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受限瑞利-贝纳德对流、旋转瑞利-贝纳德对流和双扩散对流:通过相干结构操纵增强湍流输运的统一观点。

Confined Rayleigh-Bénard, Rotating Rayleigh-Bénard, and Double Diffusive Convection: A Unifying View on Turbulent Transport Enhancement through Coherent Structure Manipulation.

作者信息

Chong Kai Leong, Yang Yantao, Huang Shi-Di, Zhong Jin-Qiang, Stevens Richard J A M, Verzicco Roberto, Lohse Detlef, Xia Ke-Qing

机构信息

Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong, China.

Physics of Fluids Group and Max Planck Center Twente, MESA+Institute, J. M. Burgers Centre for Fluid Dynamics, University of Twente, 7500 AE Enschede, Netherlands.

出版信息

Phys Rev Lett. 2017 Aug 11;119(6):064501. doi: 10.1103/PhysRevLett.119.064501. Epub 2017 Aug 7.

Abstract

Many natural and engineering systems are simultaneously subjected to a driving force and a stabilizing force. The interplay between the two forces, especially for highly nonlinear systems such as fluid flow, often results in surprising features. Here we reveal such features in three different types of Rayleigh-Bénard (RB) convection, i.e., buoyancy-driven flow with the fluid density being affected by a scalar field. In the three cases different stabilizing forces are considered, namely (i) horizontal confinement, (ii) rotation around a vertical axis, and (iii) a second stabilizing scalar field. Despite the very different nature of the stabilizing forces and the corresponding equations of motion, at moderate strength we counterintuitively but consistently observe an enhancement in the flux, even though the flow motion is weaker than the original RB flow. The flux enhancement occurs in an intermediate regime in which the stabilizing force is strong enough to alter the flow structures in the bulk to a more organized morphology, yet not too strong to severely suppress the flow motions. Near the optimal transport enhancements all three systems exhibit a transition from a state in which the thermal boundary layer (BL) is nested inside the momentum BL to the one with the thermal BL being thicker than the momentum BL. The observed optimal transport enhancement is explained through an optimal coupling between the suction of hot or fresh fluid and the corresponding scalar fluctuations.

摘要

许多自然和工程系统同时受到驱动力和稳定力的作用。这两种力之间的相互作用,尤其是对于诸如流体流动等高度非线性系统,常常会产生令人惊讶的特征。在此,我们在三种不同类型的瑞利 - 贝纳德(RB)对流中揭示了这些特征,即浮力驱动的流动,其中流体密度受标量场影响。在这三种情况下,考虑了不同的稳定力,即(i)水平限制,(ii)绕垂直轴旋转,以及(iii)第二个稳定标量场。尽管稳定力的性质以及相应的运动方程差异很大,但在中等强度下,我们反直觉但一致地观察到通量增强,即使流动运动比原始RB流动弱。通量增强发生在一个中间区域,在该区域中稳定力足够强,能将主体中的流动结构改变为更有序的形态,但又不至于强到严重抑制流动运动。在接近最优输运增强时,所有这三个系统都表现出从热边界层(BL)嵌套在动量BL内部的状态到热BL比动量BL更厚的状态的转变。通过热流体或新鲜流体的吸入与相应标量波动之间的最优耦合来解释所观察到的最优输运增强。

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