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A numerical study of a plane wall jet with heat transfer

机译:平面壁面射流传热的数值研究

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摘要

A direct numerical simulation (DNS) of a wall jet is performed at Re=7500. To the authors’ knowledge, this is the highest Reynolds number DNS study of a wall jet. The heat transfer process is studied with an iso-thermal boundary condition at the wall. The molecular Prandtl number is Pr=0.71. Mean flow and heat transfer parameters are contrasted with available measurements and Nusselt number coefficient correlations. The scaling parameters for heat transfer variables are investigated. The mean temperature ⟨T⟩, temperature root mean square T_rms, streamwise ⟨u′T′⟩ and wall normal 〈v′T′〉 heat flux profiles show collapse in the streamwise direction, with the inner scaling, the outer scaling and the thermal scaling parameters. The complete budgets for temperature variance ⟨T′T′⟩ and turbulent heat fluxes are also presented.
机译:在Re = 7500处执行壁面射流的直接数值模拟(DNS)。据作者所知,这是壁挂式射流的最高雷诺数DNS研究。研究了壁面等温边界条件下的传热过程。分子普朗特数是Pr = 0.71。将平均流量和传热参数与可用的测量值和努塞尔数系数相关性进行对比。研究了传热变量的缩放参数。平均温度⟨T⟩,温度均方根T_rms,流向⟨u'T'⟩和壁法线热通量分布在流向发生塌陷,内部结垢,外部结垢和热缩放参数。还给出了温度变化⟨T'T'⟩和湍流的完整预算。

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