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(z)over-tilde-Coordinate, an Arbitrary Lagrangian-Eulerian coordinate separating high and low frequency motions

机译:(z)纵坐标,任意拉格朗日-欧拉坐标,将高频运​​动和低频运动分开

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摘要

A new geopotential based vertical coordinate, named (z) over bar, is presented, that treats external motions as a z*-coordinate, internal low frequency motions in a Eulerian way and high frequency ones in a Lagrangian way. To that purpose, a prognostic equation or the low frequency horizontal flux divergence is added in the system in order to discriminate betwem low and high frequency parts of vertical motions. This coordinate keeps the intrinsic advantages of the z-coordinate while enabling a drastic reduction of the spurious diapycnal mixing induced by vertical and lateral schemes truncation errors associated with high frequency motions in level models. An idealised experiment illustrates this property in an internal wave propagation framework. The reduction of Eulerian vertical velocities enables a proportional reduction of the associated advection schemes truncation errors. Following high frequency motions, the (z) over bar -coordinate lets lateral schemes operate along tracer anomalies created by those motions.
机译:提出了一种新的基于地势的垂直坐标,称为竖线(z),该坐标将外部运动视为z *坐标,以欧拉方式将内部低频运动视为拉格朗日方式,将内部低频运动视为拉格朗日方式。为此,在系统中添加了一个预测方程或低频水平通量散度,以区分垂直运动的低频和高频部分。该坐标保持了z坐标的固有优势,同时可以大大降低由垂直和横向方案截断误差所引起的寄生斜向混合,这些截断误差与水平模型中的高频运动相关。理想的实验在内部波传播框架中说明了此属性。欧拉垂直速度的减小使得相关对流方案的截断误差成比例地减小。跟随高频率运动,横坐标上的(z)可使横向方案沿由这些运动产生的示踪异常进行操作。

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