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Velocity and acceleration statistics in rapidly rotating Rayleigh–Bénard convection

机译:快速旋转的瑞利-贝纳德对流中的速度和加速度统计

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摘要

Background rotation causes different flow structures and heat transfer efficiencies in Rayleigh–Bénard convection (RBC). Three main regimes are known: rotation-unaffected, rotation-affected and rotation-dominated. It has been shown that the transition between rotation-unaffected and rotation-affected regimes is driven by the boundary layers. However, the physics behind the transition between rotation-affected and rotation-dominated regimes are still unresolved. In this study, we employ the experimentally obtained Lagrangian velocity and acceleration statistics of neutrally buoyant immersed particles to study the rotation-affected and rotation-dominated regimes and the transition between them. We have found that the transition to the rotation-dominated regime coincides with three phenomena; suppressed vertical motions, strong penetration of vortical plumes deep into the bulk and reduced interaction of vortical plumes with their surroundings. The first two phenomena are used as confirmations for the available hypotheses on the transition to the rotation-dominated regime while the last phenomenon is a new argument to describe the regime transition. These findings allow us to better understand the rotation-dominated regime and the transition to this regime.
机译:背景旋转在瑞利-贝纳德对流(RBC)中导致不同的流动结构和传热效率。已知三种主要机制:不受旋转影响,受旋转影响和受旋转控制。已经表明,不受旋转影响和受旋转影响之间的过渡是由边界层驱动的。但是,旋转影响机制和旋转控制机制之间的过渡背后的物理学仍未解决。在这项研究中,我们利用实验获得的中性浮力沉浸颗粒的拉格朗日速度和加速度统计数据来研究受旋转影响和受旋转支配的状态以及它们之间的过渡。我们发现过渡到以旋转为主导的体制与三个现象相吻合。抑制了垂直运动,使旋涡羽强烈渗透到整个主体中,并减少了旋羽羽与周围环境的相互作用。前两个现象被用作对过渡到以旋转为主的政权的可用假设的证实,而最后一个现象是描述政权过渡的新论据。这些发现使我们能够更好地理解以轮换为主的政权和向该政权的过渡。

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