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A Reynolds-averaged turbulence modelling approach to the maintenance of the Venus superrotation

机译:雷诺平均湍流建模方法用于维纳斯超旋转的维持

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摘要

A maintenance mechanism of an approximately linear velocity profile of the Venus zonal flow or superrotation is explored, with the aid of a Reynolds-averaged turbulence modelling approach. The basic framework is similar to that of Gierasch (Meridional circulation and maintenance of the Venus atmospheric rotation. J. Atmos. Sci. 1975, 32, 1038–1044) in the sense that the mechanism is examined under a given meridional circulation. The profile mimicking the observations of the flow is initially assumed, and its maintenance mechanism in the presence of turbulence effects is investigated from a viewpoint of the suppression of energy cascade. In the present work, the turbulent viscosity is regarded as an indicator of the intensity of the cascade. A novelty of this formalism is the use of the isotropic turbulent viscosity based on a non-local time scale linked to a large-scale flow structure. The mechanism is first discussed qualitatively. On the basis of these discussions, the two-dimensional numerical simulation of the proposed model is performed, with an initially assumed superrotation, and the fast zonal flow is shown to be maintained, compared with the turbulent viscosity lacking the non-local time scale. The relationship of the present model with the current general circulation model simulation is discussed in light of a crucial role of the vertical viscosity.
机译:借助雷诺平均湍流建模方法,研究了维纳斯带状流或超旋转的近似线性速度分布的维持机制。基本框架类似于Gierasch(子午环流和维纳斯大气旋转的维持。J。Atmos。Sci。1975,32,1038–1044),在某种意义上,该机制是在给定子午环流下进行检查的。最初假定模拟流观察的轮廓,并从抑制能量级联的角度研究了在存在湍流效应的情况下其维持机制。在目前的工作中,湍流粘度被认为是级联强度的指标。这种形式主义的新颖之处在于,基于与大规模流动结构相关的非局部时间尺度,使用了各向同性湍流粘度。首先定性讨论该机制。在这些讨论的基础上,与缺少非局部时标的湍流粘度相比,在初始假定为超旋转的情况下,对提出的模型进行了二维数值模拟,并显示了快速的局部流。鉴于垂直粘度的关键作用,讨论了本模型与当前一般循环模型模拟之间的关系。

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