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Thermal boundary layers in turbulent Rayleigh-Bénard convection at aspect ratios between 1 and 9

机译:瑞利-贝纳德湍流对流的热边界层,纵横比在1到9之间

摘要

We report highly resolved temperature measurements in turbulent Rayleigh–Bénard convection in air at a fixed Prandtl number Pr = 0.7. Extending our previous work (du Puits et al 2007 J. Fluid Mech. 572 231–54), we carried out measurements at various aspect ratios while keeping the Rayleigh number constant. We demonstrate that the temperature field inside the convective boundary layers of both horizontal plates is virtually independent on the global flow pattern accompanying the variation in the aspect ratio. Thanks to technical upgrades of the experimental facility as well as a significant improvement of the accuracy and reliability of our temperature measurement — and unlike in our previous work — we find that the measured profiles of the time-averaged temperature field neither follow a clear power-law trend nor fit a linear or a logarithmic scaling over a significant fraction of the boundary-layer thickness. Analyzing the temperature data simultaneously acquired at both horizontal plates, various transitions in the cross-correlation and the auto-correlation function of the temperature signals are observed while varying the aspect ratio Γ. These transitions might be associated with a change in the global flow pattern from a single-roll mode at Γ = 1 toward a double- or a multi-roll mode pattern at higher aspect ratios.
机译:我们报告了在固定的Prandtl数Pr = 0.7的空气中湍流瑞利-贝纳德对流中的高度解析温度测量结果。在扩展我们先前的工作(du Puits等人,2007 J. Fluid Mech。572 231-54)时,我们在保持瑞利数恒定的同时,以各种纵横比进行了测量。我们证明,两个水平板的对流边界层内部的温度场实际上与伴随长宽比变化的整体流动模式无关。由于实验设备的技术升级以及温度测量准确性和可靠性的显着提高-与我们之前的工作不同-我们发现,时间平均温度场的测量曲线均未遵循明显的功率-趋势趋势或边界层厚度的很大一部分都不适合线性或对数比例。分析在两个水平板上同时获取的温度数据,在改变纵横比Γ的同时,观察到温度信号的互相关和自相关函数的各种转变。这些转变可能与全局流动模式从Γ= 1的单卷模式向高纵横比的双卷或多卷模式变化相关。

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