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A DNS study on the effects of convex streamwise curvature on coherent structures in a temporally-developing turbulent boundary layer with supercritical water

机译:对超临界水随时间发展的湍流边界层中凸流向曲率对相干结构影响的DNS研究

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摘要

Direct numerical simulation (DNS) results are used to establish the effect of convex streamwise curvature on the development of turbulent boundary layers, and the effect of such curvature on the forced-convection heat transfer variations observed at certain supercritical thermodynamic states. The results illustrate the stabilizing effects of this flow geometry through modification of the structure and distribution of hairpin-like vortical flow structures in the boundary layer. Furthermore, enhancement of convective heat transfer realized at a particular heat flux-to-mass flux ratio with the working fluid at a supercritical state is observed to be reduced by the stabilizing effect of convex surface curvature.
机译:直接数值模拟(DNS)结果用于建立凸流向弯曲对湍流边界层发展的影响,以及这种弯曲对在某些超临界热力学状态下观察到的强制对流传热变化的影响。结果表明,通过改变边界层中发夹状涡流结构的结构和分布,可以稳定这种流动几何形状。此外,观察到通过凸表面曲率的稳定作用,在工作流体处于超临界状态下以特定的热通量与质量通量比实现的对流换热的增强被减小。

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