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Nonhydrostatic icosahedral atmospheric model (NICAM) for global cloud resolving simulations

机译:全球云解析模拟的非水压icosahe型大气模型(NiCAM)

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A new type of ultra-high resolution atmospheric global circulation model is developed. The new model is designed to perform "cloud resolving simulations" by directly calculating deep convection and meso-scale circulations, which play key roles not only in the tropical circulations but in the global circulations of the atmosphere. Since cores of deep convection have a few kin in horizontal size, they have not directly been resolved by existing atmospheric general circulation models (AGCMs). In order to drastically enhance horizontal resolution, a new framework of a global atmospheric model is required; we adopted nonhydrostatic governing equations and icosahedral grids to the new model, and call it Nonhydrostatic ICosahedral Atmospheric Model (NICAM). In this article, we review governing equations and numerical techniques employed, and present the results from the unique 3.5-km mesh global experiments-with O(10(9)) computational nodesusing realistic topography and land/ocean surface thermal forcing. The results show realistic behaviors of multi-scale convective systems in the tropics, which have not been captured by AGCMs. We also argue future perspective of the roles of the new model in the next generation atmospheric sciences. (c) 2007 Elsevier Inc. All rights reserved.
机译:开发了一种新型超高分辨率大气全局循环模型。新模型旨在通过直接计算深度对流和中间级循环来执行“云分辨模拟”,该循环循环不仅在热带循环中播放关键作用,而且在大气的全球循环中起着关键作用。由于深度对流的核心在水平尺寸下有几个亲属,因此未通过现有的大气通用循环模型(AGCMS)直接解决。为了大大提高水平分辨率,需要全局大气模型的新框架;我们采用了新模型的非水疗法控制方程和ICOSaheShral网格,并称之为无水压icosahe型大气模型(NiCAM)。在本文中,我们审查了管理方程和使用的数值技术,并呈现出独特的3.5 km网格全球实验的结果 - 与O(10(9))计算节点现实地形和陆地/海面热迫使。结果表明,热带地区的多尺度对流系统的现实行为,尚未被AGCMS捕获。我们还争论了新模型在下一代大气科学中的角色的观点。 (c)2007年elestvier Inc.保留所有权利。

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