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High performance computer methods applied to predictive space weather simulations

机译:应用于预测性天气预报的高性能计算机方法

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Taking advantage of the advent of massively parallel computers, sophisticated solution-adaptive techniques, and recent fundamental advances in basic numerical methods the authors have developed a high performance, adaptive-scale MHD code capable of resolving many of the critical processes in the Sun-Earth system which range over more than nine orders of magnitude. The development of such models are of increasing importance as the impact of space weather on vulnerable technological systems increases, and too, as the severity of space weather increases with the approach of solar maximum. There is an increasing need to develop physics-based, high performance models of the Sun-Earth system from the solar surface to the Earth's upper atmosphere which can operate faster than real time and which can provide reliable predictions of the near Earth space environment based upon solar observations and upstream solar wind measurements. They report on the status of the Michigan adaptive-scale MHD model, which is one effort whose goal is the development of an operational predictive space weather model.
机译:利用大型并行计算机的出现,先进的解决方案自适应技术以及基本数值方法的最新基础发展,作者开发了一种高性能,可自适应缩放的MHD代码,能够解决太阳地球中的许多关键过程。系统范围超过九个数量级。随着太空天气对易受攻击的技术系统的影响增加,以及随着太阳日渐逼近太空天气的严重性增加,此类模型的开发变得越来越重要。越来越需要开发从太阳表面到地球高层大气的基于物理的,高性能的太阳—地球系统模型,该模型的运行速度可能比实时运行的速度快,并且可以基于以下信息提供对近地空间环境的可靠预测太阳观测和上游太阳风测量。他们报告了密歇根州自适应尺度MHD模型的状态,这是一项工作,其目标是开发可操作的预测性空间天气模型。

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