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Three-Dimensional Spherical Simulations of Convection in Earth's Mantle and Core Using Massively-Parallel Computers

机译:使用大规模并行计算机对地幔和岩心对流的三维球形模拟

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Convection of the 3000 km thick rocky mantle and the liquid iron core below it are the two most important large-scale dynamical processes in Earth's interior. Two computer codes using differnet numerical techniques (spectral and multigrid) have been developed for mdoeling convection in these two quite differnet environments, in three-dimensional spherical geometry. Under the NASA HPCC program these codes have been substantially improved intofast, efficient, research tools capable of exceeding 100 Gflops performance on Cray T3E massively-parallel supercomputers. The unprecedented capabilities offeren by these codes has enabled several scientific breakthroughts. These results demonstrate that real, scientifically-meaningful models containing complicated physics on grids with tens to hundreds of millions of degrees of freedom are practical on the current generation of parallel machines.
机译:3000公里厚的岩石地幔及其下方的液态铁心的对流是地球内部两个最重要的大规模动力学过程。已经开发出了两种使用differnet数值技术(频谱和多重网格)的计算机代码,用于在这两种完全不同的net环境中以三维球形几何图形进行对流。在NASA HPCC计划下,这些代码已被大大改进,成为快速,高效,研究工具,能够在Cray T3E大规模并行超级计算机上超过100 Gflops的性能。这些规范提供的前所未有的功能已实现了多项科学突破。这些结果表明,在具有数千万至数亿自由度的网格上包含复杂物理的真实,科学意义的模型在当前的并行机上是可行的。

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