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Titlebook: Computational Science – ICCS 2018; 18th International C Yong Shi,Haohuan Fu,Peter M. A. Sloot Conference proceedings 2018 Springer Internat

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A New Matrix-Free Approach for Large-Scale Geodynamic Simulations and its Performanceweak scaling behavior on SuperMUC, a peta-scale supercomputer system. For a complex geodynamical model, we achieve a parallel efficiency of 95% on up to 47 250 compute cores. Our largest simulation uses a trillion (.) degrees of freedom for a global mesh resolution of 1.7 km.
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Efficient and Accurate Evaluation of Bézier Tensor Product Surfacesthms. Our numerical experiments illustrate that the . algorithm is much more accurate than the . algorithm, relegating the influence of the condition numbers up to second order in the rounding unit of the computer.
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Hybrid Swarm and Agent-Based Evolutionary Optimizationesented in the end of the paper results show the applicability of this hybrid based on a selection of a number of 500 dimensional benchmark functions, when compared to non-hybrid, classic EMAS version.
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An Algorithm for Tensor Product Approximation of Three-Dimensional Material Data for Implicit Dynaminted algorithm allows to approximate the permeability coefficient function as a tensor product what in turn allows for implicit simulations of the Laplacian term in the partial differential equation. In the consequence the number of time steps of the non-stationary problem can be reduced, while the numerical accuracy is preserved.
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Laura M. Keyes,Abraham David Benavidesweak scaling behavior on SuperMUC, a peta-scale supercomputer system. For a complex geodynamical model, we achieve a parallel efficiency of 95% on up to 47 250 compute cores. Our largest simulation uses a trillion (.) degrees of freedom for a global mesh resolution of 1.7 km.
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