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首页> 外文期刊>Journal of Advances in Modeling Earth Systems >An Idealized Test of the Response of the Community Atmosphere Model to Near‐Grid‐Scale Forcing Across Hydrostatic Resolutions
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An Idealized Test of the Response of the Community Atmosphere Model to Near‐Grid‐Scale Forcing Across Hydrostatic Resolutions

机译:跨水压分辨率下社区大气模型对近网格尺度强迫响应的理想化测试

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A set of idealized experiments are developed using the Community Atmosphere Model (CAM) to understand the vertical velocity response to reductions in forcing scale that is known to occur when the horizontal resolution of the model is increased. The test consists of a set of rising bubble experiments, in which the horizontal radius of the bubble and the model grid spacing are simultaneously reduced. The test is performed with moisture, through incorporating moist physics routines of varying complexity, although convection schemes are not considered. Results confirm that the vertical velocity in CAM is to first‐order, proportional to the inverse of the horizontal forcing scale, which is consistent with a scale analysis of the dry equations of motion. In contrast, experiments in which the coupling time step between the moist physics routines and the dynamical core (i.e., the “physics” time step) are relaxed back to more conventional values results in severely damped vertical motion at high resolution, degrading the scaling. A set of aqua‐planet simulations using different physics time steps are found to be consistent with the results of the idealized experiments.
机译:使用社区大气模型(CAM)开发了一组理想化的实验,以了解垂直速度对强迫尺度减小的响应,这是已知的,当模型的水平分辨率提高时会发生这种情况。该测试由一组上升气泡实验组成,其中气泡的水平半径和模型网格间距同时减小。尽管没有考虑对流方案,但该测试是通过结合不同复杂性的潮湿物理程序在潮湿条件下进行的。结果证实,CAM中的垂直速度与水平强迫尺度的倒数成正比,这与干运动方程的尺度分析一致。相反,将潮湿的物理例程与动力学核心之间的耦合时间步长(即“物理”时间步长)放宽到更常规值的实验会导致高分辨率下的垂直运动严重衰减,从而降低缩放比例。发现使用不同物理时间步长进行的一组水行星模拟与理想化实验的结果一致。

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