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Development of the finite-volume dynamical core on the cubed-sphere .

机译:立方球体上有限体积动力核的发展。

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摘要

The finite-volume dynamical core has been developed for quasi-uniform cubed-sphere grids within a flexible modeling framework for direct implementation as a modular component within the global modeling efforts at NASA, GFDL-NOAA, NCAR, DOE and other interested institutions. The shallow water equations serve as a dynamical framework for testing the implementation and the variety of quasi-orthogonal cubed-sphere grids ranging from conformal mappings to those numerically generated via elliptic solvers. The cubed-sphere finite-volume dynamical core has been parallelized with a 2-dimensional X-Y domain decomposition to achieve optimal scalability to 100,000s of processors on today's high-end computing platforms at horizontal resolutions of 0.25-degrees and finer. The cubed-sphere fvcore is designed to serve as a framework for hydrostatic and non-hydrostatic global simulations at climate (4- to 1-deg) and weather (25- to 5-km) resolutions, pushing the scale of global atmospheric modeling from the climate/synoptic scale to the meso- and cloud-resolving scale.
机译:有限体积动力核心是在灵活的建模框架内为准均匀立方体球网格开发的,可以直接实现为NASA,GFDL-NOAA,NCAR,DOE和其他相关机构的全球建模工作中的模块化组件。浅水方程组是一个用于测试实现和各种准正交立方球体网格的动力学框架,其范围从共形映射到通过椭圆解算器生成的数值。立方球体有限体积动态核已经通过二维X-Y域分解进行了并行处理,以达到当今高端计算平台上100,000度处理器的最佳可扩展性,其水平分辨率为0.25度及更高。立方球面fvcore旨在用作在气候(4至1度)和天气(25至5公里)分辨率下进行静水和非静水全球模拟的框架,从而将全球大气建模的规模从气候/天气尺度到中观和云分辨规模。

著录项

  • 作者

    Putman, William M.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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