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Flow splitting at the bifurcation between two valleys: idealized simulations in comparison with Mesoscale Alpine Programme observations

机译:在两个谷之间的分叉处进行分流:与中尺度高山计划观测值相比的理想模拟

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摘要

This paper investigates the characteristics of channelled airflow in the vicinity of a junction of three idealized valleys (one valley carrying the incoming flow and two tributaries carrying the outflow), using a two-dimensional single-layer shallow water model. Particular attention is given to the flow splitting occurring at the junction. Nondimensionalized, the model depends on the valley geometry, the Reynolds number, which is related to the eddy viscosity, and on the difference of the hydrostatic pressure imposed at the exit of the tributaries. At the spatial scale considered in this study, the Rossby number relating the inertial and Coriolis forces is always larger than 1, implying that the effect of earth rotation can be neglected to a first approximation.
机译:本文使用二维单层浅水模型研究了三个理想化山谷(一个山谷携带来水和两个支流携带出水)的交界处的通道气流特征。特别注意在连接处发生的分流。模型无量纲,取决于波谷的几何形状,与涡流粘度有关的雷诺数,以及施加在支流出口处的静水压力的差。在这项研究中考虑的空间尺度上,与惯性力和科里奥利力有关的Rossby数始终大于1,这意味着可以将地球旋转的影响忽略不计。

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  • 来源
    《Meteorology and Atmospheric Physics》 |2006年第4期|285-306|共22页
  • 作者单位

    Institut Pierre Simon Laplace/Service d’Aéronomie;

    Institut Pierre Simon Laplace/Service d’Aéronomie;

    Institut de Mécanique des Fluides de Strasbourg;

    Meteorologisches Institut der Universität München;

    Institut Pierre Simon Laplace/Laboratoire de Météorologie Dynamique;

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