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首页> 外文期刊>Journal of Fluid Mechanics >On axisymmetric rotating gravity currents: two-layer shallow-water and numerical solutions
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On axisymmetric rotating gravity currents: two-layer shallow-water and numerical solutions

机译:关于轴对称旋转重力流:两层浅水层和数值解

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摘要

Axisymmetric gravity currents released from behind a lock over a solid horizontal bottom in a system rotating about a vertical axis are investigated. The major parameters are e, the ratio of Coriolis to inertia forces, and H, the ratio of the total height of the ambient fluid into which propagation occurs to the initial height of the dense fluid inside the lock. We focus attention on the small e, almost inviscid case in which a significant radius of propagation is obtained. A two-layer shallow-water inviscid approximation is developed and it is shown that the angular velocities in the upper and lower layers are coupled by simple relationships which can be used to simplify both the time-dependent and the steady-state lens solutions. However, the major features predicted by the two-layer model differ only slightly from these obtained with a one-layer model. Finite-difference solutions of the full Navier-Stokes equations are also presented and compared with the shallow-water approximations. [References: 21]
机译:研究了在绕垂直轴旋转的系统中,从固体水平底部上的锁后面释放的轴对称重力流。主要参数是e(科里奥利力与惯性力的比)和H(发生传播的环境流体的总高度)与锁内致密流体的初始高度的比值。我们将注意力集中在小e几乎不可见的情况下,其中获得了很大的传播半径。建立了两层浅水无粘性近似,结果表明,上层和下层的角速度通过简单的关系耦合,可用于简化时变和稳态透镜解决方案。但是,两层模型预测的主要特征与单层模型获得的特征仅稍有不同。还提出了完整的Navier-Stokes方程的有限差分解,并将其与浅水近似值进行了比较。 [参考:21]

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