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Titlebook: Sustained Simulation Performance 2012; Proceedings of the j Michael M. Resch,Xin Wang,Hiroaki Kobayashi Conference proceedings 2013 Springe

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AggMon: Scalable Hierarchical Cluster Monitoringidth, and CPU power that would be better spend for application needs. In this paper, we describe a monitoring framework that is used to supervise thousands of compute nodes in a HPC cluster computer in an efficient way. Within this framework the compute nodes are organized in groups. Groups contain
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Development of Radioactive Contamination Map of Fukushima Nuclear Accident, Sports, Science and Technology (MEXT), universities and institutes have started conducting the research around Fukushima prefecture and neighboring prefectures. For the support of this research work, the Center for Computational Science and e-System (CCSE) at Japan Atomic Energy Agency (JAEA) has
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Source Process and Broadband Waveform Modeling of 2011 Tohoku Earthquake Using the Earth Simulators by using a set of sub-events distributed along the fault surface, retrieved by inversion of body waves (Nakamura et al., 2010). The finite source model used in this simulation estimates Mw to be 9.1. The fault dimension is 460 km times 240 km with the source duration time of 150 s. We use the Eart
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A Framework for the Numerical Simulation of Early Stage Aneurysm Development with the Lattice Boltzmress gradient, computed by a CFD simulation inside a bifurcating flow channel, triggers a physiological process leading to the remodelling, and in the worst case, degeneration of the vessel walls. The lattice Boltzmann method, extended by a generic vessel wall model to allow an efficient modificatio
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Mortar Methods for Single- and Multi-Field Applications in Computational Mechanics. In computational contact analysis, the mortar approach allows for a variationally consistent treatment of non-penetration and frictional sliding constraints despite the inevitably non-matching interface meshes. Other single-field and multi-field problems, such as fluid–structure interaction (FSI),
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Numerical Investigation of Nano-Material Processing by Thermal Plasma Flowsnments with thermofluidic and electromagnetic interactions.In this chapter, two challenges related to the thermal plasma processing of nanoparticle fabrication are presented as new applications of supercomputing. The growth process of titanium boride nanoparticles from the precursory binary vapors o
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