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Effects of radiation in turbulent channel flow: analysis of coupled direct numerical simulations

机译:辐射在湍流通道中的影响:耦合直接数值模拟的分析

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摘要

The role of radiative energy transfer in turbulent boundary layers is carefully analysed, focusing on the effect on temperature fluctuations and turbulent heat flux. The study is based on direct numerical simulations (DNS) of channel flows with hot and cold walls coupled to a Monte-Carlo method to compute the field of radiative power. In the conditions studied, the structure of the boundary layers is strongly modified by radiation. Temperature fluctuations and turbulent heat flux are reduced, and new radiative terms appear in their respective balance equations. It is shown that they counteract turbulence production terms. These effects are analysed under different conditions of Reynolds number and wall temperature. It is shown that collapsing of wall-scaled profiles is not efficient when radiation is considered. This drawback is corrected by the introduction of a radiation-based scaling. Finally, the significant impact of radiation on turbulent heat transfer is studied in terms of the turbulent Prandtl number. A model for this quantity, based on the new proposed scaling, is developed and validated.
机译:仔细分析了辐射能在湍流边界层中的转移,重点是对温度波动和湍流热通量的影响。这项研究基于带有冷壁和冷壁的通道流的直接数值模拟(DNS),并结合了蒙特卡洛方法来计算辐射功率场。在研究的条件下,边界层的结构被辐射强烈地改变。温度波动和湍流热通量减少了,新的辐射项出现在它们各自的平衡方程中。结果表明,它们抵消了湍流产生条件。在不同的雷诺数和壁温条件下分析了这些影响。结果表明,当考虑辐射时,壁尺度轮廓的塌陷是无效的。通过引入基于辐射的缩放比例可以纠正此缺陷。最后,根据湍流普朗特数研究了辐射对湍流传热的显着影响。基于新提议的缩放比例,开发并验证了该数量的模型。

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