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首页> 外文期刊>Tellus, Series A. Dynamic meteorology & oceanography >A non-hydrostatic global spectral dynamical core using a height-based vertical coordinate
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A non-hydrostatic global spectral dynamical core using a height-based vertical coordinate

机译:使用基于高度的垂直坐标的非静液压全局谱动力学核

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摘要

Most of the dynamical cores of operational global models can be broadly classified according to the spatial discretisation into two categories: spectral models with mass-based vertical coordinate and grid point models with height-based vertical coordinate. This article describes a new non-hydrostatic dynamical core for a global model that uses the spectral transform method for the horizontal directions and a height-based vertical coordinate. Velocity is expressed in the contravariant basis (instead of the geographical orthonormal basis pointing to the East, North and Zenith directions) so that the expressions of the boundary conditions and the divergence of the velocity are simpler. Prognostic variables in our model are the contravariant components of the velocity, the logarithm of pressure and the logarithm of temperature. Covariant tensor analysis is used to derive the differential operators of the prognostic equations, such as the curl, gradient, divergence and covariant derivative of the contravariant velocity. A Lorenz type grid is used in the vertical direction, with the vertical contravariant velocity staggered with respect to the other prognostic variables. High-order vertical operators are constructed following the finite difference technique. Time stepping is semi-implicit because it allows for long time steps that compensates the cost of the spectral transformations. A set of experiments reported in the literature is implemented so as to confirm the accuracy and efficiency of the new dynamical core.
机译:根据空间离散化,可以将操作全局模型的大多数动力学核心大致分为两类:具有基于质量的垂直坐标的光谱模型和具有基于高度的垂直坐标的网格点模型。本文介绍了一种用于全局模型的新的非静液压动力核心,该核心使用了水平方向和基于高度的垂直坐标的光谱变换方法。速度以相反的基础(而不是指向东,北和天顶方向的地理正交基础)表示,因此边界条件和速度散度的表达式更简单。我们模型中的预后变量是速度,压力的对数和温度的对数的对数分量。协变张量分析用于推导预后方程的微分算子,例如反协速度的卷曲,梯度,发散和协变导数。在垂直方向上使用Lorenz类型的网格,相对于其他预后变量,垂直逆时差速度错开。高阶垂直算子是根据有限差分技术构造的。时间步长是半隐式的,因为它允许较长的时间步长,从而补偿了频谱转换的成本。实施文献中报道的一组实验,以确认新动力核心的准确性和效率。

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