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Large-scale velocity structures in turbulent thermal convection - art. no. 036304

机译:湍流热对流中的大规模速度结构-艺术没有。 036304

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摘要

A systematic study of large-scale velocity structures in turbulent thermal convection is carried out in three different aspect-ratio cells filled with water. Laser Doppler velocimetry is used to measure the velocity profiles and statistics over varying Rayleigh numbers Ra and at various spatial positions across the whole convection cell. Large velocity fluctuations are found both in the central region and near the cell boundary. Despite the large velocity fluctuations, the flow field still maintains a large-scale quasi-two-dimensional structure, which rotates in a coherent manner. This coherent single-roll structure scales with Ra and can be divided into three regions in the rotation plane: (1) a thin viscous boundary layer, (2) a fully mixed central core region with a constant mean velocity gradient, and (3) an inter-mediate plume-dominated buffer region. The experiment reveals a unique driving mechanism for the large-scale coherent rotation in turbulent convection. [References: 40]
机译:在充满水的三个不同长宽比单元中,对湍流热对流中的大规模速度结构进行了系统研究。激光多普勒测速仪用于测量整个对流晶胞中不同瑞利数Ra以及不同空间位置的速度分布和统计数据。在中心区域和细胞边界附近都发现较大的速度波动。尽管存在较大的速度波动,但流场仍保持大规模的准二维结构,并以连贯的方式旋转。这种连贯的单辊结构与Ra成比例,可以在旋转平面上分为三个区域:(1)薄的粘性边界层;(2)具有恒定平均速度梯度的完全混合的中心核心区域;以及(3)一个中间羽流为主的缓冲区。实验揭示了湍流对流中大规模相干旋转的独特驱动机制。 [参考:40]

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