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DNS Of entropy generation rates for turbulent flows subjected to high temperature gradients

机译:对高温梯度进行湍流流动的熵产生速率的DNS

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摘要

Direct Numerical Simulations are performed to analyze the influence of key boundary conditions and flow characteristics on entropy generation rate statistics in a highly anisothermal forced convective turbulent channel flow of a thermo-dependent fluid submitted to asymmetrical heating. Each parameter is varied separately to quantify its influence compared to a reference simulation, the hot to cold wall temperature ratio from 1.5 to 3, the mean friction Reynolds number from 150 to 210, the mean thermodynamic pressure from 1 bar to 3 bar. Two thermal boundary condition types are also compared (fixed temperatures vs. fixed heat flux density at the walls). For each parameter that is varied, the evolution of the entropy generation rate mean, root-mean-square and correlations with the temperature and the streamwise or wall-normal velocity components are presented and discussed. All simulations have in common the thermal asymmetry and the highly non-isothermal nature of the flow: beyond the changes induced by the variation of each parameter, the common characteristics of the statistical quantity profiles are also analyzed. This work establishes how the spatial distribution of the local entropy generation rate is modified by the parameters studied, in which direction and with which sensitivity. It demonstrates the significant influence of the thermal boundary condition type on the entropy generation rate fluctuations near the walls.
机译:进行直接数值模拟以分析关键边界条件和流动特性对熵产生率统计的影响,其在提交到不对称加热的热依赖性流体的高度上热型强制对流湍流通道流中。与参考仿真相比,每个参数分别变化,使其影响与1.5〜3的冷壁温度比相比,从150至210的平均摩擦雷诺数,从1巴到3巴的平均热力学压力。还比较了两种热边界条件类型(固定温度与墙壁上的固定热通量密度)。对于变化的每个参数,提出并讨论了熵产生率的演变,根本平方和与温度和流动或壁正常速度分量的相关性。所有仿真都具有常见的热不对称和流量的高度非等温性质:超越每个参数变化引起的变化,还分析了统计量谱的常见特性。这项工作建立了所研究的参数改变局部熵产生率的空间分布,其中方向和灵敏度。它展示了热边界条件类型对墙壁附近的熵产生速率波动的显着影响。

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