Ogino, Masao, Nagoya University, Japan
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The 5th International Conference on Computational Methods (ICCM2014) - MS-11: Large Scale Coupled Problems and Related Topics
Preconditioner Construction for Magnetostatic Domain Decomposition Analysis
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The 5th International Conference on Computational Methods (ICCM2014) - MS-11: Large Scale Coupled Problems and Related Topics
Keynote: A Balancing Domain Decomposition Method Combined with a Diagonal-Scaling Preconditioning for Multi-Materials
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The 5th International Conference on Computational Methods (ICCM2014) - MS-11: Large Scale Coupled Problems and Related Topics
Comparative Study of Sparse Matrix Storage Schemes in the Finite Element Analysis of Thermal-Structure Coupling Problems
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The 6th International Conference on Computational Methods (ICCM2015) - MS-011 Large Scale Coupled Problems and Related Topics
Keynote: Preconditioners in Domain Decomposition Method for Magnetostatic Problems
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The 6th International Conference on Computational Methods (ICCM2015) - MS-011 Large Scale Coupled Problems and Related Topics
Keynote: Development of a library of iterative solvers based on the domain decomposition method
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The 7th International Conference on Computational Methods (ICCM2016) - MS-011 Large Scale Coupled Problems and Related Topics
Keynote: The BDD-DIAG Preconditioner in Domain Decomposition Analysis for Magnetostatic Problems
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The 7th International Conference on Computational Methods (ICCM2016) - MS-011 Large Scale Coupled Problems and Related Topics
Keynote: An efficient implementation of parallel Scaled-BDD method for large-scale structural analysis
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The 8th International Conference on Computational Methods (ICCM2017) - MS-019 Large Scale Coupled Problems and Related Topics
A coarse matrix incomplete iterative approach for magnetostatic domain decomposition analysis
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The 8th International Conference on Computational Methods (ICCM2017) - MS-019 Large Scale Coupled Problems and Related Topics
Development of a partitioned coupling analysis system for fluid-structure interactions using an ISPH code and the ADVENTURE system
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