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CAM-SE: A scalable spectral element dynamical core for the Community Atmosphere Model

机译:CAM-SE:社区大气模型的可扩展频谱元素动态核心

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摘要

The Community Atmosphere Model (CAM) version 5 includes a spectral element dynamical core option from NCAR's High-Order Method Modeling Environment. It is a continuous Galerkin spectral finite-element method designed for fully unstructured quadrilateral meshes. The current configurations in CAM are based on the cubed-sphere grid. The main motivation for including a spectral element dynamical core is to improve the scalability of CAM by allowing quasi-uniform grids for the sphere that do not require polar filters. In addition, the approach provides other state-of-the-art capabilities such as improved conservation properties. Spectral elements are used for the horizontal discretization, while most other aspects of the dynamical core are a hybrid of well-tested techniques from CAM's finite volume and global spectral dynamical core options. Here we first give an overview of the spectral element dynamical core as used in CAM. We then give scalability and performance results from CAM running with three different dynamical core options within the Community Earth System Model, using a pre-industrial time-slice configuration. We focus on high-resolution simulations, using I /4 degree, I /8 degree, and T341 spectral truncation horizontal grids.
机译:社区大气模型(CAM)版本5包含NCAR高阶方法建模环境中的光谱元素动态核心选项。它是设计用于完全非结构化四边形网格的连续Galerkin光谱有限元方法。 CAM中的当前配置基于立方球体网格。包括频谱元素动态核的主要动机是通过允许不需要极性滤波器的球体的准均匀网格来提高CAM的可伸缩性。此外,该方法还提供了其他最先进的功能,例如改进的保护性能。频谱元素用于水平离散化,而动态核心的大多数其他方面是CAM有限体积和全局频谱动态核心选项中经过良好测试的技术的混合。在这里,我们首先概述CAM中使用的频谱元素动态核心。然后,我们使用工业化前时间片配置,通过在社区地球系统模型内以三种不同的动态核心选项运行的CAM,给出了可扩展性和性能结果。我们专注于高分辨率模拟,使用I / 4度,I / 8度和T341频谱截断水平网格。

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