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The flow generated in a continuously stratified rotating fluid by the differential rotation of a plane horizontal disc

机译:平面水平圆盘的差速旋转在连续分层的旋转流体中产生的流动

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摘要

Results are presented from a modelling investigation into the response of a rotating, linearly stratified fluid to local forcing induced by a differentially rotating smooth, horizontal disc. Attention was directed at cases in which the disc forcing is relatively strong, with Rossby number ε = ω/2Ω of order 1 or greater; here ω and Ω are the disc and background rotation frequencies, respectively. The principal flow dynamics resulting in the mixing and deformation of the initially stable density distribution were identified as (i) shear-induced mixing due to the local increase in fluid vorticity above the disc and (ii) meridional circulations produced by Ekman processes and the constraint of the container sidewall. Laboratory experiments revealed the growth of a mixed layer adjacent to the disc and the subsequent development of layers within the mixed region. Furthermore, the experiments showed that, even at relatively large ε, Ekman processes associated with background rotation constituted the dominant mechanism controlling development and evolution of the primary interface between mixed and unmixed fluid regions. Theoretical, energy-based scalings are derived to describe the growth rate of the interfacial region for εgsimScript O(1) which are consistent with the ε → ∞ limit corresponding to the Ω = 0 case. These scalings are shown to describe well the development of the density field within the forced flow.
机译:建模研究的结果显示了旋转的线性分层流体对差异旋转的光滑水平圆盘引起的局部强迫的响应。注意力集中在圆盘推力相对较强的情况下,罗斯比数ε=ω/2Ω等于或大于1。此处的ω和Ω分别是光盘的旋转频率和背景旋转频率。导致最初稳定的密度分布混合和变形的主要流动动力学被确定为(i)由于盘上方流体涡度的局部增加和(ii)由Ekman过程产生的子午环流和约束引起的剪切诱导混合容器侧壁的角度。实验室实验表明,邻近椎间盘的混合层的生长以及混合区域内各层的后续发展。此外,实验表明,即使在ε相对较大的情况下,与背景旋转相关的Ekman过程仍是控制混合流体区域和未混合流体区域之间主要界面发展和演变的主要机制。得出基于能量的理论标度,以描述εgsimScriptO(1)的界面区域的增长率,该增长率与Ω= 0情况对应的ε→∞极限一致。这些标度显示出很好地描述了强制流内密度场的发展。

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