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首页> 外文期刊>International Journal of Heat and Mass Transfer >Lateral edge effects on heat/mass transfer on a finite width surface within a turbulent boundary layer
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Lateral edge effects on heat/mass transfer on a finite width surface within a turbulent boundary layer

机译:横向边缘对湍流边界层内有限宽度表面上的热/质量传递的影响

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摘要

Numerical simulations of the local heat/mass transfer on a finite width surface within a turbulent boundary layer are presented. Different approaches to the RANS modelling of the turbulent heat/mass flux are compared to Large Eddy Simulations (LES). Mass transfer experiments conducted with the naphthalene sublimation technique are used as validation. The isotropic eddy viscosity model, Simple Gradient Diffusion Hypothesis (SGDH), is shown to underestimate the span-wise effects. Its anisotropic extension, Generalized Gradient Diffusion Hypothesis (GGDH), improves the prediction, but still does not account for near-wall contribution in strongly dissimilar velocity and temperature/concentration fields, even in combination with a wall-sensitive second-moment closure model such as the Elliptic Blending Reynolds Stress Model (EB-RSM). A more complete turbulent heat flux model based on the elliptic blending approach, the Elliptic Blending GGDH (EB-GGDH) presents very good agreement with LES and with the experiments, confirming the need for more advanced turbulent heat flux modelling in applications with strong three-dimensional effects. (C) 2019 Elsevier Ltd. All rights reserved.
机译:给出了在湍流边界层内有限宽度表面上局部传热/传质的数值模拟。将RANS湍流热/质量通量建模的不同方法与大型涡模拟(LES)进行了比较。通过萘升华技术进行的传质实验被用作验证。各向同性的涡流粘度模型,简单梯度扩散假说(SGDH),显示出低估了跨向效应。它的各向异性扩展,广义梯度扩散假说(GGDH)改善了预测,但即使与壁敏感的第二矩闭合模型结合使用,仍无法解释在强烈不同的速度和温度/浓度场中的近壁贡献。作为椭圆混合雷诺应力模型(EB-RSM)。基于椭圆混合方法的更完整的湍流热通量模型,椭圆混合GGDH(EB-GGDH)与LES和实验具有很好的一致性,从而证实了在具有较强的三强应用的情况下需要更高级的湍流热通量建模尺寸效果。 (C)2019 Elsevier Ltd.保留所有权利。

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