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An analytical stretching function that combines the best attributes of geopotential and terrain-following vertical coordinates

机译:一种分析性拉伸功能,结合了地势和地形跟随垂直坐标的最佳属性

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摘要

This work provides a function for discretising the vertical coordinate in ocean models that is designed to allow the user to define a fixed surface resolution, as one can in geopotential coordinate models, whilst retaining the benefits of terrain-following coordinates. This formulation has been termed the γ stretching function and provides an analytical solution that, in contrast with hybrid schemes, allows gradual coordinate changes in the vertical and horizontal. The early part of the paper describes the theoretical framework in which this can be done. Following this a series of steps that are required to effectively implement the coordinate have been described, and a full description of the implementation for a shelf model, the Forecasting Ocean Assimilation Model (FOAM) Atlantic Margin Model (AMM7), is given.This implementation is then used to quantify the impact of the γ stretching compared with the current stretching scheme. This shows the new stretching to have improved slope and hydrostatic consistency parameters. As would therefore be expected the γ stretching is shown to give rise to reduced horizontal pressure gradient errors in an idealised seamount test case. The benefits of a constant and shallow box for air-sea exchange are demonstrated, with the γ stretching giving enhanced diurnal ranges, increased sea surface temperatures and shallower mixed layer depths where the FOAM AMM7 is presently unable to well represent these properties.
机译:这项工作提供了一种在海洋模型中离散化垂直坐标的功能,该功能旨在允许用户定义固定的表面分辨率,就像在势能坐标模型中一样,同时保留了地形跟随坐标的优点。该公式已被称为γ拉伸函数,并提供了一种解析解决方案,与混合方案相比,它允许在垂直和水平方向上逐渐进行坐标更改。本文的前半部分描述了可以做到这一点的理论框架。在此之后,描述了有效实施坐标所需的一系列步骤,并给出了对货架模型的实施的完整描述,即预测海洋同化模型(FOAM)大西洋边际模型(AMM7)。与当前的拉伸方案相比,可使用“α”量化γ拉伸的影响。这表明新的拉伸方法具有改善的坡度和静水力一致性参数。因此,可以预期,在理想的海山试验情况下,γ拉伸显示出减小的水平压力梯度误差。证明了恒定且浅的盒子用于海气交换的好处,其中γ拉伸可以扩大日范围,增加海面温度,并且混合层深度较浅,而FOAM AMM7目前无法很好地体现这些特性。

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