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Case study: mantle convection visualization on the Cray T3D

机译:案例研究:Cray T3D上的地幔对流可视化

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The recent years have seen rapid advancement towards viewing the Earth as an integrated system. This means that we have come to understand the interdependence of the major planetary subsystems-atmosphere, biosphere, oceans and the deep earth interior-on a large range of time and length scales. One of the longest time scales of the planet is imposed by solid state convection within the silicate Earth mantle. Mantle convection modeling, and other earth science modeling efforts, now are producing simulation data on grids that are large enough to strain the memory and processing power of even the largest high-end graphics workstations. Another alternative is to use parallel visualization tools running on the massively parallel computers that generated the data. This is the approach that we have taken for the visualization of mantle convection simulation data.
机译:近年来,在将地球视为一个集成系统方面取得了飞速的进步。这意味着我们已经在很大的时间范围和长度尺度上了解了主要行星子系统(大气,生物圈,海洋和深地球内部)的相互依存关系。行星最长的时间尺度之一是由硅酸盐地球幔内部的固态对流引起的。地幔对流建模和其他地球科学建模工作现在正在网格上生成模拟数据,这些数据足够大,即使是最大的高端图形工作站也要占用很大的内存和处理能力。另一种选择是使用在生成数据的大规模并行计算机上运行的并行可视化工具。这是我们用于可视化地幔对流模拟数据的方法。

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