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首页> 外文期刊>Flow, Turbulence and Combustion >Comparative Study of DNS, LES and Hybrid LES/RANS of Turbulent Boundary Layer with Heat Transfer Over 2d Hill
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Comparative Study of DNS, LES and Hybrid LES/RANS of Turbulent Boundary Layer with Heat Transfer Over 2d Hill

机译:2d Hill传热的湍流边界层DNS,LES和混合LES / RANS的比较研究

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摘要

This paper first presents the turbulent heat transfer phenomenon of the boundary layer over a 2-dimensional hill using the direct numerical simulation (DNS). DNS results reveal turbulent heat transfer phenomena in the boundary layer over a 2-dimensional hill affected by the flow acceleration and the concave wall at the foreface of a hill, the convex wall at the top of the hill, and the flow deceleration, separation, and reattachment and the concave wall at the back of the hill. The prediction of turbulent heat transfer, the turbulence models of LES and HLR should be assessed in such heat transfer because these models have seldom been evaluated in the complex turbulent heat transfer. Therefore, this paper also presents evaluations of predictions of LES and HLR in the complicated turbulent heat transfer which is the boundary layer with heat transfer over a 2-dimensional hill. Consequently, this paper obviously shows the detailed turbulent heat transfer phenomena of a boundary layer over a 2-dimensional hill via DNS, and the evaluation results of prediction accuracy of LES and HLR for the heat transfer. LES and HLR give good prediction in comparison with DNS results, but the predicted reattachment and separation points are slightly different from DNS.
机译:本文首先使用直接数值模拟(DNS)提出了二维丘陵上边界层的湍流传热现象。 DNS结果揭示了二维山丘边界层中的湍流传热现象,该现象受流动加速度和山丘前表面的凹壁,山丘顶部的凸壁以及流量的减速度,分离,和重新连接以及山后的凹墙。湍流传热的预测,LES和HLR的湍流模型应在这种传热中进行评估,因为这些模型很少在复杂的湍流传热中进行评估。因此,本文还提出了复杂湍流传热中LES和HLR的预测评估,该湍流是二维丘陵上传热的边界层。因此,本文显然通过DNS详细显示了二维丘陵上边界层的湍流传热现象,以及LES和HLR预测传热精度的评估结果。与DNS结果相比,LES和HLR提供了良好的预测,但是预测的重新连接和分离点与DNS略有不同。

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