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Anisotropic Dispersion in Rotating Fluids: a Laboratory Model of Large Scale Flows

机译:旋转流体中的各向异性弥散:大规模流动的实验室模型

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The variation of the Coriolis parameter with the latitude (β effect) strongly affects the turbulent inverse cascade. In fact, when this effect holds, energy is preferentially transferred towards zonal modes. The consequent emergence of flow structures along the zonal direction can strongly impact transport and modify both zonal and meridional scalar diffusion. We performed a detailed analysis of Lagrangian tracers dispersion on rotating flows simulated in laboratory. A relatively wide range of the zonostrophy index, a parameter used to characterize flow regimes in the presence of a β effect, is investigated. The degree of anisotropy and the characteristic scales of the flow have been estimated by means of the zonal and radial components of the Finite Scale Lyapunov Exponents. Moreover, we introduced the Lagrangian Anisotropy Index is in order to describe the onset of anisotropy and to verify the agreement with the theoretical predictions.
机译:科里奥利参数随纬度(β效应)的变化强烈影响湍流逆级联。实际上,当保持这种效果时,能量会优先转移到分区模式。沿地带方向的流动结构的出现会强烈影响运输,并改变地带和子午标量扩散。我们对实验室模拟的旋转流进行了拉格朗日示踪剂扩散的详细分析。研究了在较广范围内的区域营养指数(用于表征存在β效应时流动状态的参数)。各向异性程度和流动的特征尺度已经通过有限尺度李雅普诺夫指数的纬向和径向分量进行了估计。此外,我们引入拉格朗日各向异性指数是为了描述各向异性的发生并验证与理论预测的一致性。

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