturally convecting fin arrays, suspended in turn within an enclosure. The numerical predictions of the velocity and temperature profiles, at the upper and lower opening of a fin passage, are then compared to previously obtained measurements. The non-dimensional profiles for both the numerical and experimental results compare well for the three fins, although there are some discrepancies between the predicted and measured dimensioned velocities. The profiles are discussed with a view to determining the effect of approximated boundary conditions on the accuracy of computational predictions of natural convection within an enclosure. Smoke flow visualization is used to illustrate the salient features of the air flow within the enclosure and to give a qualitative comparison with the numerical predictions. The combination of measurements, predictions and smoke visualisation affords considerable insight into the interaction between the fin array and enclosure. A comparison between the predicted and measured relationship between the Nusselt and modified Rayleigh number is made.
机译:计算流体动力学用于预测围绕三个几何相似的自然对流散热片阵列周围的流体流动,这些散热片阵列依次悬挂在外壳内。然后将在翅片通道的上部和下部开口处的速度和温度分布的数值预测与先前获得的测量值进行比较。尽管在预测速度和测量速度之间存在一些差异,但数值和实验结果的无量纲曲线对这三个散热片的比较都很好。为了确定近似边界条件对机壳内自然对流计算预测的准确性的影响,对这些轮廓进行了讨论。烟气流动可视化用于说明外壳内气流的显着特征,并与数值预测进行定性比较。测量,预测和烟雾可视化的结合,为散热片阵列与外壳之间的相互作用提供了可观的洞察力。比较了Nusselt与修改后的瑞利数之间的预测关系和实测关系。

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