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Supercomputing applications to the numerical modeling of industrial and applied mathematics problems

机译:超级计算在工业和应用数学问题的数值建模中的应用

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Present and future supercomputers offer many opportunities and advantages to attack complex and demanding industrial and applied mathematical problems, but provide also new challenges. In the Peta-Flops regime, these concern both, the way to exploit the increasingly available power and the need of designing algorithms which are scalable and fault-tolerant at the same time. An example of a probabilistic domain decomposition method, which is indeed scalable and naturally fault-tolerant, is presented. Grid computing should also be mentioned as an increasingly popular way to perform massively distributed computing: it represents a way to exploit computing power, aside the existing supercomputers. Beyond classical supercomputers there is the prospective quantum computer, in view of which it is advisable to start now a search for suitable algorithms for certain classes of problems.
机译:当前和未来的超级计算机为攻击复杂且苛刻的工业和应用数学问题提供了许多机遇和优势,但同时也带来了新的挑战。在Peta-Flops体制中,这些问题既涉及利用越来越多的可用功率的方式,又涉及设计可伸缩且容错的算法的需求。给出了概率域分解方法的一个示例,该方法的确可伸缩并且具有自然的容错能力。网格计算也应被称为执行大规模分布式计算的一种越来越流行的方法:它代表了一种在现有超级计算机之外的一种利用计算能力的方法。除了经典的超级计算机,还有预期的量子计算机,鉴于此,建议现在开始针对某些类型的问题寻找合适的算法。

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