湍流
物理
能量级联
机械
能量通量
级联
膨胀的
流量(数学)
焊剂(冶金)
能量(信号处理)
能量转移
自由面
经典力学
湍流动能
曲面(拓扑)
同种类的
Kε湍流模型
分歧(语言学)
工作(物理)
混合(物理)
流速
能量流
磁流体动力学湍流
作者
Guotao Wu,Yaxing Li,Filippo Coletti
标识
DOI:10.1017/jfm.2025.11071
摘要
The energy of fluid turbulence is transported, on average, to smaller and larger scales in three-dimensional and two-dimensional flows, respectively. The motion along the flat free surface of a turbulent liquid shares similarities with both classes of flows, therefore the direction of the energy cascade along it is ambiguous. We show experimentally that the process is linked to the local divergence of the surface velocity field: expansive motions, associated with flow upwelling towards the surface, transfer energy to larger scales, while compressive motions, associated with fluid plunging into the bulk, do the opposite. The net inter-scale energy flux is therefore vanishingly small, in stark contrast with homogeneous turbulence in both two- and three-dimensional systems. Moreover, we find that rare and intense compressive/expansive events are chiefly responsible for the instantaneous inter-scale fluxes, which are much stronger than their counterparts at depth.
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